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Performance of a grid-connected wind generation system with a robust susceptance controller

机译:具有鲁棒电纳控制器的并网风力发电系统的性能

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Wind turbine driven induction generators are vulnerable to transient disturbances like wind gusts and low voltages on the system. The fixed capacitor at the generator terminal or the limited support from the grid may not be able to provide the requisite reactive power under these abnormal conditions. This paper presents a susceptance control strategy for a variable speed wound-rotor induction generator which can cater for the reactive power requirement. The susceptance is adjusted through a robust feedback controller included in the terminal voltage driven automatic excitation control circuit. The fixed parameter robust controller design is carried out in frequency domain using multiplicative uncertainty modeling and H_∞ norms. The robustness of the controller has been evaluated through optimally tuned P1D controllers. Simulation results show that the robust controller can effectively restore normal operation following emergencies like sudden load changes, wind gusts and low voltage conditions. The proposed robust controller has been shown to have adequate fault ride through capabilities in order to be able to meet connection requirements defined by transmission system operators.
机译:风力涡轮机驱动的感应发电机易受瞬态干扰(如阵风和系统上的低压)的影响。在这些异常情况下,发电机端子处的固定电容器或电网的有限支撑可能无法提供必要的无功功率。本文提出了一种可满足无功功率要求的变速绕线转子感应发电机的电纳控制策略。电导率通过端子电压驱动的自动励磁控制电路中包含的强大反馈控制器进行调整。使用乘法不确定性建模和H_∞范数在频域中执行固定参数鲁棒控制器设计。控制器的鲁棒性已通过最佳调整的P1D控制器进行了评估。仿真结果表明,鲁棒的控制器可以在突发负载变化,阵风和低压情况等紧急情况下有效恢复正常运行。已经证明,所提出的鲁棒控制器具有足够的故障穿越能力,以便能够满足传输系统操作员定义的连接要求。

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