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Resonant control system for low-voltage ride-through in wind energy conversion systems

机译:谐振控制系统,用于风能转换系统中的低压穿越

摘要

Owing to the high penetration of electrical energy from wind energy conversion systems (WECSs), some countries are enforcing stringent grid codes to regulate low-voltage-ride-through (LVRT) operation of WECSs. This study presents a self-tuning resonant control (RC) system which can be used for LVRT control of the grid interface in the presence of symmetrical or asymmetrical faults. Only two RCs are required to fully control the four degrees of freedom of the converter output current. Sequence component separation is achieved using a new fast-convergence delayed signal cancellation method which is also discussed in this work. The mathematical analysis and design procedure of the control system are presented. Simulation and experimental results obtained from a 3 kW prototype are discussed in this study.
机译:由于来自风能转换系统(WECS)的电能的高度渗透,一些国家正在执行严格的电网法规以规范WECS的低电压穿越(LVRT)运行。这项研究提出了一种自调谐谐振控制(RC)系统,该系统可在存在对称或非对称故障的情况下用于电网接口的LVRT控制。只需两个RC即可完全控制转换器输出电流的四个自由度。使用一种新的快速收敛延迟信号消除方法可以实现序列成分的分离,该方法也在本文中进行了讨论。介绍了控制系统的数学分析和设计过程。本研究讨论了从3 kW原型获得的仿真和实验结果。

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