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Smart loads for voltage control in distribution networks

机译:用于电压控制的智能负载

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Summary form only given. This paper shows that the smart loads could be effective in mitigating voltage problems caused by photovoltaic (PV) generation and electric vehicle (EV) charging in low voltage (LV) distribution networks. Limitations of the previously reported smart load configuration with only series reactive compensator (SLQ) (one converter) is highlighted in this paper. To overcome these limitations, an additional shunt converter is used in back-to-back (B2B) configuration to support the active power exchanged by the series converter, which increases the flexibility of the smart load without requiring any energy storage. Simulation results on a typical UK LV distribution network are presented to compare the effectiveness of a smart load with B2B converters (SLBC) against an SLQ in tackling under- and over-voltage problems caused by EVs or PV. It is shown that SLBCs can regulate the mains voltage more effectively than SLQs especially, under over-voltage condition. Although two converters are required for each SLBC, it is shown that the apparent power capacity of each converter is required to be significantly less than that of an equivalent SLQ.
机译:摘要表格仅给出。本文表明,智能载荷可以有效地在低电压(LV)分配网络中的光伏(PV)产生和电动车辆(EV)充电引起的缓解电压问题。本文突出了先前报告的智能负载配置的局限性,仅具有串联无功补偿器(SLQ)(一个转换器)。为了克服这些限制,额外的分流器转换器用于背对背(B2B)配置,以支持由串联转换器交换的有功功率,这增加了智能负载的灵活性而不需要任何能量存储。提出了典型英国LV分配网络的仿真结果,以比较智能负载与B2B转换器(SLBC)对由EVS或PV引起的支出和过电压问题的SLQ的效果。结果表明,在过电压条件下,SLBC可以比SLQ更有效地调节电源电压。虽然每个SLBC需要两个转换器,但结果表明每个转换器的表观功率容量需要明显小于等效SLQ。

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