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Impact of Reverse Power Flow in Distribution Feeders on Under-Frequency Load Shedding Schemes

机译:逆向功率流动在分配馈线对频率负荷脱落方案上的影响

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This paper presents an analysis of the system effects of reverse power flow in distribution feeders. Continued increases in the number of small-scale photovoltaic (PV) panel installations within the network has led to low or reverse power flows in distribution feeders at times of high solar energy availability, and substantial weather-induced load variation, among other impacts. In the event of a large loss of generation, under-frequency load shedding of these distribution feeders is one tool that network operators use to arrest the frequency decline. The penetration of distributed PV generation leads to low availability of load to shed, or the chance of inadvertently removing generation, which can lead to power system failure. This paper explores these effects on the largest power system in Western Australia and suggests methods to mitigate the impact of increasing DER penetration on under-frequency load shedding schemes.
机译:本文介绍了分配馈线反向功率流动的系统效应分析。在网络内的小型光伏(PV)面板装置的持续增加导致了在高太阳能可用性的分配馈送器中的低或倒车电流,以及大量天气引起的载荷变化,以及其他影响。如果发生较大的生成损失,则这些分配馈线的频率载荷缩小是网络运营商用于逮捕频率下降的一个工具。分布式光伏发电的渗透导致负载的可用性低,或者无意中去除生成的可能性,这可能导致电力系统故障。本文探讨了对西澳大利亚最大的电力系统的影响,并提出了减轻频率渗透对频率载荷脱落方案的影响的方法。

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