Virtual inertia synthesis and control
著者
書誌事項
Virtual inertia synthesis and control
(Power systems)
Springer, c2021
大学図書館所蔵 全1件
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  宮城
  秋田
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  福島
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  福井
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  京都
  大阪
  兵庫
  奈良
  和歌山
  鳥取
  島根
  岡山
  広島
  山口
  徳島
  香川
  愛媛
  高知
  福岡
  佐賀
  長崎
  熊本
  大分
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注記
Includes bibliographical references
内容説明・目次
内容説明
This book provides a thorough understanding of the basic principles, synthesis, analysis, and control of virtual inertia systems. It uses the latest technical tools to mitigate power system stability and control problems under the presence of high distributed generators (DGs) and renewable energy sources (RESs) penetration.
This book uses a simple virtual inertia control structure based on the frequency response model, complemented with various control methods and algorithms to achieve an adaptive virtual inertia control respect to the frequency stability and control issues. The chapters capture the important aspects in virtual inertia synthesis and control with the objective of solving the stability and control problems regarding the changes of system inertia caused by the integration of DGs/RESs. Different topics on the synthesis and application of virtual inertia are thoroughly covered with the description and analysis of numerous conventional and modern control methods for enhancing the full spectrum of power system stability and control. Filled with illustrative examples, this book gives the necessary fundamentals and insight into practical aspects.
This book stimulates further research and offers practical solutions to real-world power system stability and control problems with respect to the system inertia variation triggered by the integration of RESs/DGs. It will be of use to engineers, academic researchers, and university students interested in power systems dynamics, analysis, stability and control.
目次
An Overview of Virtual Inertia and its Control.- Fundamental Concepts of Inertia Power Compensation.- Virtual Inertia Synthesis for a Single-Area Power System.- Virtual Inertia Synthesis for Interconnected Power Systems.- Application of PI Control for Virtual Inertia Control.- Application of Model Predictive Control for Virtual Inertia Control.- Synthesis of Robust Virtual Control.- Optimization of Virtual Inertia Control Considering System Frequency Protection Scheme.- Technical Challenges and Further Research Need
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