A coordinated reactive power and voltage control system for wind farm grid integration

N. Chen, Minhui Qian, Ling-zhi Zhu, L. Yao, Fubao Wu, Mei Chen, N. Wang
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引用次数: 5

Abstract

Rapid increase of wind power installation in China brings new technical issues and challenges for grid security operation. Reactive power and voltage control capability of wind farms is one of key issues that grid operators concern with. This paper presents a coordinated reactive power and voltage control system for wind farm gird integration to meet operation requirements described in the standard of State Grid Corporation of China “Technical rule for connecting wind farm to power system”. The control strategy of the proposed system takes into account the coordination between voltage and power factor. The proposed system includes two control modes, i.e., schedule voltage tracing mode and optimization mode. To prove the effectiveness of the proposed strategy, a simulation study is first implemented. Based on this, a control system with the proposed control strategy is developed. Then a field test is carried out in Shanghai Fengxian Haiwan Wind Farm to verify the characteristics of reactive power output and voltage tracking of the system. The results demonstrate that technique indices of reactive power and voltage control system (RPVCS) can satisfy the requirements of the standard. It can improve the voltage stability by effective control of reactive power of wind farm.
风电场并网无功电压协调控制系统
中国风电装机的快速增长给电网安全运行带来了新的技术问题和挑战。风电场的无功电压控制能力是电网运营商关注的关键问题之一。本文提出了一种风电场并网无功电压协调控制系统,以满足中国国家电网公司《风电场并网技术规程》标准的运行要求。该系统的控制策略考虑了电压和功率因数之间的协调。该系统包括两种控制模式,即调度电压跟踪模式和优化模式。为了验证所提策略的有效性,首先进行了仿真研究。在此基础上,开发了采用所提控制策略的控制系统。然后在上海奉贤湾风电场进行了现场试验,验证了系统的无功输出特性和电压跟踪。结果表明,无功电压控制系统(RPVCS)的技术指标满足标准要求。通过对风电场无功功率的有效控制,可以提高风电场的电压稳定性。
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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