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A control strategy for the stable operation of shunt active power filters in power grids

机译:电网并联有源电力滤波器稳定运行的控制策略

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This paper introduces a control strategy for the assessment of SAPF (shunt active power filters) role in the electrical power networks. The proposed control scheme is based on the Lyapunov control theory and defines a stable operating region for the interfaced converter during the integration time with the utility grid. The compensation of instantaneous variations of reference current components in the control loop of SAPF in ac-side, and dc-link voltage oscillations in dc-side of the proposed model, is thoroughly considered in the stable operation of interfaced converter, which is the main contribution of this proposal in comparison with other potential control approaches. The proposed control scheme can guarantee the injection of all harmonic components of current and reactive power of grid-connected loads, with a fast dynamic response that results in a unity power factor between the grid currents and voltages during the integration of SAPF into the power grid. An extensive simulation study is performed, assessing the effectiveness of the proposed control strategy in the utilization of SAPF in power networks. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种控制策略,用于评估电力网络中SAPF(并联有源滤波器)的作用。所提出的控制方案基于李雅普诺夫控制理论,并在与公用电网的集成时间内为接口转换器定义了稳定的工作区域。在接口转换器的稳定运行中,已充分考虑了所提出模型的SAPF控制回路中交流侧的参考电流分量瞬时变化的补偿以及直流侧中的直流链路电压振荡的补偿,这是主要的解决方案。与其他潜在控制方法相比,该提案的贡献。所提出的控制方案可以保证注入电网连接负载的电流和无功功率的所有谐波分量,并具有快速的动态响应,从而在将SAPF集成到电网中时在电网电流和电压之间产生统一的功率因数。进行了广泛的仿真研究,评估了所提出的控制策略在电网中利用SAPF的有效性。 (C)2015 Elsevier Ltd.保留所有权利。

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