Virtual-Flux based Active Power Filter for Power Quality Improvement

F. Mulolani
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引用次数: 1

Abstract

This paper presents the application of virtual-flux based control to a shunt active power filter (APF). The shunt active power filter is controlled using virtual-flux based direct power control with space vector modulation (DPC-SVM). The control is implemented with a virtual-flux estimator in place of the grid voltage sensors. The instantaneous power theory is used to estimate the required compensation reactive power, and to estimate the controlled powers of the APF. The virtual-flux estimation is performed using the second order generalized integrator (SOGI), and a virtual-flux phase-locked loop ensures robust grid synchronization of the APF. Simulation results show that when the APF is connected in parallel with a diode rectifier, it improves the quality of the current drawn from the source. The total harmonic distortion (THD) of the source current improved from 26.75% without the APF to 8.95% with the APF.
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基于虚拟磁链的电能质量改进有源滤波器
提出了一种基于虚拟磁链的并联有源电力滤波器控制方法。采用基于虚拟磁链的空间矢量调制直接功率控制(DPC-SVM)对并联有源电力滤波器进行控制。采用虚拟磁链估计器代替电网电压传感器实现控制。利用瞬时功率理论估计所需的补偿无功功率,并估计有源滤波器的控制功率。虚拟通量估计采用二阶广义积分器(SOGI)进行,虚拟通量锁相环保证了有源滤波器的鲁棒网格同步。仿真结果表明,当有源滤波器与二极管整流器并联时,可提高从源输出的电流质量。源电流的总谐波失真(THD)由未加有源滤波器时的26.75%提高到加有源滤波器后的8.95%。
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