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首页> 外文期刊>Power Systems, IEEE Transactions on >Grid Code Compatibility of VSC-HVDC Connected Offshore Wind Turbines Employing Power Synchronization Control
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Grid Code Compatibility of VSC-HVDC Connected Offshore Wind Turbines Employing Power Synchronization Control

机译:使用电源同步控制的VSC-HVDC海上风力发电机组的电网代码兼容性

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摘要

This paper presents an alternative control scheme for offshore wind turbines (WTs) connected to the mainland grid through high voltage dc (HVDC) links based on voltage source converters (VSCs). The proposed WT controller inherently provides rapid droop-type frequency response, without the need to implement an additional WT frequency controller. A coordinated control approach is proposed between the WT and HVDC controllers in order to achieve fault ride-through (FRT) and frequency response capabilities, relying solely on offshore frequency modulation. To demonstrate the FRT capability of the VSC-HVDC link, a detailed EMT-type model is first developed in Matlab/Simulink, where onshore grid faults are tested. Then, the offshore wind farm is connected to a study case system in order to assess the contribution of the VSC-HVDC link to frequency regulation, by exploiting the proposed WT controller along with the communication capability between the two HVDC VSCs.
机译:本文提出了一种基于电压源转换器(VSC)的通过高压dc(HVDC)链路连接到大陆电网的海上风力涡轮机(WT)的替代控制方案。所提出的WT控制器固有地提供了快速下垂型频率响应,而无需实现额外的WT频率控制器。 WT和HVDC控制器之间提出了一种协调控制方法,以实现故障穿越(FRT)和频率响应能力,仅依靠海上频率调制。为了演示VSC-HVDC链路的FRT功能,首先在Matlab / Simulink中开发了详细的EMT类型模型,并在其中测试了陆上电网故障。然后,通过利用拟议的WT控制器以及两个HVDC VSC之间的通信能力,将海上风电场连接至研究案例系统,以评估VSC-HVDC链路对频率调节的贡献。

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