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L.A. Kumar - Optimal Power Flow Using FACTS Devices Optimal Power Flow Using FACTS Devices Soft Computing Techniques By L. Ashok Kumar, K. Mohana Sundaram ISBN 9780367565725 Published December 4, 2020 by CRC Press 238 Pages 130 B/W Illustrations ![]() Book Description Optimal Power Flow Using FACTS Devices: Soft Computing Techniques develops intelligent algorithms to analyze optimal power flow (OPF) and to enhance the power transfer capability of the transmission line with reduced congestion. By providing elaborate studies on FACTS devices and by using soft computing metaheuristics algorithms such as Firefly, Cuckoo, Flower Pollination, and others., this book enables readers to know about algorithms in real-time power system applications and damping of subsynchronous resonance (SSR) oscillations. Key features of this book include: Offers comprehensive review of FACTS devices and the importance of soft computing techniques for solving OPF. Describes the various problems associated with power system operation and control. Addresses issues of SSR in power systems and proposes soft techniques for SSR analysis in power systems. Demonstrates of the importance of SSR and congestion management using intelligent FACTS devices as part of OPF. Covers power systems’ reliability, quality, cost-effectiveness, effects on customer goodwill, and pollution limits, including the deregulation of markets and different intelligent controllers. Optimal Power Flow Using FACTS Devices: Soft Computing Techniques is aimed at researchers and professionals in the field of power systems. Table of Contents 1. Introduction. 2. Major Issues and Constraints in Power Systems Using Traditional Methods 3. Particle Swarm Optimization Based Optimal Power Flow 4. Cuckoo Search Algorithm Based OPF 5. Firefly Algorithm Based OPF 6. Flower Pollination Algorithm Based OPF 7. Real-Coded Genetic Algorithm Differential Evolution (RGA-DE) Based OPF 8. Hibrid FPA-DE-Based OPF 9. SSSC and TCSC with Fuzzy Logic Controller for Damping SSR Oscillations 10. Fuzzy Logic Controlled TCSC and SSSC in Wind Power Integrated IEEE SBM System 11. Adaptive Neuro-Fuzzy Inference Strategy Controlled TCSC Index Author Dr. L. Ashok Kumar was a Postdoctoral Research Fellow from San Diego State University, California. He is a recipient of the BHAVAN fellowship from the Indo-US Science and Technology Forum and SYST Fellowship from DST, Govt. of India. His current research focuses on integration of Renewable Energy Systems In the Smart Grid and Wearable Electronics. He has 3 years of industrial experience and 19 years of academic and research experience. He has published 167 technical papers in International and National journals and presented 157 papers in National and International Conferences. He has completed 26 Government of India funded projects, and currently 7 projects are in progress. His PhD work on wearable electronics earned him a National Award from ISTE, and he has received 24 awards on the National level. Ashok Kumar has seven patents to his credit. He has guided 92 graduate and postgraduate projects. He is a member and in prestigious positions in various national forums.
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