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Kalman filter based grid impedance estimating for harmonic order scheduling method of active power filter with output LCL filter

机译:具有输出LCL滤波器的有源电力滤波器谐波阶次调度方法的基于卡尔曼滤波器的电网阻抗估计

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The control of an active power filter (APF) with LCL-filter is affected by variable inductance present in the power line of the grid. The variation of impedance will impacts the resonance frequency and system bandwidth. Therefore, the exact measurement of the grid impedance is necessary. Real-time estimation of the equivalent grid impedance by means of extended Kalman filter is addressed. The theoretical background of the extended Kalman filter used for equivalent grid impedance estimation is introduced. Using the estimated impedance and other known parameters to quantitative calculate the system cross over frequency and system resonant frequency caused by LCL-filter. Taking these limitations into account, this paper presents a reliable method to determine the maximum order of harmonic current need to be compensated. The overall system stability and harmonic compensation under different power grid conditions are guaranteed through this method. The theoretical analysis is verified on a 65kVA three-phase shunt APF.
机译:带有LCL滤波器的有源功率滤波器(APF)的控制会受到电网电源线中存在的可变电感的影响。阻抗的变化将影响谐振频率和系统带宽。因此,必须精确测量电网阻抗。解决了通过扩展卡尔曼滤波器对等效电网阻抗的实时估计。介绍了用于等效电网阻抗估计的扩展卡尔曼滤波器的理论背景。使用估计的阻抗和其他已知参数来定量计算由LCL滤波器引起的系统交叉频率和系统谐振频率。考虑到这些限制,本文提出了一种可靠的方法来确定需要补偿的谐波电流的最大阶数。通过这种方法可以保证系统在不同电网条件下的整体稳定性和谐波补偿。在65kVA三相并联APF上验证了理论分析。

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