考虑负荷和可再生分布式发电时变的配电网重构方法

J. Wen, Xing Qu, Yinhua Huang, Siyu Lin
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引用次数: 0

摘要

由于可再生分布式发电(RDG)的集成和实际配电网中负荷需求的不断变化,考虑负荷和RDG变化的电网重构是提高整个系统性能的关键。本文提出了一种具有时变特性的重构方法,其目标是使系统的总有功损耗最小,同时使系统对RDG的吸收最大化。首先,通过分析实际负荷需求和RDG输出功率的时变特性,建立了负荷和RDG模型;然后,基于负荷和RDG的变化,设计了综合多期目标函数。最后,提出了一种混合粒子群算法来解决考虑时变特性的网络重构优化问题。在该方法中,将拓扑结构和RDG功率的吸收定义为利用整数和随机量子进化原理更新的总体。在考虑实际负载需求和RDG的扩展33总线网络上进行了测试,证明了该方法提高系统性能的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Reconfiguration Method of Distribution Network Considering Time Variations for Load and Renewable Distributed Generation
Due to the integration of Renewable Distributed Generation (RDG) and the load demand constantly change in an actual distribution network, network reconfiguration considering variations in load and RDG is a key role to enhance the performances of overall system. This paper proposes a reconfiguration method with time-varying characteristic that aims to minimize the total active power loss and maximize the absorption of RDG power by the system simultaneously. Firstly, the load and RDGs models are built through analyzing the time-varying characteristic of the actual load demand and RDG output power. Afterwards, the comprehensive multi-period objective function is designed based on variations in load and RDG. Finally, a hybrid particle swarm optimization is presented to solve the optimal problem of network reconfiguration considering time-varying characteristic. In the method, the topology structure and the absorption of RDG power are defined as the population which are updated by using integer and random quantum evolution principles. The proposed method is tested on an extended 33-bus network considering actual load demand and RDG to show the effectiveness of enhancing the performance of the system.
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