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Coordination of Transformer On-Load Tap Changer and PV Smart Inverters for Voltage Control of Distribution Feeders

机译:用于配电馈线电压控制的变压器有载分接开关和PV智能逆变器的配合

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摘要

To enhance the outage quality of a distribution system with a high penetration of photovoltaic (PV) renewable energy, this paper proposes a coordinating control strategy for an on-load tap changer (OLTC) of the main transformer in a distribution substation and PV smart inverters. The voltages at the end points of all distribution feeders that are served by the main transformer and the power generation of each PV system are collected using a SCADA system. The hourly tap position of the OLTC is then derived from the daily profiles of feeder voltage and the injected power that is generated by all PV systems along the feeder. Thereafter, the PV smart inverters perform autonomous control of reactive power compensation so that the voltage at the point of common coupling can be fixed at the specified voltage level. To demonstrate the effectiveness of the proposed voltage-control strategy, a main transformer, which serves six feeders of the Taiwan Power Company(Taipower) with high PV penetration, was considered in a case study. The proposed coordinating control of the OLTC and PV smart inverters dramatically improved the voltage quality of the distribution feeder and enabled the effective mitigation of the impact of large PV integration in the distribution system.
机译:为了提高具有高渗透率的光伏(PV)可再生能源的配电系统的停运质量,本文提出了一种配电变电站和PV智能逆变器中主变压器的有载分接开关(OLTC)的协调控制策略。 。使用SCADA系统收集由主变压器提供服务的所有配电馈线的端点电压以及每个PV系统的发电量。 OLTC的每小时分接位置然后从馈线电压的每日曲线以及由沿着馈线的所有PV系统生成的注入功率得出。此后,PV智能逆变器执行无功补偿的自主控制,以便可以将公共耦合点的电压固定在指定的电压水平。为了证明所提出的电压控制策略的有效性,在案例研究中考虑了一个主变压器,该变压器为台湾电力公司(Taipower)的六个馈线提供了较高的PV渗透率。提议的OLTC和PV智能逆变器的协调控制可显着提高配电馈线的电压质量,并有效缓解大型光伏集成对配电系统的影响。

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