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Combined Effect of CVR and DG Penetration in the Voltage Profile of Low-Voltage Secondary Distribution Networks

机译:CVR和DG渗透对低压二次配电网电压曲线的综合影响

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In this paper, the voltage profile of secondary networks under conservation voltage reduction and distributed-generation (DG) penetration is studied for the first time. Three networks in New York City, modeled in detail, are used as study cases. Interconnection of DG is proposed to eliminate localized low-voltage violations due to a voltage reduction of 4%, 6%, and 8% from the normal schedule. The selection of the type of DG is based on the requirements imposed by the various interconnection standards, most notably IEEE 1547, public service commission, and local utility regulations. It is found that a small percentage of DG penetration would alleviate voltage violations. The study shows that DGs installed in distributed networks improve voltage regulation, allowing utilities to use deeper voltage reductions during critical conditions. It is also shown that the network power factor is reduced when penetration of DG is high and, thus, the line drop compensation needs to be adjusted for the characteristics of the new power demand.
机译:本文首次研究了在守恒电压降低和分布式发电(DG)渗透下的次级网络的电压分布。详细建模的纽约市的三个网络用作研究案例。提出了DG互连,以消除因正常计划电压降低4%,6%和8%而导致的局部低压违规情况。 DG类型的选择基于各种互连标准(最著名的是IEEE 1547,公共服务委员会和本地公用事业法规)提出的要求。发现少量的DG渗透会减轻电压违规。研究表明,安装在分布式网络中的DG可改善电压调节能力,使公用事业公司可以在关键条件下使用更深的电压降低。还显示出,当DG的渗透率较高时,网络功率因数会降低,因此,需要针对新功率需求的特性调整线损补偿。

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