多个子微电网自治混合微电网的分布式控制与电源管理策略

Mohammad Abuhilaleh, Li Li, Jianguo Zhu, M. Hossain
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引用次数: 2

摘要

提出了一种针对交直流混合微电网中多个子微电网的分布式协调控制方法。传统的管理交流和直流smg之间潮流的控制方法是基于比例功率共享原则。这主要是通过平衡直流侧的归一化电压和交流侧的频率来实现的。该方法提出了一种分布式控制系统,保证了互连变流器的完全可控性。它克服了电力交换对特定变量的完全依赖。该方法不仅可以控制SMG之间的功率流,而且可以保证单个SMG故障时功率传输的连续性。最后用MATLAB/Simulink软件进行了三个实例分析,验证了该方法的有效性和可行性。结果表明,所提出的控制系统在管理smg间的潮流方面具有很高的灵活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed Control and Power Management Strategy for an Autonomous Hybrid Microgrid with Multiple Sub-Microgrids
This paper proposes a novel approach of distributed coordination control for multiple sub-microgrids (SMGs) within a hybrid AC/DC microgrid. The conventional control approach for managing power flow among AC and DC SMGs is based on the proportional power sharing principle. This is mainly implemented by equalising the normalized voltage at the DC side and the frequency at the AC side for any interfaced SMGs. The proposed method suggests a distributed control system that ensures a total controllability for the interlinking converters. It overcomes the total dependency on a specific variable for power exchange. The proposed method not only enables control of the power flow between SMGs but also ensures the continuity of power transfer if any single SMG fails. Three case studies are presented to demonstrate the validity and capability of the proposed approach using the MATLAB/Simulink software. From the obtained results, it is found that the proposed control system provides a high level of flexibility in managing the power flow among SMGs.
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