#Power Monitoring System Market
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Power Monitoring System Market Set to Soar Amid Energy Efficiency Focus

Global Power Monitoring System Market is estimated to be valued at USD 5.07 Bn in 2025 and is expected to exhibit a CAGR of 7.1% over the forecast period 2025 to 2032.
The Power Monitoring System market encompasses hardware and software solutions designed to track, record, and manage electrical parameters within industrial, commercial, and utility environments. These systems enable real-time monitoring of voltage, current, power factor, and energy consumption, delivering actionable market insights that optimize operational efficiency and reduce downtime. By integrating advanced analytics and intuitive dashboards, power monitoring solutions help facility managers identify abnormal power events, support preventive maintenance, and enforce energy-saving measures. Power Monitoring System Market Insights as businesses prioritize sustainability and cost control, the demand for seamless data visualization and automated alerts has grown, driving market trends toward cloud-based platforms and IoT integration. The robust architecture of modern power monitoring systems also enhances safety by flagging overloading conditions and mitigating fire risks. These advantages underscore the critical need for comprehensive energy management in manufacturing plants, data centers, and smart infrastructure projects. Get more insights on,Power Monitoring System Market
#Coherent Market Insights#Power Monitoring System#Power Monitoring System Market#Power Monitoring System Market Insights#Hardware#Software
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The global Switchgear Monitoring System Market is projected to reach USD 2.7 billion by 2028 from an estimated USD 1.8 billion in 2023, at a CAGR of 8.4% during the forecast period. The demand to secure electrical distribution systems is the need for the continuous monitoring of switchgear, and growing investments in renewable energy offer high-growth opportunities for the market.
#switchgears#switchgear#switchgear monitoring system market#switchgear monitoring system#switchgear monitoring#switchgear industry#switchgear market#air insulated switchgear#gas insulated switchgear#gas insulated switchgear industry#energy#energia#power generation#utilities#power#utility#electricity
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Case study
Place: A steel plant in Rourkela with production capacity - 4.5 MTPA
Date of Execution: 20th July 2019
Background:
A Steam turbine blower was to be commissioned in a steel plant by a leading EPC company, the pipelines were erected on the site and as per the Standard Operating Procedure listed by the Steel Plant Owner Company the flushing was completed with a single auxiliary pump at 1500 LPM. However, during the trial run of the turbine, the inline lube oil filters would clog very frequently and lead to halted operations.
Problem Statement:
Frequent clogging of inline lube oil filters were hindering the operations and delaying the steam turbine commissioning project
Underlying Issues:
On inspection, a root cause analysis was done and the required rate for effective flushing was calculated as 3500 LPM. The Particle contamination level was also found to be NAS 10. Hence following things were concluded:
1. The rate at which flushing was done was too low and lead to ineffective flushing, leaving a lot of debris and scale inside the pipeline.
2. Absence of a System other than the inline filters to arrest the particles which would come along with the flushing flow.
What Minimac did:
1. The calculated effective rate for flushing was 3500 LPM, but as only 3000 LPM was achievable on-site, the temperature of the fluid was increased by regular heating arrangement to bring down the required flowrate requirement to 2500 LPM.
2. Both the auxiliary pumps were employed for flushing activity and a separate filtration skid was offered which could handle the full flow volume that was getting generated.
3. Duplex type filtration housing on the lube oil return side was also provided to arrest any future debris. Subsequently, turbine governing and Heat Exchanger were also taken online to clean the system in totality.
Result achieved:
We at Minimac Systems Pvt Ltd. provide services Oil Purification, Oil Flushing, Oil Condition Monitoring that helps you reduce downtime and increase machine reliability.
#minimac systems#oil flushing#power#frf#oil & gas#hydraulic oil#minimac#lube oil filter#contamination#hydraulic oil filter#oil condition monitoring#oil dehydration systems#conditionmonitoring#lubrication reliability#lubrication#turbine oilanalysis maintenance lubrication reliability contaminationcontrol oil powerplants oilfiltration rotatingequipment mechanical bre#gas turbine market trends#wind turbines#gas turbine services market#steam turbine market share#aircraft micro turbine engines market
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Power Monitoring System Market Size to increase at a CAGR Of 5.6% during 2023-2028
The report discusses everything a marketer requires before investing in the global Power Monitoring System Market Size during the forecast period 2023-2028. It provides detailed insight into current trends, market shares, market size, and sales value and volume.
The data used for this report is obtained from reliable industry sources, paid resources, and validated sources. This research works as a systematic guideline for marketers to make well-informed decisions. Key players in the global Power Monitoring System Market are profiled with detailed insights into company profiles, product portfolio, geographical presence, statistical analysis, key developments, and growth strategies. Furthermore, the global Power Monitoring System Market report provides a comprehensive analysis of the COVID-19 pandemic and how it has affected the market in the discussion. The study lays out how the pandemic affected the dynamics of the market and what are the future opportunities for market players.
Get More Info:
Power Monitoring System Market Size Scope:
Power Monitoring System Market
Report Coverage
Details
Base Year:
2022
Forecast Period:
2021 - 2028
Historical Data:
2018 to 2021
Market Size in 2021 :
USD 4.10 billion
Forecast Period 2023 to 2029 CAGR:
5.6%
Market Size in 2028 :
USD 5.99
Power Monitoring System Market Key Highlights:
Global Power Monitoring System Market analysis and forecast, in terms of value.
Comprehensive study and analysis of market drivers, restraints, and opportunities influencing the growth of the Global Power Monitoring System Market
Global Power Monitoring System Market segmentation on the basis of type, source, end-user, and region (country-wise) has been provided.
Global Power Monitoring System Market strategic analysis with respect to individual growth trends, future prospects along with the contribution of various sub-market stakeholders have been considered under the scope of the study.
Global Power Monitoring System Market analysis and forecast for five major regions namely North America, Europe, Asia Pacific, the Middle East & Africa (MEA) and Latin America along with country-wise segmentation.
Profiles of key industry players, their strategic perspective, market positioning, and analysis of core competencies are further profiled.
Competitive developments, investments, strategic expansion, and competitive landscape of the key players operating in the Global Power Monitoring System Market are also profiled.
The global Power Monitoring System Market report focuses on major six regions namely North America, Latin America, Europe, Asia Pacific, Middle East, and Africa. The report offers detailed insight into new product launches, new technology evolutions, innovative services, and ongoing R&D. The report discusses a qualitative and quantitative analysis of the market including PEST analysis, SWOT analysis, and Porter’s five force analysis. The report also provides fundamental details such as raw material sources, distribution networks, methodologies, production capacities, industry supply chain, and product specifications.
COVID-19 Impact:
The updated report, a free extract available, comes with an option to access premium features that covers extensive past, current, and future data. Other valuable updates to the global Power Monitoring System Market report include a reviewed and refined pricing model for manufacturing and launch prices. The report incorporates new content to help give decision-makers key knowledge about the market and offers up-to-date forecasts accounting for the economic situation and impact of COVID-19.
How the industry is coping with the pandemic?
Slowly and gradually economic activity is up and running now which may help the industry to get back to its feet as soon as possible.
The Key Manufacturers Covered in this Report:
ABB Siemens and Veris Industries
Key Player's information includes:
Key Company Profile
Important Market Information
SWOT Analysis
Market Share
Sales, Revenue, Price, and Gross Margin
Segmented into:
By Component
Hardware
Software
Services
By Application
Utilities & Renewable
Manufacturing & Process Industry
Datacenters
Public Infrastructure
Others
Region-Wise Classification of the Power Monitoring System Market:
North America
South America
Europe
Asia-Pacific
Africa
Middle East
Report Highlights:
Detailed Overview
Market Dynamics
Detailed Market Segmentation
Historical, Current, and Projected Market Size in terms of volume and value
Market Trends and Developments
Competitive Landscape
Strategies of Key Players
Potential and Niche Segments
Key Questions Answered in Power Monitoring System Market Size:
1) What is the market size and CAGR of the global as well as the regional market?
2) What are the key players operating in the global Power Monitoring System Market?
3) What are the drivers, restraints, and growth opportunities of the market?
4) What are key technological trends in the market?
5) What are the various regions and sub-regions with leading contributions in the market?
On-demand Custom Research Report:
This report also offers specific consumer preferences and expectations to gain insights into changing needs and behavior of the consumer. We focus on more usefulness and actionable information specifically tailored to suit your business needs.
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About Fortune Business Insights
The cycle of disruption and transformation is imminent for businesses looking to carve out a niche in highly competitive environments. While a few companies are focusing on transformational growth and addressing key challenges of disruptions, several others are simply unaware. At Fortune Business Insights we offer end-to-end solutions beyond flagship research technologies to help senior leaders across enterprises achieve their mission-critical goals. We deliver recommendations enabling growth to help build the organizations of tomorrow.
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Solar Microinverter and Power Optimizer Market Analysis Key Trends, Outlook, Research to 2032
Overview of the Market:
Solar Microinverter and Power Optimizer Market Overview: The solar microinverter and power optimizer market is an important segment within the solar energy industry. These technologies play a vital role in optimizing the performance and efficiency of solar photovoltaic (PV) systems by managing the power output of individual solar panels. They enable higher energy yields, improved system monitoring, and increased flexibility in solar system design and installation.
The solar microinverter and power optimizer market size crossed USD 4.3 billion in 2022 and is poised to witness 13.5% CAGR from 2023 to 2032.
Promising Growth and Demand: The solar microinverter and power optimizer market has experienced significant growth in recent years, driven by several factors. The increasing adoption of solar energy as a renewable and sustainable power source, along with declining costs of solar PV systems, has boosted the demand for technologies that enhance system efficiency and maximize energy production. Additionally, the growing focus on grid stability, improved safety, and system-level monitoring has further contributed to the market's growth.
Platform Type: The solar microinverter and power optimizer market can be categorized into two main platform types:
Solar Microinverter: A solar microinverter is a device that converts the direct current (DC) generated by an individual solar panel into alternating current (AC) for immediate use or grid connection. Each solar panel is equipped with its own microinverter, allowing for independent power optimization and monitoring.
Power Optimizer: A power optimizer is a module that connects to each solar panel in a PV system, optimizing the power output at the panel level. Power optimizers maximize energy harvest by performing maximum power point tracking (MPPT) for each individual panel and mitigating the effects of shading, mismatch, and panel aging.
Technology: Solar microinverters and power optimizers leverage various technologies to enhance solar system performance:
Maximum Power Point Tracking (MPPT): MPPT technology ensures that each solar panel operates at its maximum power output by continuously tracking and adjusting the voltage and current levels.
DC-AC Conversion: Both microinverters and power optimizers perform the conversion of DC power generated by solar panels into AC power suitable for consumption or grid connection.
Communication and Monitoring: These technologies often incorporate communication and monitoring capabilities, allowing real-time performance monitoring, data collection, and system diagnostics.
End User Industry: The solar microinverter and power optimizer market caters to various end user industries, including:
Residential Sector: Residential solar PV installations are a significant market segment for microinverters and power optimizers. These technologies enable individual panel-level optimization, making them suitable for residential rooftops with space constraints or shading issues.
Commercial and Industrial Sector: Commercial and industrial buildings utilize larger-scale solar PV systems. Microinverters and power optimizers help optimize energy production, increase system reliability, and provide real-time monitoring, making them attractive options for commercial and industrial applications.
Utility-Scale Projects: Utility-scale solar PV installations, such as solar farms or solar power plants, can benefit from the use of power optimizers. These technologies allow for precise power optimization and fault detection at the panel level, enhancing overall system performance.
Scope:
The solar microinverter and power optimizer market has a global scope, with growing adoption in various regions. The market encompasses manufacturers, suppliers, installers, and system integrators. Market statistics, growth projections, and demand may vary across regions due to factors such as solar energy policies, regulatory frameworks, and market maturity.
The market's scope extends to various aspects, including product development, technological advancements, installation practices, and system performance optimization. With the increasing demand for solar energy and the need for enhanced system efficiency, the market is expected to witness continued growth and innovation.
In conclusion, the solar microinverter and power optimizer market is experiencing promising growth worldwide. The adoption of these technologies in solar PV systems has gained momentum due to their ability to improve energy production, enhance system monitoring, and optimize system performance. The market serves the residential, commercial, industrial, and utility-scale sectors, and its scope encompasses various stakeholders. As solar energy continues to gain prominence, the demand for solar microinverters and power optimizers is expected to increase, presenting significant opportunities for industry players in the renewable energy sector.
We recommend referring our Stringent datalytics firm, industry publications, and websites that specialize in providing market reports. These sources often offer comprehensive analysis, market trends, growth forecasts, competitive landscape, and other valuable insights into this market.
By visiting our website or contacting us directly, you can explore the availability of specific reports related to this market. These reports often require a purchase or subscription, but we provide comprehensive and in-depth information that can be valuable for businesses, investors, and individuals interested in this market.
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Market Segmentations:
Global Solar Microinverter and Power Optimizer Market: By Company • SolarEdge Technologies • Enphase Energy • Tigo Energy • Altenergy Power System • SunPower Corporation • Ampt • Delta Energy Systems • KACO New Energy • Array Power • Solantro Global Solar Microinverter and Power Optimizer Market: By Type • Solar Microinverter • Power Optimizer Global Solar Microinverter and Power Optimizer Market: By Application • Residential • Commercial • Utility • Others Global Solar Microinverter and Power Optimizer Market: Regional Analysis The regional analysis of the global Solar Microinverter and Power Optimizer market provides insights into the market's performance across different regions of the world. The analysis is based on recent and future trends and includes market forecast for the prediction period. The countries covered in the regional analysis of the Solar Microinverter and Power Optimizer market report are as follows: North America: The North America region includes the U.S., Canada, and Mexico. The U.S. is the largest market for Solar Microinverter and Power Optimizer in this region, followed by Canada and Mexico. The market growth in this region is primarily driven by the presence of key market players and the increasing demand for the product. Europe: The Europe region includes Germany, France, U.K., Russia, Italy, Spain, Turkey, Netherlands, Switzerland, Belgium, and Rest of Europe. Germany is the largest market for Solar Microinverter and Power Optimizer in this region, followed by the U.K. and France. The market growth in this region is driven by the increasing demand for the product in the automotive and aerospace sectors. Asia-Pacific: The Asia-Pacific region includes Singapore, Malaysia, Australia, Thailand, Indonesia, Philippines, China, Japan, India, South Korea, and Rest of Asia-Pacific. China is the largest market for Solar Microinverter and Power Optimizer in this region, followed by Japan and India. The market growth in this region is driven by the increasing adoption of the product in various end-use industries, such as automotive, aerospace, and construction. Middle East and Africa: The Middle East and Africa region includes Saudi Arabia, U.A.E, South Africa, Egypt, Israel, and Rest of Middle East and Africa. The market growth in this region is driven by the increasing demand for the product in the aerospace and defense sectors. South America: The South America region includes Argentina, Brazil, and Rest of South America. Brazil is the largest market for Solar Microinverter and Power Optimizer in this region, followed by Argentina. The market growth in this region is primarily driven by the increasing demand for the product in the automotive sector.
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#Solar Microinverter and Power Optimizer Market Analysis Key Trends#Outlook#Research to 2032#Overview of the Market:#Solar Microinverter and Power Optimizer Market Overview: The solar microinverter and power optimizer market is an important segment within#improved system monitoring#and increased flexibility in solar system design and installation.#The solar microinverter and power optimizer market size crossed USD 4.3 billion in 2022 and is poised to witness 13.5% CAGR from 2023 to 20
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🎄💾🗓️ Day 2: Retrocomputing Advent Calendar brings us the TRS-80! 🎄💾🗓️
Released in 1977, the TRS-80 (also lovingly called the "Trash-80") was a popular personal computer by Radio Shack and Tandy Corporation. Designed for affordability and approachability, it was one of the first mass-market computers, bringing computers into homes, schools, and small businesses.
Powered by a Zilog Z80 processor running at 1.77 MHz, the TRS-80 Model I came with 4KB of RAM (expandable to 16KB) and an 8KB ROM, preloaded with the Microsoft BASIC programming language. Its black-and-white display supported a resolution of 64x16 characters. It used external cassette tapes for storage, which offered a low-cost solution before floppy drives became more available.
The TRS-80's also had an ecosystem. Radio Shack offered complete setups, monitors, printers, and software - making it easy for beginners. The machine became a favorite for hobbyists and programmers, popularizing early text-based adventure games, educational software, and business applications.
Eventually overtaken by the IBM PC and Apple systems, the TRS-80's legacy lives on!
I had some so-so photos, but these from the Smithsonian are the best I've seen, along with their section on their site -
Have TRS-80 memories, or retro computing memories? Post’em up in the comments, or post yours on socialz’ and tag them #retrocomputing #firstcomputer #electronics see you back here tomorrow!
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A Sick Day
It’s not a cold. It’s not. It’s just… allergies or something. Y/N definitely does not need to stay home. Bruce disagrees.
B (24) & Y/N (22)
A/N: recently got a puppy and he has taken all of my free time <3 Also, this fic is unedited and proud.
“Get your coats and turn on your radiators, Gotham. An ice front is coming in and it’s coming in hot. Or should I say cold? No, this isn’t the work of Mr.Freeze, he’s still in Arkham and we hope he stays there. This is the work of a winter storm. While the snow will be beautiful, it will also be dangerous.”
Y/N scoffed at her computer. The newscasters always made such a big deal about winter storms. Nothing can be worse than what they had to deal with when Mr.Freeze escaped a year ago. She was stuck in her apartment for three days with no groceries, splitting a box of stale Triscuits with Carrie three meals a day. If anything, cold weather is more an inconvenience than a danger. Plus, it’s been teetering on 45 degrees out the past week. How much colder would it get?
-
So… It got fucking cold.
Gotham had hit record-low temperatures. So low it hadn’t been a natural occurrence since the 60s. Lucky for Carrie, she had chemo this week and the hospital had gotten spooked by the recent weather reports so they asked her to stay overnight. While the hospital bill wouldn’t be nice, it’s way better than what Y/N is dealing with.
Her radiator is shitting out on her. The whole building's radiator system actually. Normally when the weather is this bad she would opt to work at home, like everyone else, except she can’t take the cold. Her body in particular can’t take the cold. It could be from the shitty surroundings in her apartment building or from sniffly Nathan who works in Wayne Enterprise’s marketing department, but she thinks she’s coming down with something. What’s worse is that the cold weather is making it worse.
Her whole chest felt like it was burning, which is a real contrast to how cold she was walking to work. She couldn’t get her car past the snow and she needs warmth and warmth is at Wayne Enterprises. So, she trudges into the empty building, up the elevator, and sits at her desk with a groan.
Breathing heavily, she shrugged her coat off her shoulders and pressed her freezing fingertips underneath her armpits. She looked at her reflection in her desktop monitor. Her cheeks were bright red and she had dark circles under her eyes. At least no one else was here to see her. No one else was here to see her…
Would it hurt to take a nap? No one would know. No one would see.
Y/N stood and stepped out into the hallway. Not. A. Single. Soul. Oh, she is so napping.
-
Bruce had chained up his tires this morning and headed to Wayne Enterprise. It was too bright for The Tumbler and he needed to gather a few equipment items from Lucious Fox’s bunker. It’s not like anyone was here anyway. There was not a single car in the garage, not even Y/N’s, which is really saying something.
He perused the bunker, grabbing a few small but powerful heaters, fleece-lined leather for his suit, and a couple of other items, stuffing them into his duffle bag. He was used to the cold, training in it, even living in it on one occasion, and the people of Gotham needed him so he’d be there.
Pulling the duffle bag over his shoulder with ease, he headed out of the bunker and towards the elevator. He left a particular file that wasn’t meant for Wayne Enterprise in his office, while no one was here, you can never be too careful. Except… There was someone here.
He could only assume the head poking out from her coat was Y/N and she was sleeping? In the office? Stepping closer to her, he noticed, even under all her layers, she was trembling. Pulling her coat collar from her face, he finally got a good look at her. She was flushed and had broken out into a sweat, even her ears were bright red. He held onto her shoulder and shook her lightly.
“Y/N,” Bruce spoke softly. She ground turning away from him. He slapped a hand to her forehead trying to gauge her temperature. She definitely had a fever, it couldn’t be lower than a 100. Slowly her eyes opened at the disruption, then became wide at who was standing over her.
“What are you doing here?”
“I’m not the one sleeping in the office.”
“Sorry,” she mumbled embarrassed, “I don’t know how that happened-”
“Y/N you’re burning up. What are you even doing here?”
“Why does someone come to work, Bruce?”
“You’re not working. You’re sleeping.”
“I had the intent to work-”
“Y/N.”
“I just felt like coming in,” she snapped. In truth, she was embarrassed. Here was her billionaire boss. If he didn’t feel like sleeping in his mansion, he could stay the night at his penthouse. She was sure he had other properties as well, meanwhile her radiator couldn’t even stay on when it gets chilly outside.
Bruce held her stare with a firm gaze and narrowed his eyes.
“You’re going home.” It wasn’t a question and he definitely didn’t ask as he lifted her under her armpits from the couch and stood her up on the floor. He took her coat roughly from the couch and threw it over her shoulders. Bruce turned to pack the rest of her things up. Y/N was so tired, but she was also so frustrated. She had just gotten here. It had taken her so long to walk here. “Let’s go. Where’d you park?”
She remained silent and looked away from him.
“Y/N. Where did you park?”
“I’m not going home. I just got here.”
“You’re sick you’re going home,” before she could speak he added, “and don’t say your car is in the garage because I know it’s not in there.”
“...I parked on the street.”
He tilted his head examining her, “No you didn’t. The snow us up to the stairs. Where’s your car?”
His question came out as more of a statement, demanding of an answer. She wouldn’t look at him and he grew both frustrated and disappointed. “For the love of god, please tell me you did not walk here.”
“My car couldn’t get past the snow!” she loudly admitted, “Is that what you wanted to hear-”
“Y/N. When your car can’t get past the snow, it means you stay home!”
He held his hand to his brow, trying to sooth the tension in his head. Throwing his duffle bag and her work bag easily over his shoulder, he didn’t give her much of a chance to say anything as he grabbed her by the hand to pull her toward the elevator. Even in his frustrated state, shaking his head and rolling his eyes, his grip on her was still gentle.
Stubborn as ever, she would let him pull her to the car. She would let him buckle her in. She would let him drive her to her broken, cold home, but she wouldn’t say a damn thing about the radiator. None. Of. His. Business.
[She’s even more stubborn when she’s sick.]
And she did just that. She let Bruce Wayne take her hand, blaming the warmth in her face on her high fever. She let him tug her to his expensive McLaren 650s Spider with a new shiny set of winter tires. She enjoyed seeing it too and part of her enjoyed annoying him. And she let him plop her into his expensive shiny car, buckle her in, and drive her home. What she didn’t expect was him wanting to walk her inside…
“I can get inside just fine, thank you.” Y/N attempted to push him back towards his car. Her hand held to his chest and pushed firmly. He didn’t even budge. Not even a sway.
“You’re not walking up three flights of stairs alone in your condition.”
“My condition?” she paused. “How do you know I live on the third floor?”
“You put your address on your resume,” he lied smoothly.
“I didn’t know you read my resume-”
“Stop stalling.”
She tried to keep him out, she really did, but he was so persistent. They made it to the front door, thank you Mr.Wayne I can take it from here. Nope, he needed to help her up the stairs, so they made it up the stairs. Thank you, Mr.Wayne I think I can make it inside by myself. Nope, he had already made it up the stairs; he might as well finish the journey. They made it to her front door. Thank you, Mr.Wayne you can go now. Nope, there’s no reason he can’t sit her things down for her.
In her heart, she knew there was no way he didn’t notice the cool, crisp air in the hallway. The way not a single apartment radiated heat and she knew he had to be suspicious. Her hand shook in shame as she unlocked her apartment and opened the door up, head down.
Letting himself in, she heard a deep sigh, radiating from his chest, “Y/N, you can’t stay here-”
“Stop-”
“It’s freezing in here-”
“You don’t think I know that?” Once again, he grabbed her hand pulling her into the hallway, shaking her head. He took the keys straight out of her hand, locking the apartment door. “What are you doing? We just got here?”
“You’re staying with me this weekend.”
“Are you insane?”
“I have a house with over fifteen bedrooms. I think you can find somewhere to sleep.”
“This is so unprofessional.”
“I don’t care.” With her apartment keys he walked back toward the stairs at an alarming pace. She had no choice but to follow.
“Bruce, I swear to God I am not staying at the manor.”
-
“Welcome to Wayne Manor Miss.Y/N.”
@pank0w @moejoeflow @padsfirewhisky @maxinehufflepuffprincess @pastelsweaters-and-bubble-t @mariadvorak @100520s @st0rmyt @stxrsberkshire
#batfam#bruce wayne x reader#batman#batmom#bruce wayne#batboys x reader#slow burn#sick!reader#sickfic
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If the Commodore 64 is great, where is the Commodore 65?

It sits in the pile with the rest of history's pre-production computers that never made it. It's been awhile since I went on a Commodore 65 rant...
The successor to the C64 is the C128, arguably the pinnacle of 8-bit computers. It has 3 modes: native C128 mode with 2MHz 8502, backwards compatible C64 mode, and CP/M mode using a 4MHz Z80. Dual video output in 40-column mode with sprites plus a second output in 80-column mode. Feature-rich BASIC, built in ROM monitor, numpad, 128K of RAM, and of course a SID chip. For 1985, it was one of the last hurrahs of 8-bit computing that wasn't meant to be a budget/bargain bin option.

For the Amiga was taking center stage at Commodore -- the 16-bit age is here! And its initial market performance wasn't great, they were having a hard time selling its advanced capabilities. The Amiga platform took time to really build up momentum square in the face of the rising dominance of the IBM PC compatible. And the Amiga lost (don't tell the hardcore Amiga fanboys, they're still in denial).
However, before Commodore went bankrupt in '94, someone planned and designed another successor to the C64. It was supposed to be backwards compatible with C64, while also evolving on that lineage, moving to a CSG 4510 R3 at 3.54MHz (a fancy CMOS 6502 variant based on a subprocessor out of an Amiga serial port card). 128K of RAM (again) supposedly expandable to 1MB, 256X more colors, higher resolution, integrated 3½" floppy not unlike the 1581. Bitplane modes, DAT modes, Blitter modes -- all stuff that at one time was a big deal for rapid graphics operations, but nothing that an Amiga couldn't already do (if you're a C65 expert who isn't mad at me yet, feel free to correct me here).
The problem is that nobody wanted this.
Sure, Apple had released the IIgs in 1986, but that had both the backwards compatibility of an Apple II and a 16-bit 65C816 processor -- not some half-baked 6502 on gas station pills. Plus, by the time the C65 was in heavy development it was 1991. Way too late for the rapidly evolving landscape of the consumer computer market. It would be cancelled later that same year.
I realize that Commodore was also still selling the C64 well into 1994 when they closed up shop, but that was more of a desperation measure to keep cash flowing, even if it was way behind the curve by that point (remember, when the C64 was new it was a powerful, affordable machine for 1982). It was free money on an established product that was cheap to make, whereas the C65 would have been this new and expensive machine to produce and sell that would have been obsolete from the first day it hit store shelves. Never mind the dismal state of Commodore's marketing team post-Tramiel.

Internally, the guy working on the C65 was someone off in the corner who didn't work well with others while 3rd generation Amiga development was underway. The other engineers didn't have much faith in the idea.
The C65 has acquired a hype of "the machine that totally would have saved Commodore, guise!!!!1!11!!!111" -- saved nothing. If you want better what-if's from Commodore, you need to look to the C900 series UNIX machine, or the CLCD. Unlike those machines which only have a handful of surviving examples (like 3 or 4 CLCDs?), the C65 had several hundred, possibly as many as 2000 pre-production units made and sent out to software development houses. However many got out there, no software appears to have surfaced, and only a handful of complete examples of a C65 have entered the hands of collectors. Meaning if you have one, it's probably buggy and you have no software to run on it. Thus, what experience are you recapturing? Vaporware?
The myth of the C65 and what could have been persists nonetheless. I'm aware of 3 modern projects that have tried to take the throne from the Commodore 64, doing many things that sound similar to the Commodore 65.
The Foenix Retro Systems F256K:

The 8-Bit Guy's Commander X16

The MEGA65 (not my picture)
The last of which is an incredibly faithful open-source visual copy of the C65, where as the other projects are one-off's by dedicated individuals (and when referring to the X16, I don't mean David Murray as he's not the one doing the major design work).
I don't mean to belittle the effort people have put forth into such complicated projects, it's just not what I would have built. In 2019, I had the opportunity to meet the 8-Bit Guy and see the early X16 prototype. I didn't really see the appeal, and neither did David see the appeal of my homebrew, the Cactus.
Build your own computer, build a replica computer. I encourage you to build what you want, it can be a rewarding experience. Just remember that the C65 was probably never going to dig Commodore out of the financial hole they had dug for themselves.
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Subprime gadgets

I'm on tour with my new, nationally bestselling novel The Bezzle! Catch me THIS SUNDAY in ANAHEIM at WONDERCON: YA Fantasy, Room 207, 10 a.m.; Signing, 11 a.m.; Teaching Writing, 2 p.m., Room 213CD.
The promise of feudal security: "Surrender control over your digital life so that we, the wise, giant corporation, can ensure that you aren't tricked into catastrophic blunders that expose you to harm":
https://locusmag.com/2021/01/cory-doctorow-neofeudalism-and-the-digital-manor/
The tech giant is a feudal warlord whose platform is a fortress; move into the fortress and the warlord will defend you against the bandits roaming the lawless land beyond its walls.
That's the promise, here's the failure: What happens when the warlord decides to attack you? If a tech giant decides to do something that harms you, the fortress becomes a prison and the thick walls keep you in.
Apple does this all the time: "click this box and we will use our control over our platform to stop Facebook from spying on you" (Ios as fortress). "No matter what box you click, we will spy on you and because we control which apps you can install, we can stop you from blocking our spying" (Ios as prison):
https://pluralistic.net/2022/11/14/luxury-surveillance/#liar-liar
But it's not just Apple – any corporation that arrogates to itself the right to override your own choices about your technology will eventually yield to temptation, using that veto to help itself at your expense:
https://pluralistic.net/2023/07/28/microincentives-and-enshittification/
Once the corporation puts the gun on the mantelpiece in Act One, they're begging their KPI-obsessed managers to take it down and shoot you in the head with it in anticipation of of their annual Act Three performance review:
https://pluralistic.net/2023/12/08/playstationed/#tyler-james-hill
One particularly pernicious form of control is "trusted computing" and its handmaiden, "remote attestation." Broadly, this is when a device is designed to gather information about how it is configured and to send verifiable testaments about that configuration to third parties, even if you want to lie to those people:
https://www.eff.org/deeplinks/2023/08/your-computer-should-say-what-you-tell-it-say-1
New HP printers are designed to continuously monitor how you use them – and data-mine the documents you print for marketing data. You have to hand over a credit-card in order to use them, and HP reserves the right to fine you if your printer is unreachable, which would frustrate their ability to spy on you and charge you rent:
https://arstechnica.com/gadgets/2024/02/hp-wants-you-to-pay-up-to-36-month-to-rent-a-printer-that-it-monitors/
Under normal circumstances, this technological attack would prompt a defense, like an aftermarket mod that prevents your printer's computer from monitoring you. This is "adversarial interoperability," a once-common technological move:
https://www.eff.org/deeplinks/2019/10/adversarial-interoperability
An adversarial interoperator seeking to protect HP printer users from HP could gin up fake telemetry to send to HP, so they wouldn't be able to tell that you'd seized the means of computation, triggering fines charged to your credit card.
Enter remote attestation: if HP can create a sealed "trusted platform module" or a (less reliable) "secure enclave" that gathers and cryptographically signs information about which software your printer is running, HP can detect when you have modified it. They can force your printer to rat you out – to spill your secrets to your enemy.
Remote attestation is already a reliable feature of mobile platforms, allowing agencies and corporations whose services you use to make sure that you're perfectly defenseless – not blocking ads or tracking, or doing anything else that shifts power from them to you – before they agree to communicate with your device.
What's more, these "trusted computing" systems aren't just technological impediments to your digital wellbeing – they also carry the force of law. Under Section 1201 of the Digital Millennium Copyright Act, these snitch-chips are "an effective means of access control" which means that anyone who helps you bypass them faces a $500,000 fine and a five-year prison sentence for a first offense.
Feudal security builds fortresses out of trusted computing and remote attestation and promises to use them to defend you from marauders. Remote attestation lets them determine whether your device has been compromised by someone seeking to harm you – it gives them a reliable testament about your device's configuration even if your device has been poisoned by bandits:
https://pluralistic.net/2020/12/05/trusting-trust/#thompsons-devil
The fact that you can't override your computer's remote attestations means that you can't be tricked into doing so. That's a part of your computer that belongs to the manufacturer, not you, and it only takes orders from its owner. So long as the benevolent dictator remains benevolent, this is a protective against your own lapses, follies and missteps. But if the corporate warlord turns bandit, this makes you powerless to stop them from devouring you whole.
With that out of the way, let's talk about debt.
Debt is a normal feature of any economy, but today's debt plays a different role from the normal debt that characterized life before wages stagnated and inequality skyrocketed. 40 years ago, neoliberalism – with its assaults on unions and regulations – kicked off a multigenerational process of taking wealth away from working people to make the rich richer.
Have you ever watched a genius pickpocket like Apollo Robbins work? When Robins lifts your wristwatch, he curls his fingers around your wrist, expertly adding pressure to simulate the effect of a watchband, even as he takes away your watch. Then, he gradually releases his grip, so slowly that you don't even notice:
https://www.reddit.com/r/nextfuckinglevel/comments/ppqjya/apollo_robbins_a_master_pickpocket_effortlessly/
For the wealthy to successfully impoverish the rest of us, they had to provide something that made us feel like we were still doing OK, even as they stole our wages, our savings, and our futures. So, even as they shipped our jobs overseas in search of weak environmental laws and weaker labor protection, they shared some of the savings with us, letting us buy more with less. But if your wages keep stagnating, it doesn't matter how cheap a big-screen TV gets, because you're tapped out.
So in tandem with cheap goods from overseas sweatshops, we got easy credit: access to debt. As wages fell, debt rose up to fill the gap. For a while, it's felt OK. Your wages might be falling off, the cost of health care and university might be skyrocketing, but everything was getting cheaper, it was so easy to borrow, and your principal asset – your family home – was going up in value, too.
This period was a "bezzle," John Kenneth Galbraith's name for "The magic interval when a confidence trickster knows he has the money he has appropriated but the victim does not yet understand that he has lost it." It's the moment after Apollo Robbins has your watch but before you notice it's gone. In that moment, both you and Robbins feel like you have a watch – the world's supply of watch-derived happiness actually goes up for a moment.
There's a natural limit to debt-fueled consumption: as Michael Hudson says, "debts that can't be paid, won't be paid." Once the debtor owes more than they can pay back – or even service – creditors become less willing to advance credit to them. Worse, they start to demand the right to liquidate the debtor's assets. That can trigger some pretty intense political instability, especially when the only substantial asset most debtors own is the roof over their heads:
https://pluralistic.net/2022/11/06/the-end-of-the-road-to-serfdom/
"Debts that can't be paid, won't be paid," but that doesn't stop creditors from trying to get blood from our stones. As more of us became bankrupt, the bankruptcy system was gutted, turned into a punitive measure designed to terrorize people into continuing to pay down their debts long past the point where they can reasonably do so:
https://pluralistic.net/2022/10/09/bankruptcy-protects-fake-people-brutalizes-real-ones/
Enter "subprime" – loans advanced to people who stand no meaningful chance of every paying them back. We all remember the subprime housing bubble, in which complex and deceptive mortgages were extended to borrowers on the promise that they could either flip or remortgage their house before the subprime mortgages detonated when their "teaser rates" expired and the price of staying in your home doubled or tripled.
Subprime housing loans were extended on the belief that people would meekly render themselves homeless once the music stopped, forfeiting all the money they'd plowed into their homes because the contract said they had to. For a brief minute there, it looked like there would be a rebellion against mass foreclosure, but then Obama and Timothy Geithner decreed that millions of Americans would have to lose their homes to "foam the runways" for the banks:
https://wallstreetonparade.com/2012/08/how-treasury-secretary-geithner-foamed-the-runways-with-childrens-shattered-lives/
That's one way to run a subprime shop: offer predatory loans to people who can't afford them and then confiscate their assets when they – inevitably – fail to pay their debts off.
But there's another form of subprime, familiar to loan sharks through the ages: lend money at punitive interest rates, such that the borrower can never repay the debt, and then terrorize the borrower into making payments for as long as possible. Do this right and the borrower will pay you several times the value of the loan, and still owe you a bundle. If the borrower ever earns anything, you'll have a claim on it. Think of Americans who borrowed $79,000 to go to university, paid back $190,000 and still owe $236,000:
https://pluralistic.net/2020/12/04/kawaski-trawick/#strike-debt
This kind of loan-sharking is profitable, but labor-intensive. It requires that the debtor make payments they fundamentally can't afford. The usurer needs to get their straw right down into the very bottom of the borrower's milkshake and suck up every drop. You need to convince the debtor to sell their wedding ring, then dip into their kid's college fund, then steal their father's coin collection, and, then break into cars to steal the stereos. It takes a lot of person-to-person work to keep your sucker sufficiently motivated to do all that.
This is where digital meets subprime. There's $1T worth of subprime car-loans in America. These are pure predation: the lender sells a beater to a mark, offering a low down-payment loan with a low initial interest rate. The borrower makes payments at that rate for a couple of months, but then the rate blows up to more than they can afford.
Trusted computing makes this marginal racket into a serious industry. First, there's the ability of the car to narc you out to the repo man by reporting on its location. Tesla does one better: if you get behind in your payments, your Tesla immobilizes itself and phones home, waits for the repo man to come to the parking lot, then it backs itself out of the spot while honking its horn and flashing its lights:
https://tiremeetsroad.com/2021/03/18/tesla-allegedly-remotely-unlocks-model-3-owners-car-uses-smart-summon-to-help-repo-agent/
That immobilization trick shows how a canny subprime car-lender can combine the two kinds of subprime: they can secure the loan against an asset (the car), but also coerce borrowers into prioritizing repayment over other necessities of life. After your car immobilizes itself, you just might decide to call the dealership and put down your credit card, even if that means not being able to afford groceries or child support or rent.
One thing we can say about digital tools: they're flexible. Any sadistic motivational technique a lender can dream up, a computerized device can execute. The subprime car market relies on a spectrum of coercive tactics: cars that immobilize themselves, sure, but how about cars that turn on their speakers to max and blare a continuous recording telling you that you're a deadbeat and demanding payment?
https://archive.nytimes.com/dealbook.nytimes.com/2014/09/24/miss-a-payment-good-luck-moving-that-car/
The more a subprime lender can rely on a gadget to torment you on their behalf, the more loans they can issue. Here, at last, is a form of automation-driven mass unemployment: normally, an economy that has been fully captured by wealthy oligarchs needs squadrons of cruel arm-breakers to convince the plebs to prioritize debt service over survival. The infinitely flexible, tireless digital arm-breakers enabled by trusted computing have deprived all of those skilled torturers of their rightful employment:
https://pluralistic.net/2021/04/02/innovation-unlocks-markets/#digital-arm-breakers
The world leader in trusted computing isn't cars, though – it's phones. Long before anyone figured out how to make a car take orders from its manufacturer over the objections of its driver, Apple and Google were inventing "curating computing" whose app stores determined which software you could run and how you could run it.
Back in 2021, Indian subprime lenders hit on the strategy of securing their loans by loading borrowers' phones up with digital arm-breaking software:
https://restofworld.org/2021/loans-that-hijack-your-phone-are-coming-to-india/
The software would gather statistics on your app usage. When you missed a payment, the phone would block you from accessing your most frequently used app. If that didn't motivate you to pay, you'd lose your second-most favorite app, then your third, fourth, etc.
This kind of digital arm-breaking is only possible if your phone is designed to prioritize remote instructions – from the manufacturer and its app makers – over your own. It also only works if the digital arm-breaking company can confirm that you haven't jailbroken your phone, which might allow you to send fake data back saying that your apps have been disabled, while you continue to use those apps. In other words, this kind of digital sadism only works if you've got trusted computing and remote attestation.
Enter "Device Lock Controller," an app that comes pre-installed on some Google Pixel phones. To quote from the app's description: "Device Lock Controller enables device management for credit providers. Your provider can remotely restrict access to your device if you don't make payments":
https://lemmy.world/post/13359866
Google's pitch to Android users is that their "walled garden" is a fortress that keeps people who want to do bad things to you from reaching you. But they're pre-installing software that turns the fortress into a prison that you can't escape if they decide to let someone come after you.
There's a certain kind of economist who looks at these forms of automated, fine-grained punishments and sees nothing but a tool for producing an "efficient market" in debt. For them, the ability to automate arm-breaking results in loans being offered to good, hardworking people who would otherwise be deprived of credit, because lenders will judge that these borrowers can be "incentivized" into continuing payments even to the point of total destitution.
This is classic efficient market hypothesis brain worms, the kind of cognitive dead-end that you arrive at when you conceive of people in purely economic terms, without considering the power relationships between them. It's a dead end you navigate to if you only think about things as they are today – vast numbers of indebted people who command fewer assets and lower wages than at any time since WWII – and treat this as a "natural" state: "how can these poors expect to be offered more debt unless they agree to have their all-important pocket computers booby-trapped?"
If you'd like an essay-formatted version of this post to read or share, here's a link to it on pluralistic.net, my surveillance-free, ad-free, tracker-free blog:
https://pluralistic.net/2024/03/29/boobytrap/#device-lock-controller
Image: Oatsy (modified) https://www.flickr.com/photos/oatsy40/21647688003
CC BY 2.0 https://creativecommons.org/licenses/by/2.0/
#pluralistic#debt#subprime#armbreakers#mobile#google#android#apps#drm#technological self-determination#efficient market hypothesis brainworms#law and political economy#gadgets#boobytraps#app stores#curated computing#og app#trusted computing
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F1 and Biometrics
Biometric gloves came into play in F1 in 2018 to give medical teams immediate access to important information regarding driver conditions after an incident. It allows for vitals to be measured before, at the time of an incident and after the crash until they are rescued and more advanced monitoring is able to be applied. It is also a big help if a driver is involved in a crash that means they are not accessible straight away or cannot be visualized for monitoring so this allows teams to get immediate access to this information.
According to the FIA website, this was a difficulty by medical teams when Carlos Sainz crashed in the 2015 Russian GP where he hit the barrier head-on at 153km/h (roughly 95mph). The first row of the barrier was resting on top of him, so medical teams had to wait for this to be removed before they had access to him. Thankfully he wasn’t hurt during this crash, but medical teams didn’t know this initially as this technology wasn’t available and being used.
The sensors were basically made custom to F1 drivers. Regular sensors had not been fire tested and were not comfortable enough for the drivers to wear for long races. They use Bluetooth technology and can send data within a 500m and are powered by a small battery that drivers charge before races.
Drivers gloves have a 3mm sensor that is stitched into the palm of the fabric and monitors their vital signs during races. They measure pulse oximetry which measures the amount of oxygen being carried in the blood as well as drivers pulse rates. Obviously if a driver has an injury that is affecting their breathing, this will show in the saturations that would decline rapidly. Having this technology allows physiological readings and biometrics to be continuously monitored throughout the race from start to finish. Data from the sensor transmits to an iPhone app and gives medical crews remote and advance information on the driver’s condition. The small biometric readers are flexible and fire resistant up to 1,800 degrees Celsius (3,272 degrees Fahrenheit) for 22 seconds.


In the future there are even plans to implement sensors for respiratory rate and temperature to further monitor drivers which will not only enhance safety features but allow teams and drivers to monitor performance better.
OMP, an equipment supplier, has been developing wearable biometric monitoring systems since the introduction of the biometric sensors in 2019. An undershirt equipped with sensors and a measurement unit would transmit and record biometric data allowing for real-time monitoring of health through ECG and thoracic expansion. This would allow monitoring of drivers heart rhythms and breathing rate which would not only benefit medical teams in the case of an incident but also help identify stress, fatigue and any alteration in conditions. This would be useful considering the amount of stress drivers have been put through in the past in hot countries for example Saudi Arabia GP 2023 when many drivers retired, had to be taken to medical, threw up in their helmets or passed out after the race.


TV crews can also display biometric data during broadcasts to show the physical condition of a driver as they battle on track. However, there have been questions about the ethics and use of biometrics and why can’t we as an audience see drivers heart rates etc on screen if this data is being constantly collected. The FIA has strict guidelines about the use of raw biometric data. Section 2.4 of the FIA Guidelines for the Collection and Usage of Biometric Data in Motorsport, states that the use of biometric data can be used for more than just medical and performance monitoring and can be used for entertainment and marketing purposes but only if it is changed from raw data into a variable to protect the private health information of the driver. The FIA won’t allow the use of biometric data to be publicly available in the original form/ measurement unless the driver provides informed consent.
Essentially, driver onboard vitals are likely not to be available live due to strict laws on data protection and sharing health related information about drivers as it is protected health information. In the case of an accident or emergency, data is not allowed to be used even if the information is changed to protect the driver unless it is for medical and rescue use and post-accident information.
Sources: (x) (x) (x) (x) (x)
This also led me down a rabbit hole and found another study (it was anonymous but if you’re a sleuth you can probably take a guess at what F1 driver it was) where they monitored his heart rate during qualifying to see what his average was throughout the race to test the cardiovascular strain F1 drivers are put under!
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Based on the search results, here are some innovative technologies that RideBoom could implement to enhance the user experience and stay ahead of ONDC:
Enhanced Safety Measures: RideBoom has already implemented additional safety measures, including enhanced driver background checks, real-time trip monitoring, and improved emergency response protocols. [1] To stay ahead, they could further enhance safety by integrating advanced telematics and AI-powered driver monitoring systems to ensure safe driving behavior.
Personalized and Customizable Services: RideBoom could introduce a more personalized user experience by leveraging data analytics and machine learning to understand individual preferences and offer tailored services. This could include features like customizable ride preferences, personalized recommendations, and the ability to save preferred routes or driver profiles. [1]
Seamless Multimodal Integration: To provide a more comprehensive transportation solution, RideBoom could integrate with other modes of transportation, such as public transit, bike-sharing, or micro-mobility options. This would allow users to plan and book their entire journey seamlessly through the RideBoom app, enhancing the overall user experience. [1]
Sustainable and Eco-friendly Initiatives: RideBoom has already started introducing electric and hybrid vehicles to its fleet, but they could further expand their green initiatives. This could include offering incentives for eco-friendly ride choices, partnering with renewable energy providers, and implementing carbon offset programs to reduce the environmental impact of their operations. [1]
Innovative Payment and Loyalty Solutions: To stay competitive with ONDC's zero-commission model, RideBoom could explore innovative payment options, such as integrated digital wallets, subscription-based services, or loyalty programs that offer rewards and discounts to frequent users. This could help attract and retain customers by providing more value-added services. [2]
Robust Data Analytics and Predictive Capabilities: RideBoom could leverage advanced data analytics and predictive modeling to optimize their operations, anticipate demand patterns, and proactively address user needs. This could include features like dynamic pricing, intelligent routing, and personalized recommendations to enhance the overall user experience. [1]
By implementing these innovative technologies, RideBoom can differentiate itself from ONDC, provide a more seamless and personalized user experience, and stay ahead of the competition in the on-demand transportation market.
#rideboom#rideboom app#delhi rideboom#ola cabs#biketaxi#uber#rideboom taxi app#ola#uber driver#uber taxi#rideboomindia#rideboom uber
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The global Power Management System Market is projected to reach USD 7.5 billion in 2028 from USD 5.8 billion in 2023 at a CAGR of 5.4% according to a new report by MarketsandMarkets™. Power Management System (PMS) is a set of hardware and software components designed to optimize and control the distribution and consumption of electrical power within a given system or facility. It plays a crucial role in modern power systems to ensure efficient energy utilization, reduce waste, and enhance overall system reliability and stability.
#power management system#power management#power management system market#power grid#power distribution#power transmission#energy#energia#power generation#utilities#power#utility#electricity#renewableenergy#powermanagement#power lines#power monitoring#powergrid
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Tools of the trade
Came home an hour ago from a reception I literally fled (busy week in this respect, unfortunately). And I kept being internally nagged during the short taxi ride, by what is probably at least this season's Anon. Landed in @bat-cat-reader's inbox with regard to Marple's most recent innuendo:

I had to know more about this, since I had no idea such deep diving tools were now available for pretty much everyone. Here's the gist of how it works, in pics and a quick review:
What Snoopreport promises its subscribers is to basically keep them posted on the targeted accounts' online behavior patterns...

... without the need to publicly follow them on Insta (sounds familiar?)...

...leaving no trace (zero accountability, because it uses only public data: this can be interpreted differently, in a different legal system/context, since several European countries, as I already discussed, have more protective legal provisions for a person's right to his/her own image)...

... at minimal costs (I suppose the most cost-effective, if we assume this is one of the used monitoring tools, would be the small business pack, allowing the super sleuth to track 10 different accounts, for peanuts):

A review of this product I have checked here (https://www.techuntold.com/snoopreport-review/) points out the obvious Achilles' heel of this app. Snoopreport obviously does not work for private accounts:

Which brings up a logical question: could the (in)famous 'resource' be S's private Insta account, in which case it would be very difficult for the sleuth to admit stalking it? Is it even technically possible to stalk a private Instagram account and remain unseen?
The answer to the latter is yes: other actors of this apparently very lucrative market, such as Glassagram (https://glassagram.com/), do not have Snoopreport's scruples and monitor even private accounts.
I think this is pretty self-explanatory and to be honest, it gave me the chills:

Serious reviews (https://www.techuntold.com/glassagram-review-spy-instagram/) are raving about this one, calling it the best app on the market, mainly because you can save all the snooped content on your own device:

... and the price, for stalking (their own choice of vocabulary, not mine, for once) an unlimited number of accounts is reasonable:

Best of it? They've been around since 2017.
In a nutshell: is it legal? it would seem so, in the US, not so sure about the UK/EU. Is it moral? It's up to you to decide what to think of a firm which has no problem admitting to encouraging stalking (but hey, don't listen to the nutcase here, huh?) and uses completely different real-life situations (infidelity, kids' monitoring) to assert its legitimacy and utility.
What I mean by this very long and illustrative post is this: you do not need inside sources/information to have one day the idea of crossing what is obviously (at least in my book) a red line. You just have to be able (lots of free time), willing (asserting power over a very thirsty and not so digitally skilled audience) and voilà: a Super Sleuth is born.
It is one thing to analyze and speculate, based on open sources, to your heart's content. It is a different affair altogether to obsessively monitor someone, with so much detail and personal (& financial) investment, over a substantial period of time. I will die on this hill and you will never change my mind on this one.
Is the emperor naked? I wouldn't venture speculating. What I do know, is that this emperor is a very, very sad one.
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AMF Generator Set Controllers Market Overview Outlook, Analysis, Trends, Demand, Opportunity, Forecast by 2032
Market Overview:
The AMF (Auto Mains Failure) generator set controllers market refers to the segment of the power generation industry that deals with controlling and monitoring backup generator sets in the event of a mains power failure. These controllers automatically start and synchronize the generator sets, ensuring a seamless transfer of power during outages.
Key Factors Driving the AMF Generator Set Controllers Market:
1. Growing Need for Reliable Backup Power: The AMF generator set controllers market is primarily driven by the need for continuous power supply across a variety of industries, including commercial, industrial, and residential. When the mains power goes out, these controllers automatically and effectively transfer power, guaranteeing ongoing operations.
2. Expansion of vital Infrastructure: Reliable backup power solutions are necessary for the growth of vital infrastructure, including data centres, hospitals, and telecommunication networks. During power outages, AMF generator set controllers are essential for managing the backup power systems and ensuring smooth power transmission.
3. Severe Regulations on electricity Quality and Reliability: Authorities are enforcing severe regulations on electricity quality and dependability. The provision of AMF generator set controllers aids in upholding the necessary power standards.
4. An increase in the frequency of natural catastrophes: As the frequency of natural disasters like hurricanes, earthquakes, and storms has increased, so has the demand for dependable backup power systems. AMF generator set controllers make sure that backup generators synchronise and start automatically, supplying power right away in emergency situations.
5. Growing Adoption of backup Generators: The need for AMF generator set controllers is being driven by the growing installation of backup generator sets in a variety of industries, including commercial buildings, healthcare facilities, and manufacturing facilities. During power outages, these controls allow standby generators to run without a hitch.
6. Technological Advances in Controller Functionality: Remote monitoring, diagnostics, and predictive maintenance capabilities are just a few of the functional improvements being made to AMF generator set controllers. These characteristics improve the effectiveness and dependability of backup power systems, driving their adoption.
7. Energy Efficiency and Environmental Sustainability are a Priority: Energy efficiency and environmental sustainability are now major factors in the production of electricity. AMF generator set controllers provide functions like load management and optimised power transfer, which save energy and have a smaller negative impact on the environment.
8. Integration with Smart Grid Systems: The AMF generator set controllers' integration with smart grid systems allows for effective load balancing and power management. By ensuring appropriate backup power resource utilisation, this integration also improves the grid's overall stability.
9. There is a rising need for hybrid power systems: which combine backup generators and renewable energy sources like solar and wind. In order to manage the synchronisation and power transfer between various energy sources and create hybrid systems, AMF generator set controllers are crucial.
10. Market expansion for rental electricity: is being driven by demand from building sites, special events, and temporary power requirements. In rental power systems, AMF generator set controllers are essential for automatic power transfer and stable backup power.
Trends :
IoT and cloud computing integration: AMF generator set controllers are being connected with IoT devices and cloud-based platforms to enable remote monitoring, data analytics, and preventative maintenance. This pattern increases operational effectiveness, lowers downtime, and increases system reliability.
Improved User Interface and User Experience: Manufacturers are putting more effort into creating graphical displays, touchscreens, and user-friendly interfaces for AMF generator set controllers. This tendency makes things easier to use and improves the user experience as a whole.
Demand:
Wireless communication in AMF generator set controllers is becoming more and more necessary. Wireless communication makes it possible for controllers, remote monitoring devices, and control centres to exchange data in real-time, increasing system accessibility and flexibility.
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Market Segmentations:
Global AMF Generator Set Controllers Market: By Company
• CRE TECHNOLOGY
• Kutai Electronics Industry Co., Ltd.
• S.I.C.E.S.
• bernini design srl
• Emko Elektronik A.Ş.
• Kadimendium
• DATAKOM ELECTRONICS ENGINEERING A.S
• Deep Sea Electronics
• ComAp
Global AMF Generator Set Controllers Market: By Type
• Automatic
• Manual
Global AMF Generator Set Controllers Market: By Application
• Power Industry
• Government and Utilities
Global AMF Generator Set Controllers Market: Regional Analysis
North America: The North America region includes the U.S., Canada, and Mexico. The U.S. is the largest market for Muscle Wire in this region, followed by Canada and Mexico. The market growth in this region is primarily driven by the presence of key market players and the increasing demand for the product.
Europe: The Europe region includes Germany, France, U.K., Russia, Italy, Spain, Turkey, Netherlands, Switzerland, Belgium, and Rest of Europe. Germany is the largest market for Muscle Wire in this region, followed by the U.K. and France. The market growth in this region is driven by the increasing demand for the product in the automotive and aerospace sectors.
Asia-Pacific: The Asia-Pacific region includes Singapore, Malaysia, Australia, Thailand, Indonesia, Philippines, China, Japan, India, South Korea, and Rest of Asia-Pacific. China is the largest market for Muscle Wire in this region, followed by Japan and India. The market growth in this region is driven by the increasing adoption of the product in various end-use industries, such as automotive, aerospace, and construction.
Middle East and Africa: The Middle East and Africa region includes Saudi Arabia, U.A.E, South Africa, Egypt, Israel, and Rest of Middle East and Africa. The market growth in this region is driven by the increasing demand for the product in the aerospace and defense sectors.
South America: The South America region includes Argentina, Brazil, and Rest of South America. Brazil is the largest market for Muscle Wire in this region, followed by Argentina. The market growth in this region is primarily driven by the increasing demand for the product in the automotive sector.
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#AMF Generator Set Controllers Market#Generation#Load Management#Power Resilience#Remote Monitoring#Generator Control Systems#Power Distribution#Emergency Power#Uninterrupted Power Supply#Power Outage Protection#Energy Security#Data Center Backup#Industrial Backup Power#Commercial Backup Solutions#Smart Control Systems#ATS (Automatic Transfer Switch) Integration#Grid Connectivity#Reliable Power Solutions#Backup Power Management.
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Fascism, Economic Elites, Big Tech, and the Massacre of Children in Palestine
The relationship between fascism, economic elites, and indifference to human suffering has deep roots in global political and economic history. This essay aims to explore how these forces interact in contemporary contexts, using the massacre of children in Palestine as a central point of analysis. Over the past decades, the expansion of Big Tech’s influence has significantly contributed to controlling information and reinforcing the power of economic elites at the expense of truth and human dignity. In this context, the systematic disregard for the suffering of Palestinian children goes hand-in-hand with close monitoring of financial and technological markets.
Fascism and Economic Elites: A Brief Historical Overview
Fascism, both as an ideology and as a system of government, is notorious for its brutality and disregard for human life, especially when that life is seen as an obstacle to economic progress or national and racial dominance. However, the close relationship between fascism and economic elites has often gone under-examined. Fascist regimes such as Benito Mussolini's Italy and Adolf Hitler's Germany relied on the support of large corporations and the industrial class, who saw these governments as a means to ensure social stability and protect their financial interests. The fear of communism and labor strikes drove industrialists to support authoritarian governments that promised to suppress internal opposition and preserve the economic order.
In this context, economic elites often turned a blind eye to the atrocities committed by fascist regimes, from political repression to genocide, such as the Holocaust. This same kind of indifference, driven by the logic of capital preservation, can be observed today regarding the massacre of children in Palestine. Large corporations and investors prefer to focus their attention on stock market performance, ignoring the human cost of wars and occupations that ensure their economic benefits.
The Economic Dynamics of the Israeli-Palestinian Conflict
The massacre of children in Palestine occurs within a global economic and political context, where the Israeli-Palestinian conflict takes on multiple dimensions. Israel, with its advanced and modern economy, heavily relies on the defense and security sector to maintain its geopolitical and military dominance in the Middle East. Major foreign investments and collaboration with Western powers ensure the continued prosperity of its economy, even during times of conflict.
On the other hand, Palestinians, especially in Gaza and the West Bank, live under extreme economic hardship due to the Israeli military occupation. Economic blockades, restrictions on movement, and the absence of basic infrastructure leave the Palestinian people in a constant state of vulnerability. In this oppressive environment, massacres of children and other forms of violence against civilians are seen by some as inevitable or even acceptable as long as they maintain geopolitical stability and protect global economic interests.
The Role of Big Tech: Controlling Information and Strategic Indifference
In the 21st century, Big Tech companies such as Google, Facebook (Meta), Amazon, and Microsoft play a central role in controlling information and shaping public discourse around global conflicts. These companies, through sophisticated algorithms, determine what people see, read, and talk about. In the case of the Israeli-Palestinian conflict, content showing the realities of violence, particularly the suffering of Palestinians, including the massacre of children, is often suppressed or censored.
This control of the narrative is crucial to protecting the interests of economic elites who benefit from the status quo. By restricting access to information that could spark popular outrage or global movements, Big Tech ensures continued economic and political stability, even in the face of crimes against humanity. Moreover, Big Tech companies have direct interests in the defense and security economy, signing lucrative contracts with governments, including the Israeli government, to provide surveillance, intelligence, and weaponry technologies.
Economic Elites: Profit Over Human Life
Global economic elites, comprising investors, multinational corporations, and financial conglomerates, exert a decisive influence on international policies and conflicts. Capital is often directed toward regions and sectors that promise the highest financial returns, regardless of the political or social conditions. These elites profit from the perpetuation of conflict and instability while remaining largely indifferent to the human suffering that ensues.
The massacre of Palestinian children is a tragic consequence of a system in which financial markets and economic interests are prioritized over human life and dignity. Economic elites, backed by Big Tech’s control over information and fascism’s historical precedent of collusion with industry, enable a world where profits trump the moral obligation to protect innocent lives. In this context, the indifference to the suffering of Palestinian children reflects a broader failure of global economic structures to prioritize humanity over capital.
#FascismAndCapital#PalestinianChildren#BigTechControl#EconomicElites#HumanRights#StopTheViolence#TechForJustice#EndOccupation#PalestineUnderAttack#ChildrenOfPalestine#ProfitOverPeople#GlobalIndifference#FreePalestine#MediaCensorship#JusticeForPalestine
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The AI Revolution in Remote Monitoring and Management is Here!
The RMM Software Market is projected to grow at an astonishing 15.4% CAGR from 2023 to 2030. This rapid growth is driven by the integration of Artificial Intelligence (AI) into remote monitoring and management solutions.
Key benefits of AI-powered RMM:
Real-time monitoring and analysis
Predictive analytics for proactive maintenance
Automated incident response systems
Enhanced security measures
Improved IT efficiency and productivity
As a professional in the IT industry, it's crucial to understand how AI is transforming RMM. By embracing these technologies, organizations can: ✅ Reduce mean time to detect and respond to incidents ✅ Improve predictive analytics for equipment failures ✅ Optimize resource allocation and utilization ✅ Enhance threat detection and security capabilities
Are you ready to leverage AI in your RMM strategy? Share your thoughts and experiences in the comments below!
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