Hybrid AC/DC Power Grids: Stability and Control Aspects / Power Systems (PDF)
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This book covers modeling, control and stability aspects of hybrid AC/DC power networks. More specifically, this book provides an in-depth analysis of the stability and control aspects of hybrid AC/DC power grids, with comprehensive coverage of theoretical aspects of conventional stability issues (e.g., small-signal stability, voltage stability and frequency stability), emerging stability issues (e.g., converter associated stability) and control strategies applied in this emerging hybrid AC/DC power grids. This book takes a more pragmatic approach with a unique compilation of timely topics related to hybrid AC/DC networks compared with other books in this field. Therefore, this book provides the reader with comprehensive information on modeling, control and stability aspects which need to consider when modeling and analysis of hybrid AC/DC power grids for power system dynamics and stability studies.
Each chapter provides fundamental stability theories, some workedexamples and case studies to explain various modeling, analysis and control concepts introduced in the chapter. Therefore, postgraduate research students, power system researchers and power system engineers benefit from the materials presented in this book and assist them to model and device new control strategies to overcome the stability challenges of the emerging hybrid AC/DC power grid.
Siqi Bu received the Ph.D. degree in Electrical Engineering, Queen's University Belfast, Belfast, U.K., where he continued his postdoctoralresearch work
Mingchen Gu, born in May 1992 in China. She received the B.E. and M.E. degrees in electrical engineering from Nanjing University of Aeronautics and Astronautics, China, in 2014 and 2017, respectively, and she received the Ph.D. degree from RMIT university, Australia, in 2021. She is currently employed as a research assistant of School of Engineering, RMIT University, Melbourne, Australia. Her research interests include hybrid AC/DC power grids, power network stability control, weak grid analysis, battery energy storage systems and power electronics converters. Dr. Gu is a member of the IEEE and the IEEE power and energy society. She was the chair of IEEE RMIT student branch (2018-2019). She won the Best Paper Award First Prize in 2020 12th IEEE PES Asia-Pacific Power and Energy Engineering Conference (APPEEC).
- Autoren: Lasantha Meegahapola , Siqi Bu , Mingchen Gu
- 2022, 1st ed. 2022, 275 Seiten, Englisch
- Verlag: Springer International Publishing
- ISBN-10: 3031063848
- ISBN-13: 9783031063848
- Erscheinungsdatum: 18.08.2022
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- Dateiformat: PDF
- Größe: 11 MB
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