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Cyber Physical Systems Approach to Smart Electric Power Grid (Paperback, Softcover reprint of the original 1st ed. 2015):... Cyber Physical Systems Approach to Smart Electric Power Grid (Paperback, Softcover reprint of the original 1st ed. 2015)
Siddhartha Kumar Khaitan, James D McCalley, Chen-Ching Liu
R4,140 Discovery Miles 41 400 Ships in 10 - 15 working days

This book documents recent advances in the field of modeling, simulation, control, security and reliability of Cyber- Physical Systems (CPS) in power grids. The aim of this book is to help the reader gain insights into working of CPSs and understand their potential in transforming the power grids of tomorrow. This book will be useful for all those who are interested in design of cyber-physical systems, be they students or researchers in power systems, CPS modeling software developers, technical marketing professionals and business policy-makers.

Soft Computing in Green and Renewable Energy Systems (Paperback, Softcover reprint of the original 1st ed. 2011):... Soft Computing in Green and Renewable Energy Systems (Paperback, Softcover reprint of the original 1st ed. 2011)
Kasthurirangan Gopalakrishnan, Siddhartha Kumar Khaitan, Soteris Kalogirou
R4,529 Discovery Miles 45 290 Ships in 10 - 15 working days

Soft Computing in Green and Renewable Energy Systems provides a practical introduction to the application of soft computing techniques and hybrid intelligent systems for designing, modeling, characterizing, optimizing, forecasting, and performance prediction of green and renewable energy systems. Research is proceeding at jet speed on renewable energy (energy derived from natural resources such as sunlight, wind, tides, rain, geothermal heat, biomass, hydrogen, etc.) as policy makers, researchers, economists, and world agencies have joined forces in finding alternative sustainable energy solutions to current critical environmental, economic, and social issues. The innovative models, environmentally benign processes, data analytics, etc. employed in renewable energy systems are computationally-intensive, non-linear and complex as well as involve a high degree of uncertainty. Soft computing technologies, such as fuzzy sets and systems, neural science and systems, evolutionary algorithms and genetic programming, and machine learning, are ideal in handling the noise, imprecision, and uncertainty in the data, and yet achieve robust, low-cost solutions. As a result, intelligent and soft computing paradigms are finding increasing applications in the study of renewable energy systems. Researchers, practitioners, undergraduate and graduate students engaged in the study of renewable energy systems will find this book very useful.

Cyber Physical Systems Approach to Smart Electric Power Grid (Hardcover, 2015 ed.): Siddhartha Kumar Khaitan, James D McCalley,... Cyber Physical Systems Approach to Smart Electric Power Grid (Hardcover, 2015 ed.)
Siddhartha Kumar Khaitan, James D McCalley, Chen-Ching Liu
R4,392 Discovery Miles 43 920 Ships in 10 - 15 working days

This book documents recent advances in the field of modeling, simulation, control, security and reliability of Cyber- Physical Systems (CPS) in power grids. The aim of this book is to help the reader gain insights into working of CPSs and understand their potential in transforming the power grids of tomorrow. This book will be useful for all those who are interested in design of cyber-physical systems, be they students or researchers in power systems, CPS modeling software developers, technical marketing professionals and business policy-makers.

High Performance Computing in Power and Energy Systems (Paperback, 2013 ed.): Siddhartha Kumar Khaitan, Anshul Gupta High Performance Computing in Power and Energy Systems (Paperback, 2013 ed.)
Siddhartha Kumar Khaitan, Anshul Gupta
R5,655 Discovery Miles 56 550 Ships in 10 - 15 working days

The twin challenge of meeting global energy demands in the face of growing economies and populations and restricting greenhouse gas emissions is one of the most daunting ones that humanity has ever faced. Smart electrical generation and distribution infrastructure will play a crucial role in meeting these challenges. We would need to develop capabilities to handle large volumes of data generated by the power system components like PMUs, DFRs and other data acquisition devices as well as by the capacity to process these data at high resolution via multi-scale and multi-period simulations, cascading and security analysis, interaction between hybrid systems (electric, transport, gas, oil, coal, etc.) and so on, to get meaningful information in real time to ensure a secure, reliable and stable power system grid. Advanced research on development and implementation of market-ready leading-edge high-speed enabling technologies and algorithms for solving real-time, dynamic, resource-critical problems will be required for dynamic security analysis targeted towards successful implementation of Smart Grid initiatives. This books aims to bring together some of the latest research developments as well as thoughts on the future research directions of the high performance computing applications in electric power systems planning, operations, security, markets, and grid integration of alternate sources of energy, etc.

Soft Computing in Green and Renewable Energy Systems (Hardcover, 2011 ed.): Kasthurirangan Gopalakrishnan, Siddhartha Kumar... Soft Computing in Green and Renewable Energy Systems (Hardcover, 2011 ed.)
Kasthurirangan Gopalakrishnan, Siddhartha Kumar Khaitan, Soteris Kalogirou
R4,538 Discovery Miles 45 380 Ships in 10 - 15 working days

Soft Computing in Green and Renewable Energy Systems provides a practical introduction to the application of soft computing techniques and hybrid intelligent systems for designing, modeling, characterizing, optimizing, forecasting, and performance prediction of green and renewable energy systems. Research is proceeding at jet speed on renewable energy (energy derived from natural resources such as sunlight, wind, tides, rain, geothermal heat, biomass, hydrogen, etc.) as policy makers, researchers, economists, and world agencies have joined forces in finding alternative sustainable energy solutions to current critical environmental, economic, and social issues. The innovative models, environmentally benign processes, data analytics, etc. employed in renewable energy systems are computationally-intensive, non-linear and complex as well as involve a high degree of uncertainty. Soft computing technologies, such as fuzzy sets and systems, neural science and systems, evolutionary algorithms and genetic programming, and machine learning, are ideal in handling the noise, imprecision, and uncertainty in the data, and yet achieve robust, low-cost solutions. As a result, intelligent and soft computing paradigms are finding increasing applications in the study of renewable energy systems. Researchers, practitioners, undergraduate and graduate students engaged in the study of renewable energy systems will find this book very useful.

High Performance Computing in Power and Energy Systems (Hardcover, 2012 ed.): Siddhartha Kumar Khaitan, Anshul Gupta High Performance Computing in Power and Energy Systems (Hardcover, 2012 ed.)
Siddhartha Kumar Khaitan, Anshul Gupta
R4,804 Discovery Miles 48 040 Ships in 10 - 15 working days

The twin challenge of meeting global energy demands in the face of growing economies and populations and restricting greenhouse gas emissions is one of the most daunting ones that humanity has ever faced. Smart electrical generation and distribution infrastructure will play a crucial role in meeting these challenges. We would need to develop capabilities to handle large volumes of data generated by the power system components like PMUs, DFRs and other data acquisition devices as well as by the capacity to process these data at high resolution via multi-scale and multi-period simulations, cascading and security analysis, interaction between hybrid systems (electric, transport, gas, oil, coal, etc.) and so on, to get meaningful information in real time to ensure a secure, reliable and stable power system grid. Advanced research on development and implementation of market-ready leading-edge high-speed enabling technologies and algorithms for solving real-time, dynamic, resource-critical problems will be required for dynamic security analysis targeted towards successful implementation of Smart Grid initiatives. This books aims to bring together some of the latest research developments as well as thoughts on the future research directions of the high performance computing applications in electric power systems planning, operations, security, markets, and grid integration of alternate sources of energy, etc.

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