Research on Active and Reactive Power Coordination Control Strategy for Overvoltage of PV Distribution Network in High Penetration Area

Fang-ming Niu, Guobin Xu, Jilong Zhang, Yue Liu, Wei Wang
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Abstract

With the large amount of renewable energy connected to the distribution network, the uncertainty of photovoltaic output and the mismatch between the load have caused the voltage fluctuation of the distribution network, reducing the power quality and power supply reliability of the distribution network, which has affected the safe operation of the distribution network. It is of great significance to study the control strategy for the overvoltage problem of the highpenetration photovoltaic distribution network to realize the consumption of photovoltaic equipment.The paper analyzes the mechanism of voltage over-limit firstly, under the background that various existing schemes have poor controllability of voltage regulation and cannot meet power quality requirements, an active-reactive power coordinated control strategy is proposed. When the distribution network is facing the risk of voltage exceeding the limit, combined with Q-U droop curve, power constraint equation and inverter capacity constraint, the reactive power of the line is regulated by the residual capacity of the inverter; in order to ensure that the power factor of the grid meets the system requirements, when the maximum reactive power adjustment capability of the inverter is reached, the active power control so that voltage requirements are finally met. The effectiveness of this control strategy in solving the voltage crossing problem in a five-node distributed PV distribution network is verified by MATLAB simulation.
高渗透地区光伏配电网过电压有功与无功协调控制策略研究
随着可再生能源大量接入配电网,光伏输出的不确定性和负荷之间的不匹配导致配电网电压波动,降低了配电网的电能质量和供电可靠性,影响了配电网的安全运行。研究高渗透光伏配电网过电压问题的控制策略,对实现光伏设备的消纳具有重要意义。本文首先分析了电压超限产生的机理,在现有各种方案电压调节可控性差、不能满足电能质量要求的背景下,提出了一种有功无功协调控制策略。当配电网面临电压超限风险时,结合Q-U下垂曲线、功率约束方程和逆变器容量约束,利用逆变器剩余容量调节线路无功功率;为了保证电网的功率因数满足系统要求,当达到逆变器的最大无功调节能力时,进行有功控制,使电压最终满足要求。通过MATLAB仿真验证了该控制策略在解决五节点分布式光伏配电网电压交叉问题中的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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