Coordinated frequency regulation by offshore wind farms and VSC-HVDC transmission

Hongzhi Liu, Zhe Chen
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引用次数: 5

Abstract

With the increasing wind penetration, large-scale offshore wind farms exert significant impact on power system security and operation, and thus are required to contribute to system frequency regulation. This paper develops a coordinated control strategy for offshore wind farms with voltage source converter-based HVDC (VSC-HVDC) transmission system to participate in power system frequency regulation. The strategy explores the frequency support capability of offshore wind farms and VSC-HVDC. By implementing the proposed coordinated control, the VSCHVDC link is able to provide quick virtual inertial response to onshore grid frequency drops. Shortly afterwards, the offshore wind farm detects the frequency changes and start to participate in inertial response and primary frequency control. The offshore wind farms, in this study, consist of full-converter wind turbines (FCWTs). Simulation results are presented to demonstrate the frequency regulation capability of VSC-HVDC and validate the effectiveness of the proposed coordinated control strategy.
海上风电场和VSC-HVDC传输的协调频率调节
随着风电渗透率的不断提高,大型海上风电场对电力系统的安全和运行产生了重大影响,因此需要为系统频率调节做出贡献。本文提出了一种基于电压源变流器的高压直流输电系统参与电力系统频率调节的海上风电场协调控制策略。该策略探讨了海上风电场和VSC-HVDC的频率支持能力。通过实施拟议的协调控制,VSCHVDC链路能够对陆上电网频率下降提供快速的虚拟惯性响应。不久之后,海上风电场检测到频率变化,并开始参与惯性响应和主要频率控制。在本研究中,海上风电场由全变流器风力涡轮机(FCWTs)组成。仿真结果验证了VSC-HVDC的频率调节能力,并验证了所提协调控制策略的有效性。
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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