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Voltage and Reactive Power Control in Systems With Synchronous Machine-Based Distributed Generation

机译:基于同步机器的分布式发电的系统中的电压和无功功率控制

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This paper investigates voltage and reactive power control in distribution systems and how the presence of synchronous machine-based distributed generation (DG) affects the control. A proper coordination among the onload tap changer (OLTC), substation switched capacitors and feeder-switched capacitors in order to obtain optimum voltage and reactive power control is proposed. It is assumed that there is no communication link between the OLTC and the capacitors, a normal case in distribution system operation these days. The results indicate that the proposed method decreases the number of OLTC operations, losses, and voltage fluctuations in distribution systems, with and without DG present. The power-flow reversal due to the DG is shown not to interfere with the effectiveness of the OLTC operation. Further, it is also shown that as long as the available capacitors are enough to compensate the reactive power demand, the DG operation mode does not give a significant effect to the distribution system losses. However, DG operating at a constant voltage is beneficial for a significant reduction of OLTC operation and voltage fluctuation in the distribution system.
机译:本文研究配电系统中的电压和无功功率控制,以及基于同步机器的分布式发电(DG)的存在如何影响控制。提出有载分接开关(OLTC),变电站开关电容器和馈线开关电容器之间的适当协调,以获得最佳电压和无功功率控制。假设OLTC和电容器之间没有通信链路,这是当今配电系统运行中的正常情况。结果表明,所提出的方法在存在和不存在DG的情况下减少了配电系统中OLTC操作的次数,损耗和电压波动。显示出由于DG引起的功率流逆转不会干扰OLTC操作的有效性。此外,还显示出,只要可用电容器足以补偿无功功率需求,DG操作模式就不会对配电系统的损耗产生重大影响。但是,以恒定电压运行的DG有助于显着减少OLTC的运行和配电系统中的电压波动。

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