Voltage and Reactive Power Control in Closed Loop Feeders with Distributed Generation

F. Viawan, D. Karlsson
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引用次数: 17

Abstract

This paper investigates voltage and reactive power control in radial and closed loop distribution systems and how the presence of distributed generation (DG) affects the control. Comparative analysis between voltage and reactive power control in radial and closed loop feeders, based on coordination of OLTC, substation capacitors (the shunt capacitors installed at the substation secondary bus) and feeder capacitors (the shunt capacitors located somewhere along the feeder) is presented. The known benefit of closed loop operation is examined in a case study. It is shown that the feeder losses and the voltage fluctuation decrease with the change from radial to closed loop operation. The decrease of voltage fluctuation in the feeder is shown not to reduce the OLTC and capacitor operation. It is also shown that in a certain case closed loop operation can even decrease the maximum allowed DG capacity in the feeders. Further, while it is known that the closed loop operation can defer the distribution line upgrade due to load growth, if the contingency operation is taken into account, the closed loop operation will even earlier request the distribution line upgrade.
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分布式发电闭环馈线电压与无功控制
本文研究了径向和闭环配电系统的电压和无功控制,以及分布式电源的存在对控制的影响。在OLTC协调的基础上,对径向和闭环馈线电压和无功控制进行了对比分析,给出了变电站电容器(安装在变电站二次母线上的并联电容器)和馈线电容器(位于馈线沿线某处的并联电容器)。在一个案例研究中检验了已知的闭环操作的好处。结果表明,从径向运行到闭环运行,馈线损耗和电压波动减小。馈线电压波动的减小并不会降低OLTC和电容器的运行。研究还表明,在一定情况下,闭环运行甚至会降低馈线的最大允许DG容量。此外,虽然已知闭环运行会因负荷增长而推迟配电线路升级,但如果考虑应急运行,闭环运行甚至会更早地请求配电线路升级。
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