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Contribution of VSC-HVDC to Frequency Regulation of Power Systems With Offshore Wind Generation

机译:VSC-HVDC对海上风力发电系统的频率调节的贡献

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摘要

Modern large wind farms are required to provide frequency regulation service like conventional synchronous generation units. The frequency support capability of modern wind farms has been widely investigated and implemented. Remotely located large offshore wind farms are probably connected to the onshore system grid through voltage-source converter-based–high voltage direct current (VSC-HVdc) transmission systems. Due to the decoupling of VSC-HVdc and signal transmission delay, offshore wind farms may not be able to respond to the onshore grid frequency excursion in time and, consequently, the stability and security of the power system will be put at risk, especially for those with high wind penetration. This paper proposes a coordinated control scheme to allow VSC-HVdc link to contribute to the system frequency regulation by adjusting its dc-link voltage. By means of this approach, the dc capacitors of VSC-HVdc are controlled to absorb or release energy so as to provide frequency support. To further enhance the system frequency response, the frequency support from VSC-HVdc is also finely coordinated with that from offshore wind farm according to the latency of offshore wind farm responding to onshore grid frequency excursion. The control scheme is evaluated for both underfrequency and overfrequency events, and results are presented to demonstrate its effectiveness.
机译:现代大型风电场需要像常规同步发电装置一样提供频率调节服务。现代风电场的频率支持能力已得到广泛研究和实施。偏远的大型海上风电场可能通过基于电压源转换器的高压直流(VSC-HVdc)传输系统连接到陆上系统电网。由于VSC-HVdc的去耦和信号传输延迟,海上风电场可能无法及时响应陆上电网频率偏移,因此,电力系统的稳定性和安全性将受到威胁,特别是对于那些高风速的人。本文提出了一种协调控制方案,以允许VSC-HVdc链路通过调节其直流链路电压来为系统频率调节做出贡献。通过这种方法,可以控制VSC-HVdc的直流电容器吸收或释放能量,从而提供频率支持。为了进一步增强系统频率响应,VSC-HVdc的频率支持还根据海上风电场响应陆上电网频率偏移的潜伏时间与海上风电场的频率支持进行了很好的协调。针对低频和超频事件对控制方案进行了评估,并给出了结果以证明其有效性。

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