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Optimal reactive power control of distribution feeders with distributed energy resources: Interaction analysis and validation

机译:具有分布式能源的配电馈线的无功优化控制:相互作用分析与验证

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In the voltage regulation problem of MV distribution systems with Distributed Generation (DG), the regulator of the On Load Tap Changer (OLTC) equipped with Line Drop Compensator (LDC) interferes with the DG voltage regulator. This interaction can significantly changes the voltage profile along the feeders. With the aim to propose a solution to this problem, the present paper firstly models this interaction and subsequently defines a sufficient condition which sets an upper bound on the reactance of the LDC. According to the defined condition it is possible to define two separate areas of MV distribution system. The first area collects the nodes controlled by the LDC and the second one the nodes controlled by the DG. In this way the OLTC with LDC and the DG voltage regulator both improve the voltage profile without generating mutual interactions. The study is developed with reference to the DG voltage regulator designed according to an optimization procedure named Optimal Set Point Design (OSPD), previously proposed by the same authors. The validity of the presented analysis is finally validated by numerical simulations.
机译:在具有分布式发电(DG)的MV配电系统的电压调节问题中,配备了线路压降补偿器(LDC)的有载分接开关(OLTC)的调节器会干扰DG电压调节器。这种相互作用可以显着改变沿馈线的电压分布。为了提出解决此问题的方法,本文首先对这种相互作用进行建模,然后定义一个充分条件,为LDC的电抗设定一个上限。根据定义的条件,可以定义MV分配系统的两个单独区域。第一个区域收集由LDC控制的节点,第二个区域收集由DG控制的节点。这样,带有LDC的OLTC和DG电压调节器都可以改善电压曲线,而不会产生相互影响。该研究参考了根据同一作者先前提出的,根据名为最佳设定点设计(OSPD)的优化程序设计的DG稳压器进行。最后通过数值模拟验证了所提出分析的有效性。

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