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2025年12月16日学术报告

编辑:赵顺毅    时间:2025-12-15    点击数:    来源:黄文涛    文、图:黄文涛

报告人 朱建国 讲座题目 Management of Virtual Power Plants for Optimal Network and Market Operations

报告人:朱建国(Jianguo Zhu)教授,澳大利亚悉尼大学


时间:20251216 1330


地点:av片 B222


报告人简介:

朱建国现任澳大利亚悉尼大学(USyd)电气与计算机工程学院教授,IEEE Fellow1982年获得江苏大学学士学位,1987年获上海大学硕士学位,1995年获澳大利亚悉尼科技大学(UTS)博士学位。1994年担任UTS讲师,2004年晋升正教授,2017年获杰出教授称号。2008-2017年,朱建国教授担任UTS电气、机械及机电系统学院院长、绿色能源与汽车创新中心(CGEVI)主任,以及电机和电力电子中心(CEMPE)主任,为该校工程学科的建设及发展做出了积极贡献;2018-2023年,应聘担任悉尼大学电气与信息工程学院院长。

朱建国教授研究领域包括计算电磁学,材料磁性能的测量和建模,电机与驱动系统,电力电子,可再生能源系统,智能微电网及虚拟电厂等。在相关领域主持国家级、工业合作项目70余项,出版英文专著3部,书籍章节8篇,期刊论文579篇,会议论文650多篇。根据谷歌学术,其论文共被引用33,229次,h指数为912020-2025连续六年入选斯坦福大学的World Top 2% Most-Cited Researchers名录。20242025连续两年被澳大利亚人报科学研究专栏杂志评为Top Power Engineering Researcher in Australia’s Top 250 Researchers




题目:Management of Virtual Power Plants for Optimal Network and Market Operations

报告摘要:

The rapid growth of distributed energy resources (DERs), including rooftop photovoltaics (PVs) and battery storage systems, has significantly transformed the landscape of renewable energy supply. For effective integration of intermittent renewable energy sources in power grids, regional virtual power plants (VPPs) aggregate and coordinate geophysically proximate DERs to achieve safety, reliability, resilience, and high-power quality through optimal network operation.

On the other hand, the full potential of VPPs’ optimal market operation remains to be fully understood. VPPs can empower DERs to participate in energy markets as prosumers, creating attractive opportunities for them to generate profits in various electricity markets, such as the peer-to-peer (P2P) market, spot market, and ancillary services market. This talk presents various market strategies for profitable VPP market operations, including flexible frameworks and methods for VPP construction and coordination, as well as a holistic peer-to-peer (P2P) energy trading market within a VPP environment and an internal market within a VPP cluster.

New concepts of grid-forming dynamic VPPs will be discussed for improving the stability and resilience of power systems with high percentages of renewable integrations.


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