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作 者:Luka V.Strezoski Nikola G.Simic Kenneth A.Loparo
机构地区:[1]Faculty of Technical Sciences,University of Novi Sad,Novi Sad,Serbia [2]EECS Department at Case Western Reserve University,Cleveland,USA
出 处:《Journal of Modern Power Systems and Clean Energy》2025年第1期325-337,共13页现代电力系统与清洁能源学报(英文)
摘 要:In this paper,a robust method for quantifying the impact of short-circuit faults on microgrids is proposed.Microgrids can operate in both islanded(grid-forming)and gridconnected(grid-following)modes,and the ownership and responsibility for the microgrid operation can vary significantly from distribution system operators(DSOs)to third-party microgrid operators.This necessitates the development of a robust short-circuit calculation(SCC)method that can provide accurate results for all the possible microgrid topologies,operational modes,and ownership models.Unlike previously developed SCC methods for microgrids,the SCC method proposed in this paper provides highly accurate results for all possible microgrid topologies:islanded microgrid,grid-connected microgrid,and utility microgrid as a part of a larger distribution grid.In addition,the proposed SCC method solves the short-circuit faults of any complexity,with the same simplicity.The proposed SCC method is tested on a complete model of a real-life microgrid on the Case Western Reserve University campus,operating in both islanded and grid-connected modes.The computational results show the advantages of the proposed SCC method in comparison to the previous ones for microgrids,regarding the robustness(ability to solve complex short-circuit faults with an arbitrary number of faulted buses and phases that affect a microgrid of any topology),as well as the accuracy of the results.
关 键 词:Distributed energy resource short-circuit fault MICROGRID short-circuit calculation
分 类 号:TM711[电气工程—电力系统及自动化]
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