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Voltage ripple across the capacitor in DC side of shunt APF

机译:并联APF直流侧电容器两端的电压纹波

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Active Power Filter (APF) is an important power electronic device to compensate the load harmonic current so as to improve power quality of the system. Stability of voltage across the capacitor in DC side of APF is one of the key factors which determine the compensation effect. Therefore voltage ripple should be controlled within allowed range. This paper firstly deduced theoretical expressions of voltage ripple across the capacitor in DC side of APF caused by kth order harmonic current. Three-phase and single phase APF are considered respectively. Several simulations were carried out to verify the correctness of the expressions. Then voltage ripple caused by multi-order harmonic currents was deduced by superposition theorem. Corresponding simulations were also carried out to prove the theoretical results. Finally essential factors leading to voltage ripple were analyzed based on the above theoretical deductions and simulations. It was concluded that the ac components in the instantaneous power of AC side of APF were mostly responsible for the voltage ripple across the capacitor.
机译:有源电力滤波器(APF)是一种重要的电力电子设备,可以补偿负载谐波电流,从而提高系统的电能质量。 APF直流侧电容器两端电压的稳定性是决定补偿效果的关键因素之一。因此,电压纹波应控制在允许范围内。本文首先推导了由k阶谐波电流引起的APF直流侧电容器两端电压纹波的理论表达式。分别考虑了三相和单相APF。进行了几次模拟,以验证表达式的正确性。然后通过叠加定理推导了由多阶谐波电流引起的电压纹波。还进行了相应的仿真以证明理论结果。最后,基于上述理论推论和仿真,分析了导致电压纹波的基本因素。结论是,APF交流侧瞬时功率中的交流分量主要负责电容器两端的电压纹波。

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