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Enhanced Network Voltage Management Techniques Under the Proliferation of Rooftop Solar PV Installation in Low-Voltage Distribution Network

机译:低压配电网中屋顶太阳能光伏装置激增下的增强型网络电压管理技术

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摘要

The proliferation of rooftop solar PV distributed generator (PVDG) installation in a low-voltage distribution network (LVDN) imposes voltage fluctuation challenges that are a threat to distribution system operators. Reactive power control (RPC) methods are insufficient in isolation to combat the overvoltage fluctuations manifested in an LVDN with a significant number of grid-tied PVDG installations, whereas active power curtailment (APC) control can alleviate the voltage fluctuation in such situations and it is achieved at the cost of reduced active power injection. This paper explores how deficiencies in both RPC and APC as separate approaches can be mitigated by suitably combining RPC and APC algorithms. Strategies combining two RPCs and one RPC in conjunction with APC are proposed as two coordinating algorithms by means of an instantaneous measurement of node voltage and active power. These coordinating algorithms are embedded in all the rooftop PVDG grid-tied inverters (GTIs), where the GTI coordinates among them for voltage support without exceeding individual inverter volt-ampere rating. The result of the combined approach shows a significant improvement in managing and stabilizing the voltage and allows the penetration of PVDG to be increased from 35.65% to 66.7% of distribution transformer kilovolt-ampere rating.
机译:低压配电网(LVDN)中安装的屋顶太阳能光伏分布式发电机(PVDG)的激增带来了电压波动的挑战,对配电系统运营商构成了威胁。无功功率控制(RPC)方法在隔离方面不足以抵抗大量并网PVDG安装的LVDN中表现出的过电压波动,而有功功率削减(APC)控制可以缓解这种情况下的电压波动,以减少有功功率注入为代价。本文探讨了如何通过适当地结合使用RPC和APC算法来缓解RPC和APC这两种单独方法的不足。通过瞬时测量节点电压和有功功率,提出了将两个RPC和一个RPC与APC相结合的策略作为两种协调算法。这些协调算法已嵌入所有屋顶式PVDG并网逆变器(GTI)中,其中GTI在其中进行协调以提供电压支持,而不会超过单个逆变器的伏安额定值。组合方法的结果显示出在电压管理和稳定方面的显着改善,并使PVDG的渗透率从配电变压器千伏安额定值的35.65%提高到66.7%。

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