未来のスマートグリッドにおける電力系統保護:再生可能エネルギー・電気自動車・分散型電源での信頼できるオペレーションの達成<br>Power System Protection in Future Smart Grids : Achieving Reliable Operation with Renewable Energy, Electric Vehicles, and Distributed Generation

個数:1
紙書籍版価格
¥37,515
  • 電子書籍
  • ポイントキャンペーン

未来のスマートグリッドにおける電力系統保護:再生可能エネルギー・電気自動車・分散型電源での信頼できるオペレーションの達成
Power System Protection in Future Smart Grids : Achieving Reliable Operation with Renewable Energy, Electric Vehicles, and Distributed Generation

  • 著者名:Ustun, Taha Selim (EDT)
  • 価格 ¥30,208 (本体¥27,462)
  • Academic Press(2023/08/22発売)
  • いよいよ秋の気配!Kinoppy 電子書籍・電子洋書 全点ポイント25倍キャンペーン(~9/13)
  • ポイント 6,850pt (実際に付与されるポイントはご注文内容確認画面でご確認下さい)
  • 言語:ENG
  • ISBN:9780323917803
  • eISBN:9780323972659

ファイル: /

Description

Power System Protection in Future Smart Grids: Achieving Reliable Operation with Renewable Energy, Electric Vehicles and Distributed Generation demonstrates how to protect smart, highly renewable, and highly distributed power systems with state-of-the-art methods rooted in adaptive protection and dynamic response, and based on continuous communication. Focusing on the implementation of novel protection schemes, each chapter presents solutions accompanied by figurative elements and demonstrator codes in MATLAB, C, Python and Java. Chapters address active distribution networks, hybrid microgrids, EVs and inverters on fault levels, adaptive protection systems, dynamic protection strategies, and Hardware in the Loop (HiL) approaches.- Demonstrates how to mitigate the numerous unanticipated protection consequences of smarter grids and smarter grid equipment- Focuses on providing communication-based solutions and power hardware in the loop modeling for integration of novel devices- Emphasizes the importance of automation, communication, and cybersecurity in future protection systems- Fully supported with modern demonstrator coding in MATLAB, C, Python, and Java

Table of Contents

1. Introduction – Changing Paradigms in Power Networks 2. Protection of Active Distribution Networks 3. Protection of Hybrid Microgrids with High Renewable Share 4. Fault Current Contributions of EVs and Inverters on fault levels 5. Adaptive Protection Scheme Approaches 6. Role of communication in Dynamic Protection Strategies 7. IEc 61850 modeling of an adaptive protection system for microgrids with high renewables 8. Hardware in the loop testing approaches for fault current studies 9. Protection of DC Microgrids 10. Conclusions and Future work

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