耦合微电网集群临时能源交易管理的各种结构与控制策略

S. Ferdous, Farhad Shahnia, G. Shafiullah
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引用次数: 0

摘要

自主微电网(MG)可能出现过载和可再生能源过度发电。这些问题可能导致MG的电压或频率出现不可接受的偏差。这些问题可以通过减载或弃用可再生能源来缓解。另一方面,形成临时的相邻MG集群,促进它们之间的权力交换,也可以更经济有效地改善这种状况。mg之间的电源交换链路可以采用各种形式,如三相交流、单相交流或直流链路。这种方法需要基于电力电子的转换器将三相交流微电网与电力交换链路互连,并控制它们之间的电力共享。本文对这种结构进行了研究,并提出了一种分散的方法来控制相邻mg的变换器,以实现它们之间的功率共享。通过PSIM®中的仿真研究评估了所提出的控制机制的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Various Structures and Control Strategies for Provisional Energy Transaction Management in Coupled Microgrid Clusters
An autonomous microgrid (MG) may observe overloading and renewable-based excessive generation. Such issues can lead to unacceptable deviation in the MG's voltage or frequency. These problems can be eased by load-shedding or renewable curtailment. On the other hand, forming provisional neighboring MG clusters and facilitating power exchange among them can also improve the situation more economically and effectively. The power exchange link between the MGs can be in the various forms such as a three-phase ac, a single-phase ac or a dc link. This approach requires power electronics-based converters to interlink the three-phase ac microgrid with the power exchange link and control the power-sharing amongst them. This paper has studied such structures and has proposed a decentralized approach to control the converters of the neighboring MGs to enable power-sharing amongst them. The performance of the proposed control mechanisms is evaluated through simulation studies in PSIM®.
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