#Building Automation Centric Wireless Protocols
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Lighting Controller Market Emerging Trends Reshaping Smart Illumination Systems
The lighting controller market is undergoing a transformative evolution, driven by advancements in smart technologies, growing demand for energy-efficient solutions, and the rapid adoption of IoT in lighting systems. Lighting controllers, which regulate the operation of lighting systems through various methods such as dimming, scheduling, and occupancy sensing, are becoming more intelligent and integrated. As smart buildings and smart cities expand, the role of lighting controllers is becoming increasingly pivotal. Emerging trends in this sector are shaping the future of architectural design, urban infrastructure, and energy conservation practices.

Surge in Demand for Smart and Connected Lighting
One of the most significant trends in the lighting controller market is the rise of smart and connected lighting systems. These systems use wireless communication protocols like Zigbee, Z-Wave, Bluetooth, and Wi-Fi to provide remote control and automation capabilities. Integration with smartphones, tablets, and voice assistants such as Amazon Alexa and Google Assistant allows users to control lighting from anywhere, enhancing user convenience and customization.
The demand for connected lighting is driven by both residential and commercial segments. In homes, users seek enhanced ambiance, security, and energy savings. In commercial spaces, facility managers benefit from centralized control systems that reduce maintenance costs and optimize operational efficiency.
Integration of IoT and AI Technologies
The convergence of lighting control systems with IoT and AI technologies is revolutionizing the market. IoT-enabled lighting controllers collect real-time data on occupancy, daylight availability, and user preferences. This data is processed using AI algorithms to automate lighting decisions and optimize energy use.
For instance, smart sensors can detect human presence and adjust lighting accordingly, while AI can predict lighting needs based on behavioral patterns. This integration supports advanced applications such as adaptive lighting in offices, retail environments, and urban street lighting systems. The ability to analyze and respond to data in real time is propelling the adoption of intelligent lighting solutions worldwide.
Focus on Energy Efficiency and Sustainability
Global initiatives to combat climate change and reduce carbon footprints are pushing governments and organizations to adopt energy-efficient lighting systems. Lighting controllers play a critical role in reducing energy consumption by enabling dimming, daylight harvesting, and demand-response capabilities.
Energy codes and green building certifications such as LEED and BREEAM often require advanced lighting controls as part of their criteria. These regulations are prompting building owners and developers to invest in controller technologies that ensure compliance and deliver long-term savings. Additionally, LED lighting, which is inherently more efficient, pairs effectively with smart controllers, further amplifying energy conservation.
Rising Adoption in Commercial and Industrial Sectors
While residential applications have seen steady growth, the commercial and industrial sectors are experiencing a surge in lighting controller adoption. Office buildings, hospitals, educational institutions, and manufacturing facilities are increasingly implementing automated lighting systems to reduce operational costs and enhance environmental comfort.
Commercial buildings benefit from features such as scheduling, occupancy-based controls, and integration with HVAC systems. Industrial facilities, particularly those with high energy usage, utilize lighting controllers to manage large-scale illumination and achieve better compliance with workplace safety standards.
Emergence of Human-Centric and Circadian Lighting
A growing focus on human wellness is influencing the development of human-centric lighting (HCL) systems. These lighting systems mimic natural light patterns and support the human circadian rhythm, promoting better health, productivity, and mood.
Lighting controllers are at the core of HCL systems, enabling dynamic adjustments in color temperature and intensity throughout the day. Hospitals, schools, and workplaces are adopting circadian lighting to enhance patient recovery, improve learning outcomes, and boost employee performance. The trend towards wellness-focused environments is expected to further drive innovations in lighting controller design.
Advancements in Wireless and Cloud-Based Control Platforms
Wireless lighting controllers are rapidly gaining traction due to their ease of installation, flexibility, and scalability. Unlike traditional wired systems, wireless solutions are ideal for retrofit projects and dynamic building layouts.
Cloud-based platforms are also revolutionizing lighting control by offering centralized monitoring, analytics, and remote management capabilities. Facility managers can receive performance reports, identify faults, and adjust settings in real time from a single dashboard. These advancements are simplifying lighting management and reducing the need for on-site technical support.
Conclusion
The lighting controller market is evolving at a rapid pace, fueled by innovations in smart technology, sustainability goals, and the growing need for intelligent building infrastructure. Trends such as connected lighting, IoT integration, energy efficiency, human-centric lighting, and wireless platforms are redefining how lighting systems are designed and managed. As more sectors recognize the value of smart lighting controls, the market is set to witness robust growth and continued technological advancement in the years ahead.
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Computer Science Dissertation Help
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Building Management System Market to Gain Due to Increasing Demand for Automation of Security Systems in Building & Large Construction Sites: Radiant Insights, Inc.
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Building Management System Market to Gain Due to Increasing Demand for Automation of Security Systems in Building & Large Construction Sites: Radiant Insights, Inc.
SAN FRANCISCO/ August 6, 2018 (STL.News)– The global Building Management System Market is subject to witness a substantial growth over the forecast period due to the growing demand for automation of security systems in building & large construction sites. The recent technological advancement in building & construction industry such as development of Building Automation-Centric Wireless Protocols and Wireless Sensor Network Technology, are propelling market growth, in the recent years. In addition, shifting trends towards of Internet of Things (IoT) technology in building automation system, soaring in demand for energy-efficient systems, and growing penetration of smartphones in building automation across the globe are anticipated to fuel the growth of building management system market over the forecast period. Globally, the building management system market is predicted to display high growth rate during the forecast period, providing numerous opportunities for market players to invest in research and development in the building management system market. Other factors responsible for sustained market growth are cost efficiency, increasing adoption in the commercial and residential building, simplified building operations, minimum maintenance, and growing need for energy-efficient and eco-friendly buildings. Furthermore, favorable government initiatives and schemes to promote energy-efficient and eco-friendly buildings are expected to offer numerous growth opportunities for industry players and vendors across the globe. The recent technological advances in the building & construction industry are predicted to propel the growth of building management system market over the forecast period. However, high complexity involved with execution of the building management system and absence of skilled labor force coupled with high initial cost of implementation are restraining market progress to large extent, in the recent years. The building management system market is broadly categorized into two major types such as facility management software and managed services. Facility management software is considered as one of the fastest growing segment in the building management system market with substantial revenue generation in the last couple of years. Growing popularity of the facility management software market segment is attributed to increasing demand for cost saving solution and effective management of heating, ventilation, and air conditioning (HVAC) systems and lighting systems. Heating, ventilation, and air conditioning (HVAC) systems and lighting systems usually consume large portion of power supplied to the building, in such scenarios, an efficient cost saving solution and advanced management system is off high importance. The managed services market segment has also witnessed significant growth in the last few years owing to large-scale outsourcing activities by a service provider in order to manage routine IT operations. Most of the smart or intelligent building consists of advanced facilities with direct integration such as enhanced security, access control, closed-circuit television (CCTV), fire management protocols, lifts and other safety measures. Building management systems (BMS) also called as building automation systems (BAS) or building management and control system (BMCS) that consists of advanced microprocessor based controller networks. The advanced microprocessor based controller networks are embedded into the BMS for monitoring and controlling various systems and services such as air conditioning, ventilation, lighting and hydraulics. Access 108 page research report with TOC on “Building Management System Market” available with Radiant Insights, Inc. @ https://www.radiantinsights.com/research/global-building-management-system-market-size-status-and-forecast-2025 Advantages of building management systems (BMS) include stimulation of internal comfort conditions, efficient management and controlling of energy consumption, longer life span of the building, and central and distant monitoring of building. These factors are expected to boost the growth of building management system market over the forecast period. The building management system market is divided by region as North America, Europe, Asia-Pacific, Latin America and Africa. European region has shown major growth in recent years owing to the rise in the implementation of latest technologies in the building & construction industry, numerous initiatives undertaken by local governments, increasing number of amended policy framework, and existence of well-established industrial infrastructure. Asia-Pacific region is predicted to hold major market share in the building management system market with massive growth in forecast period. Countries such as India, China and Japan are leading the Asia-Pacific market with varying business dynamics in the region, strong economic growth, rising infrastructural activities, and significant investment by leading industry players considering potential growth opportunities in the region. The key players in the building management system market are ABB Ltd., AT&T Incorporations, BOSCH GmbH, Cisco Systems, Inc., Honeywell International Incorporations, Hubbell Incorporations; Johnson controls international plc, Siemens AG, and United technologies Co. This report studies the global Building Management System Market, analyzes and researches the Building Management System development status and forecast in United States, EU, Japan, China, India and Southeast Asia. This report focuses on the top players in global market, like Honeywell Johnson Controls Siemens Schneider Trane Azbil Corporation UTC Beckhoff Technovator SUPCON ST Electronics KMC GREAT Cylon DEOS Airedale Fidelix ASI Market segment by Regions/Countries, this report covers United States EU Japan China India Southeast Asia Market segment by Type, the product can be split into BACnet LonWorks Others Market segment by Application, Building Management System can be split into Leisure&Hotel Style Exhibition Government Organs Commercial Office Scientific Research Institutions Manufacturing Plant Other Buildings Browse reports of similar category available with Radiant Insights, Inc.: Big Data in the Financial Services Industry Master Data Management (MDM) Market Employee Engagement Software Market Network Traffic Analytics Market About Radiant Insights, Inc.: At Radiant Insights, we work with the aim to reach the highest levels of customer satisfaction. Our representatives strive to understand diverse client requirements and cater to the same with the most innovative and functional solutions. Contact:
Michelle Thoras.
Corporate Sales Specialist
Radiant Insights, Inc.
Phone: +1-415-349-0054
Toll Free: 1-888-928-9744
Email: [email protected]
Web: https://www.radiantinsights.com
_____ SOURCE: https://www.prnewswire.com/news-releases/building-management-system-market-to-gain-due-to-increasing-demand-for-automation-of-security-systems-in-building-amp-large-construction-sites-radiant-insights-inc–891164980.html
#Building Automation Centric Wireless Protocols#Building Automation Systems#Building Management System Market#CCTV#Energy Efficient Systems#Internet of Things#market growth#Radiant Insights Inc#real estate#TodayNews#Wireless Sensor Network Technology
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Wireless Sensor Network Market SWOT analysis, Growth, Share, Size and Demand outlook by 2031 | Intel Corporation, ABB Ltd., Texas Instruments Inc.
Global Wireless Sensor Network Market report from Global Insight Services is the single authoritative source of intelligence on Wireless Sensor Network Market. The report will provide you with analysis of impact of latest market disruptions such as Russia-Ukraine war and Covid-19 on the market. Report provides qualitative analysis of the market using various frameworks such as Porters’ and PESTLE analysis. Report includes in-depth segmentation and market size data by categories, product types, applications, and geographies. Report also includes comprehensive analysis of key issues, trends and drivers, restraints and challenges, competitive landscape, as well as recent events such as M&A activities in the market.
A wireless sensor network is a network of sensors that communicate wirelessly with each other. The sensors are usually small, low-power devices that can be deployed in large numbers. The data from the sensors is typically used to monitor a particular environment or process.
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Key Trends
One of the key trends in Wireless Sensor Network technology is the development of low-power nodes. This is important because it enables the deployment of larger networks and allows for longer battery life.
Another key trend is the development of standards for communication protocols and data formats. This is important because it allows different types of sensor nodes to interoperate and exchange data.
Key Drivers
The key drivers of the Wireless Sensor Network market are the need for real-time monitoring, the need for accurate data, the need for low power consumption, the need for long battery life, the need for miniaturization, and the need for cost-effectiveness.
Market Segments
By Offering
Hardware
Software
By Sensor Type
Ambient Light Sensors
Motion & Position Sensors
By End-User Industry
Building Automation
Wearable Devices
By Region
North America
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Key Players
Intel Corporation
ABB Ltd.
Texas Instruments Inc.
Huawei Investment & Holding Co., Ltd.
Cisco Systems Inc.
STMicroelectronics N.V.
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Key Enterprise Mobility Trends to watch out for in 2021!

Times are changing and so are the business practices! Traditional office-centric workstations are gradually being replaced by remote workstations that provide employees the flexibility to work remotely using their personal devices and are given access to the required data via the cloud. Also, the practice of mobile-first strategy for business functions is gaining momentum. This mobile-centric and remote working style is an on-going trend and is referred to as enterprise mobility. The key objectives of enterprise mobility are:
Greater agility
Increased employee engagement and efficiency
Enhanced productivity
Reduced expenses
Round-the-clock availability and quick sharing
A growing number of businesses are adopting this model to boost profitability. However, to reap its benefits, this business model needs to be properly executed through an effective management plan, safety measures, etc.
This article pens down the most trending enterprise mobility practices.
Enterprise Mobility Trends of 2021

Cross-platform approach
Cross-platform app development is increasingly being used in place of native development as it reduces the time-to-market and the cost of developing applications. This is because most of the code written is reusable across multiple platforms. Hence, this approach proves advantageous for developers, mobile app development companies as well as businesses hiring app development services.
BYOD Policy
The BYOD or bring-your-device policy allows employees to use their personal devices like laptops, smartphones, or computers for office work. Therefore, instead of providing devices to employees, the company has to only provide internet connectivity and enterprise-level software to make the employees’ devices function as per the required business standards. This helps the enterprise to save on infrastructure costs. BYOD approach also enables employees to download customized apps for easing out tasks, which in turn leads to greater productivity. However, companies following this model need to make sure that their safety protocol is strictly adhered to when personal devices are configured into their eco-system.
IoT (Internet of Things)
IoT mobility solutions simplify and smarten business operations. Internet of Things or IoT-powered solutions comprises a network of interconnected devices, sensors, etc. possessing unique identifiers (UIDs) that collect and transfer data within the network. Additionally, wireless and cellular technologies allow prompt collection and efficient management of data. Smart healthcare, smart retail, and smart factory are some examples of IoT implementation. Advanced analytics is performed over data that is collected. Inferences drawn from this analytics is used to make informed decisions for the companies.
AI Empowered Functionalities
Artificial Intelligence-powered devices utilize intelligent algorithms to reduce the workload of the human workforce by automating menial and repetitive tasks like customer service processes. This enables employees to concentrate on tasks that need creativity and thought processing, thereby enhancing their productivity. Voice-controlled personal assistants like Alexa for business and chatbots are the commonest examples of AI.
Wearable Technology
The contemporary market is flooded with ingenious wearable devices and so its high time companies should integrate wearables into their workflow. It has the following benefits.
It is portable, easy to use, and can be effortlessly integrated with the corporate workflow.
It is capable of revamping an enterprise’s communication infrastructure.
It provides flexibility to employees and as such enhances efficiency.
Augmented Reality and Virtual Reality
A combination of Augmented Reality (AR) and Virtual Reality (VR) eases out EMM (Enterprise Mobility Management), streamlines business processes, and increases the engagement rate. The AR and VR solutions turn out to be very unique and innovative. Training pilots, bringing back low vision, and treating patients suffering from autism are some of its applications.
Emergence of Blockchain Technology
Blockchain technology is being used by businesses to implement cost-reduction measures, strengthen their security models, improve the rate of data exchange, and many more such functions to enhance their workflow.
The Beacon technology
Beacon devices refer to battery-operated Bluetooth Low Energy modules. Beacons transmit signals that trigger alerts in all those applications that are connected to them. The Beacon technology proves advantageous for security operations in various sectors as the necessary information is delivered in very little time. Furthermore, the data accumulated via Beacons are analyzed for improving business operations to optimize output.
The Hybrid Cloud
The Hybrid cloud refers to a cloud computing eco-system that is a blend of off-premise public cloud and on-premise private cloud. It executes functions like arranging and managing workflow across two or more computing eco-systems. It helps in carrying out remote functions, managing data, improving scalability, handling security issues, and enables one to quickly adapt business processes as per the market demands.
Adoption of 5G network
5G network is arriving soon. It comes with a guarantee of stable network connections and excellent internet speed. This will simplify and speed up crucial business functions like downloading, uploading, and transmission of data. Moreover, 5G will improve the performance of certain enterprise mobility mechanisms like cloud computing systems used for storing files, video-conferencing functions, and tools used for collaboration over the web. As a result, numerous roadblocks will be resolved and businesses will be able to endorse new-fangled inventions such as immersive VR, robotic telemedicine, self-driven cars, etc. So, enterprises will undoubtedly benefit from 5G adoption, even if they have to take efforts for making their devices 5G compatible.
Bottomline
The aforesaid enterprise mobility trends have become an absolute necessity for businesses to survive in this dynamic and competitive market.
Looking for a technology partner for integrating enterprise mobility solutions into your corporate environment? Reach out to Biz4Solutions, a noteworthy mobile app development company, highly experienced in assisting businesses to build and implement software solutions.
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React Native App Development Company
Angular App Development Company
Ionic App Development Company
#Enterprise Mobility trends#Mobile app development company#Mobile App Developers#Cross-Platform App Development#IoT mobility solutions#Blockchain technology
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IOT - Glossary - A
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IOT - Glossary - A

IoT
Introduction
IoT has taken over our lives. As you have come to this blog you already know about it.
Whether you are interested in smart homes, smart cities, cutting edge computing, or IIoT, We’ve compiled a list of devices, protocols, and IoT-centric phrases that you should know while you dive into our connected future. If we missed something, let us know in the comments and provide us with new terminologies and what should be a good definition. In a way its your dictionary.
IT being part of new era of devices with endless list of terms. Thus we showcase here only Glossary starting with alphabet “A”. Keep following our blog for updated list.
Glossary A
AAA
AAA meaning is its full form only i.e. Authentication, Authorization & Accounting.
AAL – Ambient Assisted Living
AAL are Intelligent systems that are to assist the elderly and others with care activities daily, mostly through IoT technology. Where application fields are mainly security (for example, observation), functionality (such as automated light switches), and entertainment.
ACaaS – Access Control as a Service
A recurring fee-based system where a facility manager outsources electronic access control to a third party. Each facility need not maintain a dedicated server.
Acceleration Sensing
It’s a concept referring to the increase in movement of an object from one point to another that should be along a straight line or axis. Typical application includes remote control, pointing devices, fitness monitoring equipment, gesture recognition etc.
Accelerometer
A tool that measures changes in gravitational acceleration in the unit it may be installed in. Accelerometers are mainly used to measure acceleration, tilt or vibration in many devices.
Access Control
It’s a system that is to determine who, when, and where one (people) is allowed to enter or exit a facility or area. Door locks is the traditional form of access control, however modern access control may include electronic systems or wireless locks. Access control may also apply to cyber security.
Access Point
A Wi-Fi node that allows users entry to a network, typically a LAN.
Active Sensor
It’s a sensing device that mainly requires external source of power to operate.
Actuator
A device that creates motion by converting electrical energy into mechanical energy in an electromechanical system. (An actuator can also stop motion by clamping or locking.) A dynamo as such is an example of actuator.
ADAS – Advanced Driver Assistance Systems
Digital features incorporated into vehicles to enhance driver safety and performance. ADAS functionality includes blind spot detection, digital vision for lane departure warnings, radar for collision avoidance, and Vehicle to vehicle (V2V) communication for multiple vehicles to operate near each other. The data and connectivity integral to ADAS transforms vehicles into IoT devices.
Additive Manufacturing
Industry-specific term for 3D printing, involves building products by adding layers instead of the traditional technique of removing material via milling.
Address-ability
The scope for an entity to be targeted and found. To be addressable, entity must be uniquely identifiable, meaning that it must be linked with something — typically an alpha-numeric string — and it should not be associated with anything else in that system.
AES – Advanced Encryption Standard
Electronic data encryption specification was established in year 2001. Concept operates on public/private key system. Planning for key management and implementation is important when setting AES. This is the standard protocol for setting transport layer security in IoT devices.
AIM – Automated Identification and Mobility Technologies
Group of technologies that are used to identify, store and to communicate data. For example – barcoding. Though there are many technologies in this area which are used for different services or are often used in combination.
AML – Ambient Intelligence
An environment that is sensor-filled which not only interpret, react to human events but also activity & learning to adapt over time. Operation of environment and services change based on that activity.
AMPS – Advanced Mobile Phone System
Its an analogue based cellular mobile system using FDMA technology.
AQMP – Advanced Message Queuing Protocol
An open application layer protocol for message-oriented middle-ware with a focus on queuing, routing (P2P, PubSub), security, and reliability.
It’s an open-source standard works as application layer protocol for business message communications. Its features include message style, queuing, routing, stability, and security.
Android Wear
When an open-source platform extends the Android system to wearables with help of the SDK includes that includes an emulator too.
Anomaly Detection
Its a statistical technique that determines which patterns are normal and then examines items that don’t conform to those patterns. Unlike simple classification, in anomaly detection of data, users don’t know what they are looking for.
ANSI-136
Standard 41 – American National Standards Institute, Its for TDMA cellular.
ANSI-2000
Standard 41 – American National Standards Institute, Its for CDMA2000 cellular.
ANSI-41
Standard 41 – American National Standards Institute, Its for control signal messaging on SS7.
ANSI-95
Standard 41 – American National Standards Institute, its for CDMA cellular.
AP – Access Point (Wireless)
A Wi-Fi node that allows users entry to a network, typically a LAN.
API – Application Programming Interface .
It’s a set of commands and related protocols to interact with an operating system, device, or specific software part. In IoT, an API lets the developer access framework externally without going deep in software programming at server end. The functionality of a device or sensor can be accessed for reports or changed based on API permissions related to public or specific users.
Application Agents
Its helps to address the lack of overheads for an end-to-end, peer-to-peer networking in IoT architecture, this is achieved by their presence in propagator nodes in an enterprise. They move intelligent command data to the edge of the network, this is to help manage traffic, allow a real-time response to dynamic IoT conditions, and provide local client services.
Application Software
These are programs that enables specific, end-user actions. This means that software uses the potential provided by computers to become an application. Examples – Microsoft Word (i.e. for text editing), Adobe Photoshop (i.e. for image editing), and other programs.
Arduino
A single-board micro-controller used for prototyping without having to deal with breadboards or soldering. The software that is used to operate an Arduino is absolutely free and open source.
ARP – Address Resolution Protocol.
It’s a communication protocol that is used to convert an IP address into a physical address. This way, computers can communicate with each other, despite only knowing each other’s IP addresses, by sending an ARP request that informs them about the other computer’s MAC address.
ASSN – Application Specific Sensor Nodes
Integrating sensors and sensor fusion in a single device. It has a built-in intelligence to overcome the complexity of using multiple sensors to a specific problem. Example – augmented reality, navigation, positioning, and more.
AT Commands
Attention commands, developed by Dennis Hayes, that are used to set data connections. The set of short string commands allow developers to set up calls with a modem, as well as perform far more complex tasks. For an example of an AT command set, take a look at Telit’s 3G module, the HE910, AT command directory.
Audio Profile
Hardware profile used with the Bluetooth applications that is to include custom AT commands and functionality is dedicated to wireless streaming of audio. Examples include A2DP, which allows streaming of audio to speakers. Where as, an audio gateway profile allows two-way audio communication used in devices like headsets.
Augmented Entity
A physical entity that is represented by virtual entity on digital level. An augmented entity combines the two and represents as an combination of the two entities.
AWS – Amazon Web Services
Brand Name given to collection of remote computing services which are offered by Amazon.com. In all it combines to make a cloud computing platform.
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Worldwide Building Automation Market Is Chiefly Driven by the Vast Advancements
Market Highlights
The major factors driving the building automation market are the rise in the demand for the energy-efficient systems, advancements in the building automation centric wireless sensor network technology and wireless protocols, technological advancements in the building automation system with the help of IoT systems, and rapid growth of infrastructure in the developing countries. Lack of skilled labors, technical difficulties and the high implementation cost are the major factors that may hinder the progress of the building automation market in the near future. Additionally the technological advancements in the printed Communication Technology one of the major growth opportunities for the Building Automation market players. The major challenges faced in this market are the high research & development cost and the sustainable e-packaging products.
Building automation is the automatic centralized control of a building's ventilation, heating, lighting, air conditioning, and other systems via a building automation system. The objectives of building automation are efficient operation of building systems, enhanced occupant comfort, improved life cycle of utilities and reduction in energy consumption and operating costs.
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Major Industry Player’s
The growing necessity for the automation of security systems in various buildings is anticipated to drive the APAC market for building automation in the future years.
The major companies that providing building automation Siemens AG, Honeywell International Inc., Schneider Electric Corp., Johnson Controls International PLC, United Technologies Corp., Schneider Electric Corp., Hubbell Inc., Legrand SA., Building, ABB Ltd., Robert Bosch GmbH, Ingresoll -Rand PLC., Lutron Electronics Co., Inc., and Crestron Electronics, Inc.
Building automation is an sample of a distributed control system – the computer networking of electronic devices integrated to monitor and control the security, fire, mechanical, and flood safety, lighting, HVAC & humidity control and ventilation systems in a building. BAS core functionality is to keep building weather within a definite range, providing light to rooms based on an occupancy schedule. A basic functionality of BAS is to reduce building energy and maintenance costs compared to a non-controlled building.
Market Segments
The global building automation market has be categorized into communication technology, offerings and regions. Based on the communication technology the market has been segmented into wired technologies, and wireless technologies Based on offering the market has been bifurcated into facility control systems, building energy management software, security and access control systems, BAS services among others.
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Regional Analysis
Geographically, the Building Automation market has been bifurcated into five regions North America, Europe, Asia Pacific, Middle East & Africa and Latin America. The Building Automation market size and forecast period for each region has been estimated from 2017 to 2023. Additionally the CAGR (%) for the forecasted period 2017 to 2023. The study also includes market estimates for major countries/regions such as the U.S, the U.K., Germany, France, Japan, China, India, GCC, North Africa, South Africa and Brazil. The detailed analysis by Communication technology, offerings, applications and regions supports in evaluating the present scenario, growth prospects and the future scenario for the building automation market over the forecast period. Thus, the report delivers in-depth segment analysis of the market and classifies it into various industries, thereby providing valuable perceptions.
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Why Node.JS Is A Natural Fit For IoT Applications?
In order to leverage technology to activate business growth, one has to keep eye on technological expansion. That is the way how big companies are evolving by identifying the next “big thing”.
To overcome the hurdles and attain smoother flow in business, sooner or later, every business needs to acquire data management tools, network control, and intelligent solutions.
It is quite tough to identify the ideal technology that befits your business needs. Considerably, IoT, big data analysis, the cloud will drive significant changes in business process management.
IoT(Internet of things) is all about synchronized and connected environment across the system that includes the integration of microservices, web, wireless technology, sensors, and devices.
IoT is a buzzword nowadays. Here in this post, we will help you choose the best technology for developing an IoT application.
“As the next evolution of computing, Internet of Things is taking the first place to capitalize on it in order to drive significant changes for more connected and synchronized world.”
Here Node.js comes into the picture. It can be observed that when it comes to the “IoT application development“, most systems failed to provide a uniform experience across the devices and real-time reflection through embedded systems.
Node.js: Gaining In Popularity to Address the Needs of IoT
Have a look at this numeric form of an IoT expansion:
IHS predicts that the IoT market will grow from an installed base of 15.4 billion devices in 2015 to 30.7 billion devices in 2020 and 75.4 billion in 2025.
On the other hand, Node.js is widely used to build highly-scalable and modern applications.
Node.js is an open-source, cross-platform JavaScript runtime environment that is used by big brands to develop and maintain applications.
Do you know who is using Node.js to boost the productivity and meet the real-time business needs?
Microsoft has embraced NodeJS to result in direct integrations with Microsoft Azure platform. IBM has chosen Node.js to automate the various testing modules across the system PayPal has also picked Node.js as a web platform to handle massive traffic, bring scalability and security to the server Netflix also embraced Node.js to result in feature-rich single-page web application Uber has selected Node.js for its multi-functional distributed web architecture.
How Node.js Fulfills the IoT Objectives into Applications?
Node.js is the ideal choice for building the Internet of Things applications. Here’s how:
Recently, there has been a lot more talk about the combination of IoT and Node.js platform. Built on Google’s V8 open source JavaScript engine, Node.js is considered as the best platform for building modern, data-centric, real-time applications.
When the talk comes to IoT, there must be programmable devices such as sensors, beacons, wearable, and microsystems. Apparently, IoT devices generate a big number of requests as it handles interaction across the devices.
It is important to note that, Node.js is very fast, making the request-response flow smoother and faster. With the perfect background of an IoT community, the Node Packaged Modules (NPM) is equipped with more advanced repositories to fulfill the IoT needs.
The main advantage of using Node.js in IoT application is the faster and real-time execution. On the server side, it also occupies less memory and results in smoother performance. Indeed, with the great support of APIs and low-resource requirements of Node.js, developers can create scalable, modern, and efficient applications.
In order to gain the competitive edge for IoT applications, Node.js can build apps with high scalability, attractive UI/UX structure, and connective, integrated functions. Whether it is a consumer or a developer, Node.js is the perfect fit for API-based IoT applications.
What Makes the Node.js a Great Choice for IoT Applications?
When we’re talking about IoT, there is a prior need to connect with various devices such as sensors, beacons, transmitters, and so on. To handle such interconnected devices that have an affinity to generate a number of data transactions, Node.js is a suitable platform. This is because, Node.js works with streams, readable and writable channels.
The robust sockets and MQTT, a light-weight messaging protocol are specifically built to make data transmission smoother in IoT applications.
IoT devices, platforms, and programs such as Arduino, Raspberry Pi, Intel Edison, Galileo, BeagleBoard are used for building large-scale application production.
As mentioned above, the NPM (Node package manager) equipped with more than 80 packages for Arduino controllers, Raspberry Pi, and Intel IoT Edison. Apart from that, NPM also contains different built-in architecture for Bluetooth devices and sensors.
One of the chief advantages using Node.js is the JavaScript. It is very easy to understand and use. Node.js is making IoT development in its favor with the collection of data, effective and rapid communication, analysis, and act. This is how Node.js is a well-suited technology for IoT application development.
If you want to leverage Node.js into your existing system to make it scalable and feature-rich, or building new applications from scratch, we can help you to drive maximum ROI for your business.
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Amazon Applies Its AI Tools to Cyber Security
www.inhandnetworks.com
This article originally appeared on The Motley Fool.
Amazon.com, Inc. has been making quite a push into the field of artificial intelligence (AI). Its most public example of this effort, Alexa, its voice-activated digital assistant, controls the Echo smart speaker and Echo Dot, which were top sellers on Amazon's website over the holidays.
Those familiar with Amazon Web Services (AWS), an industry leader in cloud computing, may also be aware of the AI-based tools the company has recently made available to AWS customers: Rekognition for building image recognition apps; Polly for translating text to speech; and Lex, to build conversational bots.
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Amazon also is adding cyber-security to its AI resume. TechCrunch is reporting that Amazon has acquired AI-based cyber-security company Harvest.ai. According to its website, Harvest.ai uses AI-based algorithms to identify the most important documents and intellectual property of a business, then combines user behavior analytics with data loss prevention techniques to protect them from cyber attacks. Harvest.ai already had ties to Amazon, as a customer who was featured in an AWS Startup Spotlight article, which focuses on innovative and disruptive young companies. Harvest.ai boasts former members of the National Security Agency (NSA), Federal Bureau of Investigation (FBI), Department of Defense (DoD), as well as former employees of Websense and FireEye, Inc .
Harvest.ai's flagship product, MACIE, monitors a company's network in near real-time to identify when a suspicious user accesses unauthorized documents. Its target market was "Fortune 1000 organizations that were migrating to cloud-based platforms." Amazon has a Who's Who of big name companies as customers, so it seems like a natural fit for the company. If it decides to deploy MACIE to its cloud, it adds to the suite of hosting products available for its customers. Amazon already offers its Amazon Inspector, which it defines as an "automated security assessment service to help improve the security and compliance of applications deployed on AWS." Harvest.ai would take that to the next level.
The use of AI in cybersecurity isn't new. MIT has been experimenting with a novel approach to application. By pairing a system with a human counterpart and applying supervised learning, the system was able to detect 85 percent of threats. Over time, that success rate is sure to improve. Last year, IBM announced an initiative to train its AI-based Watson in security protocols, in what was to be a year-long research project. By the end of the year, the company expanded the beta program with the inclusion of 40 clients across a variety of industries. Earlier this month, IBM announced that Watson for Cyber Security would be available to customers.
The task of cyber security seems ideally suited to AI applications. The ability to digest a magnitude of data in a short time and match real-time situations against a set of specified criteria seems tailor made for the platform. Add to this AI's ability to learn over time and it seems inevitable that there would be a merging of these technologies.
These acquisitions combined with Amazon's own research makes it one of several companies on the cutting edge of AI. Amazon has been applying the knowledge it gains across a wide swath of its business from consumer facing products to its business-centric applications.
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Building Management System Market to Gain Due to Increasing Demand for Automation of Security Systems in Building & Large Construction Sites: Radiant Insights, Inc.
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Building Management System Market to Gain Due to Increasing Demand for Automation of Security Systems in Building & Large Construction Sites: Radiant Insights, Inc.
SAN FRANCISCO/ August 6, 2018 (STL.News)– The global Building Management System Market is subject to witness a substantial growth over the forecast period due to the growing demand for automation of security systems in building & large construction sites. The recent technological advancement in building & construction industry such as development of Building Automation-Centric Wireless Protocols and Wireless Sensor Network Technology, are propelling market growth, in the recent years. In addition, shifting trends towards of Internet of Things (IoT) technology in building automation system, soaring in demand for energy-efficient systems, and growing penetration of smartphones in building automation across the globe are anticipated to fuel the growth of building management system market over the forecast period. Globally, the building management system market is predicted to display high growth rate during the forecast period, providing numerous opportunities for market players to invest in research and development in the building management system market. Other factors responsible for sustained market growth are cost efficiency, increasing adoption in the commercial and residential building, simplified building operations, minimum maintenance, and growing need for energy-efficient and eco-friendly buildings. Furthermore, favorable government initiatives and schemes to promote energy-efficient and eco-friendly buildings are expected to offer numerous growth opportunities for industry players and vendors across the globe. The recent technological advances in the building & construction industry are predicted to propel the growth of building management system market over the forecast period. However, high complexity involved with execution of the building management system and absence of skilled labor force coupled with high initial cost of implementation are restraining market progress to large extent, in the recent years. The building management system market is broadly categorized into two major types such as facility management software and managed services. Facility management software is considered as one of the fastest growing segment in the building management system market with substantial revenue generation in the last couple of years. Growing popularity of the facility management software market segment is attributed to increasing demand for cost saving solution and effective management of heating, ventilation, and air conditioning (HVAC) systems and lighting systems. Heating, ventilation, and air conditioning (HVAC) systems and lighting systems usually consume large portion of power supplied to the building, in such scenarios, an efficient cost saving solution and advanced management system is off high importance. The managed services market segment has also witnessed significant growth in the last few years owing to large-scale outsourcing activities by a service provider in order to manage routine IT operations. Most of the smart or intelligent building consists of advanced facilities with direct integration such as enhanced security, access control, closed-circuit television (CCTV), fire management protocols, lifts and other safety measures. Building management systems (BMS) also called as building automation systems (BAS) or building management and control system (BMCS) that consists of advanced microprocessor based controller networks. The advanced microprocessor based controller networks are embedded into the BMS for monitoring and controlling various systems and services such as air conditioning, ventilation, lighting and hydraulics. Access 108 page research report with TOC on “Building Management System Market” available with Radiant Insights, Inc. @ https://www.radiantinsights.com/research/global-building-management-system-market-size-status-and-forecast-2025 Advantages of building management systems (BMS) include stimulation of internal comfort conditions, efficient management and controlling of energy consumption, longer life span of the building, and central and distant monitoring of building. These factors are expected to boost the growth of building management system market over the forecast period. The building management system market is divided by region as North America, Europe, Asia-Pacific, Latin America and Africa. European region has shown major growth in recent years owing to the rise in the implementation of latest technologies in the building & construction industry, numerous initiatives undertaken by local governments, increasing number of amended policy framework, and existence of well-established industrial infrastructure. Asia-Pacific region is predicted to hold major market share in the building management system market with massive growth in forecast period. Countries such as India, China and Japan are leading the Asia-Pacific market with varying business dynamics in the region, strong economic growth, rising infrastructural activities, and significant investment by leading industry players considering potential growth opportunities in the region. The key players in the building management system market are ABB Ltd., AT&T Incorporations, BOSCH GmbH, Cisco Systems, Inc., Honeywell International Incorporations, Hubbell Incorporations; Johnson controls international plc, Siemens AG, and United technologies Co. This report studies the global Building Management System Market, analyzes and researches the Building Management System development status and forecast in United States, EU, Japan, China, India and Southeast Asia. This report focuses on the top players in global market, like Honeywell Johnson Controls Siemens Schneider Trane Azbil Corporation UTC Beckhoff Technovator SUPCON ST Electronics KMC GREAT Cylon DEOS Airedale Fidelix ASI Market segment by Regions/Countries, this report covers United States EU Japan China India Southeast Asia Market segment by Type, the product can be split into BACnet LonWorks Others Market segment by Application, Building Management System can be split into Leisure&Hotel Style Exhibition Government Organs Commercial Office Scientific Research Institutions Manufacturing Plant Other Buildings Browse reports of similar category available with Radiant Insights, Inc.: Big Data in the Financial Services Industry Master Data Management (MDM) Market Employee Engagement Software Market Network Traffic Analytics Market About Radiant Insights, Inc.: At Radiant Insights, we work with the aim to reach the highest levels of customer satisfaction. Our representatives strive to understand diverse client requirements and cater to the same with the most innovative and functional solutions. Contact:
Michelle Thoras.
Corporate Sales Specialist
Radiant Insights, Inc.
Phone: +1-415-349-0054
Toll Free: 1-888-928-9744
Email: [email protected]
Web: https://www.radiantinsights.com
_____ SOURCE: https://www.prnewswire.com/news-releases/building-management-system-market-to-gain-due-to-increasing-demand-for-automation-of-security-systems-in-building-amp-large-construction-sites-radiant-insights-inc–891164980.html
#Building Automation Centric Wireless Protocols#Building Automation Systems#Building Management System Market#CCTV#Energy Efficient Systems#Internet of Things#market growth#Radiant Insights Inc#real estate#TodayNews#Wireless Sensor Network Technology
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