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首页> 外文期刊>Power Delivery, IEEE Transactions on >Power-Flow Control and Stability Enhancement of Four Parallel-Operated Offshore Wind Farms Using a Line-Commutated HVDC Link
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Power-Flow Control and Stability Enhancement of Four Parallel-Operated Offshore Wind Farms Using a Line-Commutated HVDC Link

机译:使用线路换向HVDC链路的四个并联海上风电场的功率流控制和稳定性增强

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摘要

This paper presents an effective control scheme using a line-commutated high-voltage direct-current (HVDC) link with a designed rectifier current regulator (RCR) to simultaneously perform both power-fluctuation mitigation and damping improvement of four parallel-operated 80-MW offshore wind farms delivering generated power to a large utility grid. The proposed RCR of the HVDC link is designed by using modal control theory to contribute adequate damping to the studied four offshore wind farms under various wind speeds. A systematic analysis using a frequency-domain approach based on eigenvalue analysis and a time-domain scheme based on nonlinear model simulations is performed to demonstrate the effectiveness of the proposed control scheme. It can be concluded from the simulation results that the proposed HVDC link combined with the designed RCR can not only render adequate damping characteristics to the studied offshore wind farms under various wind speeds but also effectively mitigate power fluctuations of the offshore wind farms under wind-speed disturbance conditions.
机译:本文提出了一种有效的控制方案,该方案使用线路换向的高压直流(HVDC)链路和设计的整流器电流调节器(RCR)来同时执行四个并联运行的80 MW功率波动的减轻和阻尼的改善离岸风电场将发电的电力输送到大型公用电网。所建议的高压直流输电线路的RCR是采用模态控制理论设计的,旨在为研究中的四个海上风电场在不同风速下提供足够的阻尼。进行了基于特征值分析的频域方法和基于非线性模型仿真的时域方案的系统分析,以证明所提出的控制方案的有效性。从仿真结果可以得出结论,建议的高压直流输电线路与设计的RCR相结合,不仅可以为研究的海上风电场在各种风速下提供足够的阻尼特性,而且可以有效地缓解风速下海上风电场的功率波动。干扰条件。

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