HVDC grids and super grids have sparked so much interest these days that researchers and engineers across the globe are talking about them, studying them, supporting them, or questioning them. This book provides valuable information for researchers, industry, and policy makers. It explains why HVDC is favorable over AC technologies for power transmission; what the key technologies and challenges are for developing an HVDC grid; how an HVDC grid will be designed and operated; and how future HVDC grids will evolve. The book also devotes significant attention to nontechnical aspects such as the influence of energy policy and regulatory frameworks. This book is a result of collaboration between industry and academia. It provides theoretical insights into the design and control of MMC technology and investigates practical aspects of the project planning, design, manufacture, implementation, and commissioning of MMC-HVDC and multi-terminal HVDC transmission technologies; filling the knowledge gap between the technology specialists and VSC-HVDC project developers and key personnel involved in those projects.
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Chan-Ki Kim obtained his M.Sc. and Ph.D. degrees in Electrical Engineering from Chung-Ang University, Korea in 1993 and 1996, respectively. Since 1996, he has been with KEPRI, the R&D center of KEPCO (Korea Electric Power Corporation). His research interests are HVDC and Power Electronics; he developed the HVDC simulator, HVDC commissioning technology and HVDC control algorithms. Related to these developments, until now he has published over 76 technical papers in widely read journals, including KIEE and IEEE, and submitted 58 patents and programs and has published HVDC book, HVDC Transmission ― Power Conversion Application in Power System ― Published by Wiley & IEEE Press, 2009. He received the Technical Award from the Ministry of Science and Technology of the Korean Government and Excellent Paper Awards from KIEE in 2002, 2004 and 2014 respectively. He is a senior member of IEEE and KIEE.
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