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Stabilizing control for HVDC connected offshore wind farm

机译:高压直流输电海上风电场的稳定控制

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Bulk power supply from offshore wind farms via voltage-sourced-converter (VSC) based HVDC systems poses several challenges for design and operation. Besides the fundamental requirement of low voltage ride through (LVRT) weak AC grid conditions affecting transmission angle stability is a further issue. This work develops controls stretching from the wind farm to the onshore AC grid to handle major load changes and weak grid conditions. A particular crucial situation is given when grid weakening occurs unobserved. Considering the complexity of wind farm and HVDC controls, for the present work an AC grid connection via radial AC lines is used. The studies are performed on the PSCAD/EMTDC digital simulator in conjunction with plausibility checks using PQ-diagrams. Results obtained so far prove the capability of wind farm and HVDC controls to operate under weak grid conditions. Included in the study are preliminary investigations on an AC grid containing mechanical synchronous generators.
机译:通过基于电压源转换器(VSC)的HVDC系统从海上风电场提供大容量电源给设计和操作带来了一些挑战。除了低电压穿越(LVRT)的基本要求以外,影响传输角度稳定性的弱AC电网条件也是一个问题。这项工作开发了从风电场延伸到陆上交流电网的控件,以应对主要的负载变化和脆弱的电网条件。当未观察到电网削弱时,会给出一个特殊的关键情况。考虑到风电场和HVDC控制的复杂性,在当前工作中,使用了通过径向AC线的AC电网连接。这项研究是在PSCAD / EMTDC数字仿真器上进行的,并结合使用PQ图的合理性检查。到目前为止获得的结果证明了风电场和HVDC控制在弱电网条件下运行的能力。该研究包括对包含机械同步发电机的交流电网的初步研究。

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