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Passivity-based controller for harmonic compensation in distribution lines with nonlinear loads

机译:基于控制的控制器,用于非线性负载的分配线路谐波补偿

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This paper explores a passivity-based control scheme for active power filters that are used not only for the compensation of specific thyristor or diode rectifiers, but also for more general loads. Such loads may include, for example, power factor capacitors or may have unknown dynamics. To provide an alternative to existing solutions, which often lead to unstable operation in demanding applications, the authors investigate the effectiveness of a family of passivity-based controllers using on frequency-domain modeling of the system dynamics. Following the passivity-based design procedure, they first obtain a compensation strategy that allows stable active filter operation regardless of line and load parameter variations. Secondly, to ensure precise tracking for the selected harmonics, the develop an adaptive procedure which allows (under varying degrees of approximation) to estimate line and load parameters. Finally a comparison with a linear controller suggested by their passivity-based control structure shows the advantages of the proposed solution. Simulation results are presented which confirm effectiveness of the proposed controller.
机译:本文探讨了用于有源电力滤波器的基于控制的控制方案,不仅用于补偿特定晶闸管或二极管整流器,而且用于更一般的负载。这种载荷可以包括例如功率因数电容器或者可能具有未知的动态。为了提供现有解决方案的替代方案,该解决方案通常会导致苛刻的应用程序中的不稳定操作,作者调查了一种基于频道的控制器系列使用系统动态的频域建模的效果。在基于被动的设计过程之后,他们首先获得补偿策略,这些策略允许稳定的主动滤波器操作,而不管线条和加载参数变化如何。其次,为了确保对所选谐波进行精确跟踪,开发一种自适应过程,其允许(在不同程度的近似)以估计线和负载参数。最后与基于控制的控制结构建议的线性控制器的比较显示了所提出的解决方案的优点。提出了仿真结果,其确认了所提出的控制器的有效性。

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