#SCADA Network Assignment Help
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cnonlinehelp-blog · 7 years ago
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SCADA Network Assignment Homework Help
http://computernetworkingonlinehelp.com/SCADANetwork.php
Our experts will help you in solving SCADA assignment in best possible way and we can assure you to deliver highest quality solution. We have the best experts/tutors to provide help to the students in need. You can receive a highest quality, plagiarism free and accurately done assignment in your inbox within the mentioned deadline. If you need any help/assistance in SCADA Assignment Help, Homework Help, and Online Tutoring Help please email your assignment to [email protected]. Some of the software products usually used within the SCADA system includes:Communications network management softwareOperator terminal OSOperator terminal applicationRTU automation software
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infocareerindia-blog · 6 years ago
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Top 10 Project Management Tools.
Top 10 Project Management Tools.
Small-scale project is pretty simple to manage but, becoming challenge in large projects handling resources, now this is where project management tools come in to the rescue.
So, project managers preferring project management tools worldwide.  
Project ------> Project Management --------> Project Management tools            
Project management ensures a smooth flow of development of these projects starting from its conception till its delivery. It is a practice of initiating, planning, executing, monitoring & controlling and closing the work of a team to achieve specific goals and meet specific success criteria at the specified time for easy and systematic project management.
Tools act as an aid to an individual as well as a team.
Now we listing out some of top 10 project management tools.
Those are give below,
MS Project
Its portfolio management tool, provided by Microsoft. It provides cloud-based and on-premise options & it also provides the integrated planning tools, which helps in organizing and keeping tab of projects including daily tasks and overall directions to this tool is comprised of three main modules.
l The project management module.
l Portfolio management.
l Resource management.
SCORO
It can manage your entire company in one place. It unifies your disparate systems and countless spreadsheets into one single tool. It is basically a software as a service solution for professionals and creative services. Few of its intriguing features include collaboration of productivity project management and Sales force automation as well as CRM SCADA works exceptionally well with a small or medium-sized teams.
Freed Camp
Freed camp is a web-based project management tool. An organization system that can be used by a single or multiple users. Those who are all collaborating by using cloud computing, it’s an ideal tool for these people and businesses who want to stay in control of their projects resources budget and
time it provides various exceptional features like signing tasks to team members, scheduling events via calendar, discussion boards on time tracking and lot moreover free Camp. And also its helps you in improving your work flow determining your, targets and achieving your goals within the specified time.
Podio
Podio is a cloud-based collaboration service which is powered by Citrix. This is the social collaboration tool where one can build applications and set up work spaces to support the preferred work flow and become more effective. It is a perfect tool for enhancing the collaboration as it lets you connect with colleagues via internal social network and chap few are the features of podio include granular access personal dashboards connected with CRM data visualization. And this is third-party app integration and full customization of your whole tool bar.
Zoho.
Zoho is a free online project management software & competitive project management tool in the market. That lets you make you as prisoners projects, this more productive and finish them within a given time frame using Zoho. you can get in-depth insight with charts and reports while collaborating with your team clients vendors or consultants seamlessly. Its basically divides your large and complex projects in a small manageable units and then schedules the recurring tasks dependencies and sub tasks according to the deadlines features like gand charts, bug trackers chat reports talks and time sheets etc.
Basecamp.
Basecamp is a real-time communication tool which helps in teams, so that to stay on the same page and its less for traditional project management tasks. And its having more reliable service that offers simple setup and short learning time along with the to-do lists, calendaring due dates and file sharing
Functions and keep tracking of priorities with actionable items. Which becomes much easier. It is an innovative solution which you can use as a document and file manager.
Jira
It is most popularly used for bug tracking and issue tracking, developed by Acylation. Name JIRA is derived from the Japanese word Gojira which means Godzilla using JIRA. It can be easily plan track and manage your agile software development projects by customizing your work flow and team
Collaboration. It provides special features for each all software development which helps the team to stay focused on delivering iterative and incremental value as fast as possible with customize scrum boards.
Trello
Trello is a web based project management application developed by fog Creek software and is currently owned by Attrition. Trello provides the visual way for teams to collaborate on any project it is incredibly flexible and easy to use and keep track of each and every detail by the big picture or a minor detail using Kanban style management. It keep your data secure and private as it use as SSL or HTTPS connections in few astonishing features. This is quick overview on front and back of cards, easy organization with tags, labels, drag and drop functionality check lists with progress meters, easy uploading of files in attachment data's, filtering etc.
Asana
Asana is a web and mobile project management application, designed to help team track. it's simple, powerful enough to run your entire business. It provides plenty of features that can help your organization in track, work in a way that fits in every teams. Work flow by providing transparency and
clarity to team mates. Asana addresses a fundamental problem for allowing team members to know exactly what is going on by easily providing information about who is doing what by when and how users are able to focus on their missions and excel at their work it is a great tool for effortless of project tasks. Features like activity feeds adding assigners attachments adding tasks automatic updates to email boxes, customs, calendars, views email bridges etc.
Wrike
Its a powerful online project management software, which provides full visibility and control over project tasks. It’s an award-winning software for online project management. It helps in improving speed and efficiency of work in both co-located and in distributed groups.This Reich allows you to schedule prioritize discuss and keep track of both work and progress in a real-time environment and also it provides interactive, user-friendly navigation, excellent security measures and even mobile apps using which you can easily track and monitor your progress from your mobile phones anytime and anywhere. It is trusted application that is used by over 15,000 organizations including small midsize and Enterprise
If you want know the price of that management tools click here,
Other than those tools, you can share your list of tools with us, as well by putting them down in the comment section below. We hope, you like this article.
Be kind enough to like it and you can comment any of your doubts and queries and we will reply them at the earliest do look out in comment in our article list and also you contact us in http://www.infocareerindia.com/.
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shrinathelectrics · 4 years ago
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What Is an Electric Automation Panel & Why Do You Need One?
An Electrical Automation Panel is simply a combination of devices that use electrical power to control the various mechanical functions of industrial equipment. An electrical control panel includes two main categories, which are a panel structure and electrical components. It consists of a lot of electronic systems which are used for the betterment of the power factor.
Any industrial equipment and machinery require defined and ordered functions and control to achieve their pre-assigned goals. Electrical automation panels carry out these functions within manufacturing equipment. An understanding of what they are spotlights their critical importance to the industry. Shrinath Electric deals in distribution of electrical automation panels.
The Panel structure of the Electric Automation Panel
Any electrical panel manufacturer will tell you that the structure of any electric automation panel is a combination of two things,  an enclosure and a back panel which is similar to a breaker box in a home or an office.
 The Panel structure of the Electric Automation Panel
The structure of any electric automation panel is a combination of two things,  an enclosure and a back panel which is similar to a breaker box in a home or an office.
Enclosures
The enclosure is nothing but a metal box with different sizes depending upon the query and is typically made of aluminium or stainless steel. The number of getaways (usually one or two) needed on the enclosure determines its size in almost all industrial applications. 
As a manufacturer of electrical automation panels , a chamber generally comes with a UL safety rating (508A is typical), an IP rating, and a NEMA classification. These listings help users determine properties such as:
- Waterproof/water resistance
- Indoor/outdoor use
-Hazardous conditions rating
- Dust/solid contaminants proofing
- Explosion-proof rating
Note: The classifications mentioned above should be printed by all manufacturers of electrical panels on a metal plate and attached for easy identification and reference. 
Back Panels
A back panel is a sheet made of metal mounted in the enclosure that provides complete structural support for rail mounting and wiring ducts.  The metal rails feature standardized dimensions. It also provides a mounting structure for electrical devices. Wiring ducts provide routings and organization of wires while also assisting in controlling electrical noise between devices.                                           
Electrical automation panel and it’s component
There are a total of eight types of electrical components that exist in an electrical automation panel. It defines and organizes the several different functions carried out by the electric panel. These components include: 
Main circuit breaker: It is a disconnection of the main electrical panel. The main circuit breakers distributed by Shrinath Electric handle voltage between 120V–480V for most industrial applications.
Surge arresters: The component that prevents lightning strikes prevents utility power surges, damaging the electrical components inside the panel due to overvoltage.
Transformers: In a device, when there is an abundance of incoming voltage, the transformers may reduce voltage to 120V for different components, or it might step down voltage upto 24V in instances where incoming power is around 120V.
Terminal blocks: Terminal blocks help to organize and distribute the array of wires coming from various sources to different electrical devices.
Programmable Logic Controller (PLC): Basically, it is typically a CPU contained inside the control panel. PLC is nothing but the brains of the control panel, providing functions like monitoring and control of the mechanical processes. It includes various inputs and outputs to and from mechanized tasks of the production machinery.
Relays and contactors: These are nothing but on/off switches that controls mechanized functions based on commands from the PLC. More miniature relays control functions like lights, fans and larger relays, called contacts, control more advanced machines like motors.
Network switches:  This is the message hub of the control panel. Here the network switches facilitate communication between the PLC and the various compatible machines on the production line.
Human Machine Interface (HMI): HMI allows an operator to control certain functions of the machinery. Common HMIs incorporate joysticks, video monitors, switches, and keyboards.
The need of Electric Automation Panel
The design of a customized electric automation panel will depend upon the complexity of the machine it operates. For example, compositions can include a simple electrical relay operation or a more complicated PLC system with individual or multiple PLC networks with IIoT or SCADA integrations. Indicators that your organization will need is a custom panel design that should include a need for more advanced operation of various production operations, more cohesive, universal control of operations, and improved HMI.
Maintenance is another crucial consideration that you should consider if you are purchasing Electric Automation panels. Maintenance is a critical element in any electrical panel design. Maintenance elements should include: 
Properly labelled components, terminals and wiring.
Capacity to monitor the status and performance of the various electrical connections.
Control of dust and small particles within the enclosure
The perfect electric automation panel should contain the above mentioned components Absence of any element might not get the desired results. To help with that Shrinath Electric has been distributing and providing best in class panels.
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cognixiacom · 4 years ago
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How is marine IIoT helping reduce environmental risks for the ocean?
Around 90% of the global trade is carried out by sea, which has a great influence on the global supply chain, including the trade regulators. Over the years, the marine environment has garnered attention due to concerns around climate change. To keep things in check and reduce environmental risks, marine environment monitoring systems have been developed over the past few decades. These systems have been applied with features including advanced information and communication technologies.
In this marine environment monitoring, IIoT plays a major role. Let’s understand how marine IIoT is helping with environmental risks – Monitoring and Protection System
Over the years, many industries have been utilizing wireless sensor networks (WSNs) in their applications or services as a subset of IoT. However, these conventional monitoring systems are highly expensive. Their data collection and data analysis processes are time-consuming and the resolution quality of data consumed is low. This has encouraged marine environments to apply IoT-based technologies instead, for monitoring and protecting.
IoT-based marine environment systems are equipped with stronger capabilities of data collection & processing, intelligent object control, etc. With IoT-based technologies, several physical and chemical verticals can be measured and monitored. For example – water temperature, water pressure, speed & direction of the wind, pH levels, salinity, oxygen density, turbidity, and chlorophyll levels.
Advanced IoT-based systems can control some of the objects, devices, as well as equipment and help adjust these physical & chemical parameters, which further improves the marine environment.
To address the critical issues of the marine environment including autonomy, scalability, adaptability, and self-healing, the system should also be able to tackle the bigger problems – with features like sensor & actuator nodes with high water resistance, ability to provide stable radio signals, carefully calculated sensor coverage, etc. IoT-Based System Applications & Architecture
IIoT marine systems have various applications for monitoring ocean sensing, water quality, coral reef, marine fish farm, waves & current, etc. Each of the applications uses different architecture and technologies.
With IIoT, the marine industry can perceive, think, as well as control the impact of environmental risk, by collecting, processing, and analyzing the data. It helps them make better decisions.
The Industrial IoT-based marine environment monitoring & protection system includes five layers:
   Perception and execution:
   It is the bottom layer of the marine system architecture which includes GPS sensors, energy harvesting devices, water quality, and condition monitoring sensors.    Data transmission :
   This layer transmits the collected data to the processing layer and transfers control measures to the perception & execution layer so actuators can take necessary actions.    Data pre-processing:
   This layer stores and pre-processes raw data through advanced data mining technologies. It also performs data cleaning, data screening, and sharing, whenever needed.    Application:
   This layer provides users with the requested services, based on different applications. It also monitors water quality, coral reefs, fish farms, waves, and current.    Business:
   This is the top layer in the architecture and manages the overall IoT marine system’s activities. Based on the data collected, this layer creates business models, logic flowcharts, and graphic representations. Additionally, it verifies outputs of other layers and enhances security.
Marine Environment Protection
The ultimate goal of IoT-based marine systems is to monitor the ocean, reduce the risks, and protect the marine environment. Most of the applications in the system monitor and analyze huge data from the ocean and with IoT technologies. Big data principles are utilized and environment management control centers can make quick decisions & real-time manual interventions are orchestrated to protect the ocean or marine environment from big disasters.
Additionally, it’s because of IIoT-based systems that the marine also has an efficient energy management system. Ballast Management
With IIoT-based marine systems, the ballast can be optimized. With a reliable and efficient system, marine management can predict and prevent machine breakdowns as well as manage the repairs. The system provides signals from multiple sensors, along with the graphical UI (user interface) and internal database.
The design & development of a reliable, efficient, and scalable IIoT system for marine environment monitoring should carefully consider the following factors –
   Functions to tackle the harsh marine environment    Communication protocols    Network topology    Management of the number and distribution of nodes    Buoys & mooring systems    Oceanographic sensors    Energy supply, management & harvesting options, etc.
Cognixia Final Words
The Industrial IoT market has experienced vast growth over the years and is further expected to reach $263.4 billion by 2027. After 2020, the IIoT market is growing at a CAGR of 16.7%. APAC is considered the fastest-growing market for IIoT around the globe. This growth has resulted in an exponential demand for skilled IIoT professionals and this will continue to grow.
Industrial IoT is changing the way industries operate with the capabilities like drawing together critical assets as well as advanced predictive & prescriptive analytics. In this highly competitive world, upskilling yourself in IIoT can provide a major thrust in your career.
Enroll in Cognixia’s IIoT training course. We are the world’s leading digital talent transformation company and are committed to helping you shape your future with intuitive hands-on training & certifications in digital technologies. Get the best IIoT online training course experience that will not only stimulate your knowledge through immersive & interactive online training sessions but will also add great value to your skillset. Cognixia caters to both the individual learners as well as the corporate workforce via interactive instructor-led courses.
This IIoT online training will cover all the important concepts of industrial automation including both PLC and SCADA. It will further discuss wireless sensor area networks (WSAN), sensor data mining, smart factories, industrial cloud platforms, along with shedding light on Industrial IoT security. With this IIoT certification course, you will also acquire hands-on, field experience with practical assignments & labs, to ensure a thorough understanding of all concepts discussed during the course.
In this IIoT training, we will cover the following –
   Introduction to Industrial Internet of Things    Industrial automation – PLC & SCADA    Sensor data mining and analytics    Wireless Sensor Area Networks (WSAN)    Design & development of IIoT systems    Industry 4.0 – Smart Factories    Industrial cloud platforms    Industrial IoT Security
Prerequisites Anyone with basic computer skills is eligible to take this Industrial IoT training & certification course.
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myeducar · 5 years ago
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Siemens is hiring for Lead Engineer -Hardware Engineering (COMOS) role in Kharghar, Navi Mumbai, Maharashtra (Job ID: 209366)
We at Siemens, A collection of over 379,000 minds building the future, one day at a time in over 200 countries. We're dedicated to equality, and we welcome applications that reflect the diversity of the communities we work in. All employment decisions at Siemens are based on qualifications, merit and business need. Bring your curiosity and creativity and help us shape tomorrow.
Job title: Lead Engineer Hardware Engineering (COMOS)
Job location: Kharghar, Navi Mumbai
Organization: Digital Industries
Experience Level: Experienced Professional
Job Type: Full-time
Objective of the position:
Ensuring the highest standards in COMOS HW engineering, supporting the solution business of Siemens Ltd. worldwide.
Change the future with us!
Summary
Supporting international projects in the regions and on site in a self-reliant style. Hardware engineering using SIEMENS engineering tool COMOS.
Advanced to expert level HW design experience and knowledge for process automation plants with the focus on hardware calculations, BOM preparation, Cabinet design. Verification of customers basic design and development of automation solutions for projects in parallel. Interface to the Team lead/project manager partner regions for technical topics.
Based on the deep experience and HW design knowledge of process automation branches. Designing and implementing Siemens and 3rd party hardware drawings for the automation projects being executed. COMOS tool is used for the engineering of HW cabinet design which enables Siemens HW design as in the real plant as per hardware design specification of respective projects. Discussion and verification of the HW design concepts with the partners, customers and leaders in international teams. Ability to derive the easiest solution fitting to the requirements using the most sophisticated tools for the implementation (Comos, others). Preparation of sharp quotations with a risk & chances assessment.
We have a lot to offer, how about you?
The candidate should have more than 5 years’ experience as project engineer. Technical leading of project teams. Guiding of project engineers, great teammate, shares knowledge and encouraging style of working.
Hardware Design, engineering, preparation of Automation Cabinet Engineering drawings using any engineering tool for process automation projects.
Siemens Automation System Hardware & Software Knowledge including communication and field devices i.e. PCS7 AS, S7-400, ET200M, ET200SPHA, ET200SP, ET200S, ET200iSP IO Series Hardware.
Tools and Skills
Process Knowledge: Branches pharmaceuticals, chemicals, food & beverage, water/wastewater and/or glass. (process industries)
HW Design tool: Good experience in COMOS/AutoCAD/EPLAN
HW Design functions: HW estimation, Heat load calculations, design calculations
DCS Systems: Basic knowledge of PCS7 engineering, testing and commissioning expertise
Scada Systems: Simatic S7, TIA & WinCC engineering, testing and commissioning expertise
Engineering tools: COMOS Software engineering, PCS7 Plant Automation Accelerator, SIDEC, COMOS Cabinet Configurator
Others: Testing and commissioning expertise
Soft skills: Business processes (general), Compliance/Rules & Regulations, Business ownership, Leadership, Management, Project coordination, Negotiations.
Responsibilities:
-Execution of HW engineering project in process automation field.
-Cabinet Engineering drawings preparation using Siemens engineering tool – COMOS
-Preparation of detailed IO list, heat load calculation, cabinet FVFP, General arrangement drawing, Wiring drawings, Single line diagram, BOM, Network Drawings
-Preparation of System Architecture
-Selection of IO Modules, Field Termination Assemblies and Barriers as per requirement.
-Proposals based on customer inputs, IO list,Coordinating with International client regarding project status and delivery.
-Technical specification, Inspection, Testing, FAT, Site support, as built and as commissioned drawings of assigned projects on time
-Good experience of cabinet design in field of process automation projects.
-System Design & P&ID (Piping & Instrumentation Diagram) drawing creation using COMOS software
-Design of loop drawings, Wiring Diagram, Loop Schematic Drawing Using LOOPGEN Software, Bill of Materials, Preparation DCS Cabinet Layouts, General Arrangement and
-Internal Arrangement for following cabinets
-Preparation of System Architecture
-Selection of IO Modules, Field Termination Assemblies and Barriers as per requirement.
-Cross Marshalling
-Proposals based on customer inputs, IO list
-Coordinating with International client regarding COMOS Development
Find out more about department at: Siemens Department
To apply for the role please visit: Siemens Application
Thanks!
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techsciresearch · 6 years ago
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Global Pipeline Integrity Management Market is projected to cross USD 10.4 billion by 2023 | TechSci Research
Growing demand for oil & gas, anticipated revival of crude oil prices and rising number of pipeline accidents to drive global pipeline integrity management market through 2023
According to recently published TechSci Research report “Global Pipeline Integrity Management Market By Technology, By Application, By Region, Competition Forecast & Opportunities, 2013-2023’’, the global pipeline integrity management market is projected to cross $ 10.4 billion by 2023 on account of rising demand for oil & gas as exploration & production companies are focusing on ultradeep water to cater the growing demand. Moreover, expanding pipeline infrastructure, innovations in the pipeline integrity management services, rising crude oil prices and increasing incidents of pipeline leakages are further anticipated to augment demand for pipeline integrity management services across the globe in the coming years.
Browse 166 market data Figures spread through 176 Pages and an in-depth TOC on “Global Pipeline Integrity Management Market “
https://www.techsciresearch.com/report/global-pipeline-integrity-management-market/1589.html
On the basis of technology, the global pipeline integrity management market is segmented into pigging, cathodic protection and others, of which pigging technology accounted for the largest value share in the market in 2017. The segment is likely to maintain its dominance throughout the forecast period as well, on account of increase in the maintenance operations of pipelines and increasing production & consumption of crude oil & natural gas across the globe. Some of the major companies operating in the global pipeline integrity management market include Emerson Electric Co., Baker Hughes, Yokogawa Electric Corporation, Fluor Corporation, etc.
Download Sample Report @ https://www.techsciresearch.com/sample-report.aspx?cid=1589
Customers can also request for 10% free customization on this report.
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“Increasing number of mergers and joint ventures coupled with expansion of city gas distribution networks across various countries is boosting demand for pipeline integrity management services, globally. Moreover, technological developments in the field of SCADA, DCS and Data security & integrity is proving out to be hugely beneficial for operators involved in pipeline integrity management. Additionally, increasing demand from downstream applications and stiff competition and increasingly stringent regulatory compliance is expected to further steer growth in the global pipeline integrity management market over the next five years.” said Mr. Karan Chechi, Research Director with TechSci Research, a research based global management consulting firm.
“Global Pipeline Integrity Management Market By Technology, By Application, By Region, Competition Forecast & Opportunities, 2013-2023” has evaluated the future growth potential of global pipeline integrity management market and provides statistics and information on market size, structure and future market growth. The report intends to provide cutting-edge market intelligence and help decision makers take sound investment decisions. Besides, the report also identifies and analyzes the emerging trends along with essential drivers, challenges and opportunities in global pipeline integrity management market.
About TechSci Research
TechSci Research is a leading global market research firm publishing premium market research reports. Serving 700 global clients with more than 600 premium market research studies, TechSci Research is serving clients across 11 different industrial verticals. TechSci Research specializes in research based consulting assignments in high growth and emerging markets, leading technologies and niche applications. Our workforce of more than 100 fulltime Analysts and Consultants employing innovative research solutions and tracking global and country specific high growth markets helps TechSci clients to lead rather than follow market trends.
Contact
Mr. Ken Mathews
708 Third Avenue,
Manhattan, NY,
New York – 10017
Tel: +1-646-360-1656
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scottsmithus · 5 years ago
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Maritime Cybersecurity Ot Engineer
MARITIME CYBERSECURITY OT ENGINEER Responsible for helping execute the Maritime Cybersecurity strategy and program initiatives Serve as a subject matter expert to peers and leaders across our lines of business regarding maritime cyber risks. The role will be an individual contributor providing cyber risk mgmt. and assurance expertise so that systems located within or connected to our environments consisting of OT navigationbridge, marine engineering (ICS, SCADA), and IT hotel operations systems, have been implemented and maintained, adhering to maritime cybersecurity guidelines and corporate information security standards. Also help influence IT and maritime business units to raise awareness of the maritime cybersecurity program and their role in ensuring the safety of our ITOT systems. Required skillscompetencies Contributor to the protection of shipboard OT systems and processes to appropriately reduce existing and emerging risks to our maritime assets. Leverage information security activities and technologies to raise cyber situational awareness and protection. Ensure that maritime cybersecurity technology intended to protect shipboard systems and information is configured and operating per established standards. Review and understand technical standards, architecturalengineering diagrams, and procedures for shipboard and newbuild I.T. and marine operations units regarding how to securely configure and implement I.T. and OT technology. Work on assigned remediation tasks to ensure that shipboard OT vulnerabilities and defects are mitigated in a timely manner to reduce risk to systems and information. Where potential system weaknesses are identified, partner with other team members within Information Security, I.T. and business units to implement compensating controls. Review, interpret and explain complex maritime cyber guidelines and future regulations such as BIMCO Cybersecurity Guidelines for Ships, U.S. Coast Guard security requirements, and International Maritime Organization (IMO) to peers, IT management, IT staff, and non-technical team members as required to drive improve understanding, awareness, and adoption. Help maintain positive relationships with engineering and operational staff within I.T, Marine Operations, Newbuild, Global Security and relevant business units and third-party marine and IT shipboard suppliers to assess their cyber assurance program and ensure that there is an effective understanding of responsibilities within their areas. Contribute with a high degree of self-sufficiency and resourcefulness individual and departmental performance objectives. High degree of motivation to maintain technical skills and cybersecurity knowledge relevant by seeking self-development opportunities such as industry certifications, investing time to learn new skills, and networking with peers in the security industry. Preferred Skills Competent knowledge and experience with Marine or Industrial Engineering OT systems (ICS, Engine Control, HVAC, Water Treatment, Power Generation Management) or Navigation Systems (ECDIS, GPS, Dynamic Positioning Systems, Voyage Management Systems). Must have understanding of Apple, Linux and Windows Operating systems. Must have understanding of TCPIP networks and the OSI stack. Knowledge of I.T. systems (applications, networks etc), information security products (i.e firewalls, IPS, SIEM, proxy) or application securityvulnerability testing toolstechniques. Knowledge and experience with performing andor leading cybersecurity or assurance assessments of OT systems. Ability to identify and recommend prioritized remediation activities based on risk to the overall shipboard enterprise Understanding of cybersecurity controls related to a number of cybersecurity frameworksguidelines such as NIST Cybersecurity Framework or BIMCOCLIAICSINTERCARGO Cybersecurity Guidelines An understanding of OTICSSCADA cyber system anomaly detection methodologies and tool Bachelors degree or equivalent industry experience. 3-7 years of experience within Operational Technology (OT), Industrial Control Systems (ICS), or SCADA type systems. Travel may be required to travel domestically and internationally for periods of no more than 14 days per trip to support installations of work related to project tasks within the maritime cybersecurity portfolio.
source https://www.jobsinmiramar.com/other-general/maritime-cybersecurity-ot-engineer-f2b32be/ source https://jobsinmiramar.tumblr.com/post/621875680956891136
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jobsinmiramar · 5 years ago
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Maritime Cybersecurity Ot Engineer
MARITIME CYBERSECURITY OT ENGINEER Responsible for helping execute the Maritime Cybersecurity strategy and program initiatives Serve as a subject matter expert to peers and leaders across our lines of business regarding maritime cyber risks. The role will be an individual contributor providing cyber risk mgmt. and assurance expertise so that systems located within or connected to our environments consisting of OT navigationbridge, marine engineering (ICS, SCADA), and IT hotel operations systems, have been implemented and maintained, adhering to maritime cybersecurity guidelines and corporate information security standards. Also help influence IT and maritime business units to raise awareness of the maritime cybersecurity program and their role in ensuring the safety of our ITOT systems. Required skillscompetencies Contributor to the protection of shipboard OT systems and processes to appropriately reduce existing and emerging risks to our maritime assets. Leverage information security activities and technologies to raise cyber situational awareness and protection. Ensure that maritime cybersecurity technology intended to protect shipboard systems and information is configured and operating per established standards. Review and understand technical standards, architecturalengineering diagrams, and procedures for shipboard and newbuild I.T. and marine operations units regarding how to securely configure and implement I.T. and OT technology. Work on assigned remediation tasks to ensure that shipboard OT vulnerabilities and defects are mitigated in a timely manner to reduce risk to systems and information. Where potential system weaknesses are identified, partner with other team members within Information Security, I.T. and business units to implement compensating controls. Review, interpret and explain complex maritime cyber guidelines and future regulations such as BIMCO Cybersecurity Guidelines for Ships, U.S. Coast Guard security requirements, and International Maritime Organization (IMO) to peers, IT management, IT staff, and non-technical team members as required to drive improve understanding, awareness, and adoption. Help maintain positive relationships with engineering and operational staff within I.T, Marine Operations, Newbuild, Global Security and relevant business units and third-party marine and IT shipboard suppliers to assess their cyber assurance program and ensure that there is an effective understanding of responsibilities within their areas. Contribute with a high degree of self-sufficiency and resourcefulness individual and departmental performance objectives. High degree of motivation to maintain technical skills and cybersecurity knowledge relevant by seeking self-development opportunities such as industry certifications, investing time to learn new skills, and networking with peers in the security industry. Preferred Skills Competent knowledge and experience with Marine or Industrial Engineering OT systems (ICS, Engine Control, HVAC, Water Treatment, Power Generation Management) or Navigation Systems (ECDIS, GPS, Dynamic Positioning Systems, Voyage Management Systems). Must have understanding of Apple, Linux and Windows Operating systems. Must have understanding of TCPIP networks and the OSI stack. Knowledge of I.T. systems (applications, networks etc), information security products (i.e firewalls, IPS, SIEM, proxy) or application securityvulnerability testing toolstechniques. Knowledge and experience with performing andor leading cybersecurity or assurance assessments of OT systems. Ability to identify and recommend prioritized remediation activities based on risk to the overall shipboard enterprise Understanding of cybersecurity controls related to a number of cybersecurity frameworksguidelines such as NIST Cybersecurity Framework or BIMCOCLIAICSINTERCARGO Cybersecurity Guidelines An understanding of OTICSSCADA cyber system anomaly detection methodologies and tool Bachelors degree or equivalent industry experience. 3-7 years of experience within Operational Technology (OT), Industrial Control Systems (ICS), or SCADA type systems. Travel may be required to travel domestically and internationally for periods of no more than 14 days per trip to support installations of work related to project tasks within the maritime cybersecurity portfolio.
source https://www.jobsinmiramar.com/other-general/maritime-cybersecurity-ot-engineer-f2b32be/
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inhandnetworks-blog · 6 years ago
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New Artificial Intelligence Device Identifies Objects at the Speed of L industrial iot connectivityight
www.inhandnetworks.com
The network, compose IoT Remote Monitoring  d of a series of polymer layers, works using light that travels through it. Each layer is 8 centimeters square. Ozcan Research Group/UCLA
A team of UCLA electrical and computer engineers has created a physical artificial neural network — a device modeled on how the human brain works — that can analyze large volumes of data and identify objects at the actual speed of light. The device was created using a 3D printer at the UCLA Samueli School of Engineering.
Numerous devices in everyday life today use computerized cameras to identify objects — think of automated teller machines that can “read” handwritten dollar amounts when you deposit a check, or internet search engines that can quickly match photos to other similar images in their databases. But those systems rely on a piece of equipment to image the object, first by “seeing” it with a camera or optical sensor, then processing what it sees into data, and finally using computing programs to figure out what it is.
Schematic of the optical neural network: The digit “5” is sent as a light signal through the layers comprised of artificial neurons. That light bounces around as it travels through the layers, but when it exits, the brightest signal is picked up by the detector looking only for a “5.” Ozcan Research Group/UCLA
The UCLA-developed device gets a head start. Called a “diffractive deep neural network,” it uses the light bouncing from the object itself to identify that object in as little time as it would take for a computer to simply “see” the object. The UCLA device does not need advanced computing programs to process an image of Transformer Monitoring   the object and decide what the object is after its optical sensors pick it up. And no energy is consumed to run the device because it only uses diffraction of light.
New technologies based on the device could be used to speed up data-intensive tasks that involve sorting and identifying objects. For example, a driverless car using the technology could react instantaneously — even faster than it does using current technology — to a stop sign. With a device based on the UCLA system, the car would “read” the sign as soon as the light from the sign hits it, as opposed to having to “wait” for the car’s camera to image the object and then use its computers to figure out what the object is.
Technology based on the invention could also be used in microscopic imaging and medicine, for example, to sort through millions of cells for signs of disease.
The study was published online in Science on July 26.
“This work opens up fundamentally new opportunities to use an artificial intelligence-based passive device to instantaneously analyze data, images and classify objects,” said Aydogan Ozcan, the study’s principal investigator and the UCLA Chancellor’s Professor of Electrical and Computer Engineering. “This optical artificial neural network device is intuitively modeled on how the brain processes information. It could be scaled up to enable new camera designs and unique optical components that work passively in medical technologies, robotics, security or any application where image and video data are essential.”
The process of creating the artificial neural network began with a computer-simulated design. Then, the researchers used a 3D printer to create very thin, 8 centimeter-square polymer wafers. Each wafer has uneven surfaces, which help diffract light coming from the object in different directions. The layers look opaque to the eye but submillimeter-wavelength terahertz frequencies of light used in the experiments can travel through them. And each layer is composed of tens of thousands of artificial neurons — in this case, tiny pixels that the light travels through.
Together, a series of pixelated layers functions as an “optical network” that shapes how incoming light from the object trave smart vending  ls through them. The network identifies an object because the light coming from the object is mostly diffracted toward a single pixel that is assigned to that type of object.
The researchers then trained the network using a computer to identify the objects in front of it by learning the pattern of diffracted light each object produces as the light from that object passes through the device. The “training” used a branch of artificial intelligence called deep learning, in which machines “learn” through repetition and over time as patterns emerge.
“This is intuitively like a very complex maze of glass and mirrors,” Ozcan said. “The light enters a diffractive network and bounces around the maze until it exits. The system determines what the object is by where most of the light ends up exiting.”
In their experiments, the researchers demonstrated that the device could accurately identify handwritten numbers and items of clothing — both of which are commonly used tests in artificial intelligence studies. To do that, they placed images in front of a terahertz light source and let the device “see” those images through optical diffraction.
They also trained the device to act as a lens that projects the image of an object placed in front of the optical network to the other side of it — much like how a typical camera lens works, but using artificial intelligence instead of physics.
Because its components can be created by a 3D printer, the artificial neural network can be made with larger and additional layers, resulting in a device with hundreds of millions of artificial neurons. Those bigger devices could identify many more objects at the same time or perform more complex data analysis. And the components can be made inexpensively — the device created by the UCLA team could be reproduced for less than $50.
While the study used light in the terahertz frequencies, Ozcan said it would also be possible to create neural networks that use visible, infrared or other frequencies of light. A network could also be made using lithography or other printing techniques, he said.
The study’s others authors, all from UCLA Samueli, are postdoctoral scholars Xing Lin, Yair Rivenson, and Nezih Yardimci; graduate students Muhammed Veli and Yi Luo; and Mona Jarrahi, UCLA professor of electrical and computer engineering.
The research was supported by the National Science Foundation and the Howard Hughes Medical Institute. Ozcan also has UCLA faculty appointments in bioengineering and in surgery at the David Geffen School of Medicine at UCLA. He is the associate director of the UCLA California NanoSystems Institute and an HHMI professor.
Publication: Xing Lin, et al., “All-optical machine learning using diffractive deep neural networks,” Science 26 Jul 2018: eaat8084; DOI: 10.1126/science.aat8084
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sielcosistemi · 7 years ago
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cnonlinehelp-blog · 7 years ago
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