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Damping Control of HVDC Links to Mitigate Controller Interaction with Resonances of the Offshore Wind Farm

机译:高压直流输电链路的阻尼控制,以减轻与海上风电场共振的控制器交互作用

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摘要

This paper deals with the harmonic instability problem in offshore wind farms caused by the interaction of HVDC controller with the resonance frequencies of the grid. Due to the HVDC filters, transformers and long submarine cables wind farms have natural resonances, which are close to the operating frequency of the HVDC converter. Even through the grid resonances exhibit inherent damping, the converter control may amplify the oscillations resulting in harmonic instability. Therefore, the converter control has to be designed properly taking into account all possible operating conditions and grid topologies. In this paper a new damping control approach is presented that is using the dq components of the current for modulating the converter output voltage. The parameters of the damping controller are estimated by the heuristic optimization algorithm MVMO simultaneously for three different disturbance scenarios. Simulation results in the time domain demonstrate the effectiveness of the proposed method.
机译:本文研究了高压直流输电控制器与电网谐振频率之间的相互作用引起的海上风电场谐波不稳定问题。由于使用了HVDC滤波器,变压器和较长的海底电缆,因此风电场具有自然谐振,该谐振接近HVDC转换器的工作频率。即使通过电网共振表现出固有的阻尼,转换器控制也可能放大振荡,从而导致谐波不稳定。因此,必须在考虑所有可能的工作条件和电网拓扑的情况下正确设计变频器控制。本文提出了一种新的阻尼控制方法,该方法利用电流的dq分量来调制转换器的输出电压。对于三种不同的干扰情况,通过启发式优化算法MVMO同时估计阻尼控制器的参数。时域仿真结果证明了该方法的有效性。

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