AbstractThis paper proposes the design of a multivariable robust control strategy for a variable-speed WECS bas'/> Multivariable control of a grid-connected wind energy conversion system with power quality enhancement
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Multivariable control of a grid-connected wind energy conversion system with power quality enhancement

机译:提高电能质量的并网风能转换系统的多变量控制

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AbstractThis paper proposes the design of a multivariable robust control strategy for a variable-speed WECS based on a SCIG. Optimal speed control of the SCIG is achieved by a conventional PI controller combined with a MPPT strategy. DTC-SVM technique based on a simple Clarke transformation is used to control the generator-side three-level converter in the variable speed WECS. The flow of real and reactive power between the inverter and the grid is controlled via the grid real and reactive currents and the DC link voltage using multivariable H$$_{infty }$$control. The overall WECS and control scheme are developed in Matlab/Simulink and the performance of the proposed control strategy is evaluated via a set of simulation scenarios replicating various operating conditions of the WECS such as variable wind speed and asymmetric single grid faults. The power quality of the WECS system under H$$_{infty }$$control control approach is assessed and the results show a significant improvement in the total harmonic distorsion as compared to that achieved with a classical PI control.
机译: Abstract 本文提出了变速可变多变量鲁棒控制策略的设计基于SCIG的WECS。 SCIG的最佳速度控制是通过将常规PI控制器与MPPT策略结合使用来实现的。基于简单Clarke变换的DTC-SVM技术用于控制变速WECS中的发电机侧三电平转换器。使用多变量H $$ _ {infty} $$ <数学xmlns:xlink =“ http://www.w3.org/1999/xlink”> < / EquationSource> 控件。在Matlab / Simulink中开发了整个WECS和控制方案,并通过一组模拟方案评估了所提出的控制策略的性能,该方案模拟了WECS的各种运行条件,例如可变风速和不对称单网故障。在H $$ _ {infty} $$ <数学xmlns:xlink =“ http://www.w3.org/ 1999 / xlink“> 控件控制方法进行了评估,结果表明该控件的控制效果显着改善总谐波失真与经典PI控制相比。

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