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Application of DSTATCOM for surplus power circulation in MV and LV distribution networks with single-phase distributed energy resources

机译:DSTATCOM在单相分布式能源中压和低压配电网过剩电力循环中的应用

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摘要

Single-phase distributed energy resources (DERs), such as rooftop photovoltaic arrays, are usually installed based on the need and affordability of clients without any regard to the power demand of the connected phase of a three-phase system. It might so happen that the power generation in a particular phase is more than its load demand. This may cause a reverse power flow in a particular phase, especially in a three-phase, four-wire distribution system. If now the load demand in the other two phases is more than their respective generations, then these two phases will see a forward power flow, while there will be a reverse power flow in the third phase. This will create severe unbalance in the upstream network. In this paper, a distribution static compensator (DSTATCOM) is used to circulate the excess generation from one phase to the others such that a set of balanced currents flow from or into the upstream network. Two different topologies of DSTATCOM are proposed in this paper for the low and medium voltage feeders. Two different power circulation strategies are developed for this purpose. Furthermore, a suitable feedback scheme is developed for each topology for power converter control. The performance of the proposed topologies and the control schemes for the DSTATCOM is evaluated through computer simulation studies using PSCAD/EMTDC.
机译:通常根据客户的需求和承受能力来安装单相分布式能源(DER),例如屋顶光伏阵列,而无需考虑三相系统连接相的电力需求。可能发生的是,特定阶段的发电量超过其负载需求。这可能会导致特定相中的反向功率流,特别是在三相四线配电系统中。如果现在其他两个阶段的负载需求大于各自的发电需求,则这两个阶段将看到正向潮流,而在第三阶段将出现反向潮流。这将在上游网络中造成严重的不平衡。在本文中,配电静态补偿器(DSTATCOM)用于将多余的发电量从一个相循环到另一个相,从而使一组平衡电流从上游网络流入或流入上游网络。本文针对低压和中压馈线提出了两种DSTATCOM拓扑。为此,开发了两种不同的功率循环策略。此外,针对每种拓扑开发了适合的反馈方案,以进行功率转换器控制。通过使用PSCAD / EMTDC的计算机仿真研究,对DSTATCOM的拟议拓扑和控制方案的性能进行了评估。

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