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The book characterizes and evaluates how the emerging growth of data in communications networks applied to smart grids will impact the grid efficiency and reliability.
Additionally, this book discusses the various security concerns that become manifest with Big Data and expanded communications in power grids. Provide a general description and definition of big data, which has been gaining significant attention in the research community. Introduces a comprehensive overview of big data optimization methods in power system.
Reviews the communication devices used in critical infrastructure, especially power systems; security methods available to vet the identity of devices; and general security threats in CI networks. Presents applications in power systems, such as power flow and protection.
Reviews electricity theft concerns and the wide variety of data-driven techniques and applications developed for electricity theft detection. Table of Contents Introduction. Security Methods for Critical Infrastructure Communications.
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Hons , M. We need a holistic approach to managing electrical power. Though facility managers are well aware that building management systems BMS typically include automation capabilities, many may be less aware of the recent advances in power distribution system technology.
By embracing the latest advances in digitization, businesses can take advantage of: Power networks with embedded intelligence that enable greater levels of understanding and control Integrated and scalable energy assets and systems that allow facility and service teams to quickly reveal and respond to risks and opportunities New analytic applications that provide tools to accelerate and simplify decision-making Chapter 1: Digitize to Gain Deeper Insight The first step toward an intelligent power distribution system is digitization.
Digitization with smart devices helps new or legacy facilities go beyond energy initiatives to optimize power reliability and maintenance.
An infrastructure of devices for sensing, controlling, and communicating equipment and facility-use data is redefining the capabilities of intelligent building software. Actionable insights, meaningful opportunities — these ideas are the crux of value in digitization.
Advances in computational power, accuracy, integration, and communication have enabled a new era of IoT. A new breed of smart devices has emerged, including advanced energy and power quality meters, protection relays, and circuit breakers.
Smart devices have become more than actuators. These advances give you a higher level of detail, allowing you to: Optimize for efficiency and savings Energy waste can be pinpointed, whether due to equipment malfunctions, occupant behavior, or the need to optimize HVAC setpoints.
Address risks before they cause downtime or damage Devices with features like integrated control capabilities, real-time and logged data, and alarm notifications help teams take action remotely. Adapt and expand intelligence as your business grows Meters, circuit breakers, and distribution systems are compact, compatible, and customizable, making it easy to increase intelligence as your operations grow.
Enable distributed, digitized devices to connect The latest communication technologies allow smart devices to connect together to deliver the full promise of the IoT.
Chapter 2: Connect to Real-time Vision and Control Connectivity gives operations and maintenance teams remote control and real-time access to data. Smart devices are at the center of the new trend in preconfigured smart panels.
The newest devices offer a number of communication options, from parallel communication links for added resilience in critical applications, to onboard web servers that make recorded data accessible from web browsers. The two biggest benefits of seamlessly connected smart devices are asset control and supervision and data insights.
Benefit 1: Energy assets are supervised.
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The flexibility and extensibility of connected networks allow important energy assets to be supervised, including emerging distributed energy resources DER. Electric vehicle charging stations can be metered, with their rates altered for periods of lower use.
Benefit 2: Data becomes actionable insights.
Power infrastructure data can be collected and transformed into insights that help enable collaboration and, ultimately, optimize energy production and consumption. Smartphone-ready digital logbooks track equipment and maintenance activity.
Power system data is transformed into actionable insights. Information and insights are shared with facility personnel and service partners.But increased connectivity also requires additional security.
The book characterizes and evaluates how the emerging growth of data in communications networks applied to smart grids will impact the grid efficiency and reliability. Provide a general description and definition of big data, which has been gaining significant attention in the research community.
Smartphone-ready digital logbooks track equipment and maintenance activity. His research is supported by National Science Foundation and other government organizations.