三相四线并联有源电力滤波器的三电平迟滞控制,用于不平衡非刚性源下的谐波补偿

K. Srinivas, S. Tulasi Ram
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引用次数: 4

摘要

本文提出了三相四线并联有源电力滤波器(APF)的控制算法,用于补偿不平衡和非线性负载。该控制算法在MAT LAB环境下实现,以改善配电系统的电能质量。该算法利用瞬时对称分量理论,在源电压不平衡和非刚性的假设下,提取电源电压的正序列以产生参考补偿器电流。采用脉宽调制电流控电压源逆变器实现有源电力滤波器。VSI的开关信号通过所提出的三电平滞后电流控制器产生。仿真结果表明,并联型有源滤波器能有效地补偿共耦合点的供电电流谐波和无功功率。
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Three level hysteresis control of 3-phase, 4-wire shunt active power filter for harmonic compensation under unbalanced non stiff source
In this paper the proposed control algorithm for three phase four wire shunt active power filter (APF) compensate the unbalanced and non-linear loads. The control algorithm is implemented in MAT LAB environment to improve the power quality in distribution system. In this algorithm the theory of instantaneous symmetrical component used to extract a positive sequence of supply voltage to generated reference compensator currents under the assumptions of unbalanced and non stiff source voltages. The active power filter is implemented with pulse width modulation based current controlled voltage source inverter. The switching signals for VSI are generated through proposed three level hysteresis current controllers. The simulation results showing that the shunt active power filter is effectively compensating the supply current harmonics and reactive power at the point of common coupling.
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