Analysis of Resonance Mechanism of AC Submarine Cable Delivery System for Offshore Wind Power

Shuxin Tian, Yu Zhou, Lujie Liu, Yanjiu Zhang, Haoxing Zhao
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Abstract

Several resonant overvoltage accidents caused by machine-grid interaction in offshore wind power generation systems have led to significant economic losses over the years. To solve this problem, based on the equivalent distributed parameter circuit model of AC submarine cable delivery system, a method combining impedance simulation-time domain simulation and spectrum analysis is proposed to reveal the mechanism of resonant overvoltage and its influencing factors. First of all, considering the phase locked loop (PLL) model and the cable distribution parameter model, an impedance model of AC submarine cable delivery system for offshore wind power is established, which takes into account the dynamic characteristics of PLL and current loop, and provides a model basis for the theoretical analysis. Then, equations for current and frequency at the point of common coupling (PCC) are derived to analyze the mechanism of resonant overvoltage generation and the influence of submarine cable length and power grid strength on resonance. Finally, PSCAD is used to verify the resonance mechanism of AC submarine cable delivery system and its influencing factors.
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海上风电交流海底电缆输送系统的共振机理分析
多年来,由海上风力发电系统机网互动引起的多起谐振过电压事故已造成重大经济损失。针对这一问题,基于交流海底电缆输送系统等效分布参数电路模型,提出了阻抗仿真-时域仿真-频谱分析相结合的方法,揭示谐振过电压的产生机理及其影响因素。首先,考虑锁相环(PLL)模型和电缆分布参数模型,建立了海上风电交流海底电缆输送系统的阻抗模型,考虑了锁相环和电流环的动态特性,为理论分析提供了模型基础。然后,推导出共耦点(PCC)的电流和频率方程,分析谐振过电压产生的机理以及海缆长度和电网强度对谐振的影响。最后,利用 PSCAD 验证了交流海底电缆输送系统的谐振机理及其影响因素。
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