
Static Compensators (STATCOMs) in Power Systems
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Dr. Farhad Shahnia received his Ph.D. in Electrical Engineering from Queensland University of Technology, Brisbane, Australia. He is currently a Lecturer in Curtin University, Perth, Australia. His professional experience includes three years at Research Office-Eastern Azerbaijan Electric Power Distribution Company, Tabriz, Iran. Prior to joining Curtin University, he was a research fellow in Queensland University of Technology, Brisbane, Australia. He has published 5 book chapters, 8 journal papers and 55 conference papers.
Dr. Sumedha Rajakaruna received his Ph.D. in Electrical Engineering from the University of Toronto, Ontario, Canada. He was a Lecturer at University of Moratuwa, Sri Lanka until 2000 and then an Assistant Professor at Nanyang Technological University, Singapore until 2007. Since 2007, he is at Curtin University, Perth, Australia. He is the founding Director and Lead Designer of Green Electric Energy Park at Curtin University, a state of the art renewable energy laboratory built at the cost of over $1.2 million in 2012. He is the supervisor of more than 10 PhD graduates and has published 2 book chapters and over 40 research articles.
Dr. Arindam Ghosh received his Ph.D. in Electrical Engineering from University of Calgary, Canada in 1983. Currently, he is a Professor of Power Engineering at Curtin University, Perth, Australia. Prior to joining the Curtin in 2013, he was with Queensland University of Technology, Brisbane, Australia from 2006 to 2012 and with the Department of Electrical Engineering at IIT Kanpur, India, for 21 years. He is a fellow of INAE and IEEE. He has published 1 book, 6 book chapters and more than 350 papers in international conferences and journals.
Content
Converter and Output Filter Topologies for STATCOMs.- Multilevel Converter Topologies for STATCOMs.- Analysis and Implementation of an 84-pulse STATCOM.- Mathematical Modeling and Control Algorithms of STATCOMs.- STATCOM Control Strategies.- Robust Nonlinear Control of STATCOMs.- Versatile Control of STATCOMs using Multiple Reference Frames.- Control of Multilevel STATCOMs.- Adaptive Observer for Capacitor Voltages in Multilevel STATCOMs.- Modeling and Control of STATCOMs.- Study of STATCOM in abc Framework.- Modeling of STATCOM in Load Flow Formulation.