Coordination of transformer on-load tap changer and PV smart inverters for voltage control of distribution feeders

T. Ku, C. H. Lin, C. S. Chen, C. Hsu
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引用次数: 30

Abstract

The increasing penetration of photovoltaic (PV) generation in distribution systems has entailed dramatic deterioration of distribution system voltage quality due to power injection by PV systems. This paper presents a coordinating control strategy of on-load tap changer (OLTC) of the main transformer in a substation and PV smart inverters to maintain good service voltage quality for the distribution network with high penetration of PV systems. The voltage level at the end-point of each distribution feeder and the power generation by each PV system are collected via a renewable management system. The hourly tap position of OLTC is then derived based on the daily profiles of feeder voltage variation and the injected power generated by all PV systems along the feeder. The PV smart inverters execute an autonomous control of reactive power compensation so that the voltage at the point of common coupling (PCC) can be fixed at the specified voltage level. A main transformer, which serves six feeders with high PV penetration in Taiwan Power Company (Taipower), was selected for this case study. With the proposed coordinating control of OLTC and PV smart inverters, the impact of service voltage quality due to the high penetration of PV systems in the distribution system can be effectively mitigated.
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配电网电压控制中变压器有载分接开关与光伏智能逆变器的配合
随着光伏发电在配电网中的普及,由于光伏发电系统的电力注入,导致配电网电压质量急剧恶化。本文提出了一种变电站主变有载分接开关与光伏智能逆变器的协调控制策略,以保证光伏系统高普及率配电网的良好供电电压质量。每个配电馈线终点的电压水平和每个光伏系统的发电量通过可再生能源管理系统收集。然后,根据馈线电压的日变化曲线和馈线沿线所有光伏系统产生的注入功率,推导出OLTC的每小时抽头位置。光伏智能逆变器执行无功补偿的自主控制,以便在公共耦合点(PCC)的电压可以固定在指定的电压水平。本案例选取了台湾电力公司(Taipower)的主变压器,该主变压器为6条高光伏渗透率的馈线提供服务。通过对OLTC和光伏智能逆变器的协调控制,可以有效地缓解光伏系统在配电系统中的高渗透率对供电电压质量的影响。
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