Power quality improvement with shunt active filter under various mains voltage using Teaching Learning Based optimization

Soumya Mishra, P. K. Ray
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Abstract

In this paper, instantaneous reactive power theory based a modified control algorithm is implemented for 3-phase 3-wire shunt active power filter to suppress harmonics and reactive power under non ideal source voltage. The reference current signals are generated by sensing the source voltage, load current and dc bus voltage. With these signals the gate driving pulses are generated via hysteresis band current controller. To check robustness of the control algorithm four different cases such as unbalanced, balanced distorted, unbalanced distorted main voltage and faults on load are considered. For more improvement in the performance of active filter, the Active filter is optimized with Teaching-Learning-Based optimization. The simulation work is carried out in MATLAB/SIMULINK Power system block set. The performance of the implemented algorithm with Teaching-Learning-Based optimization is found quite effective and satisfactory under these conditions.
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采用基于教与学的优化方法改善不同市电电压下并联有源滤波器的电能质量
本文提出了一种基于改进控制算法的瞬时无功理论,实现了三相三线并联有源滤波器在非理想电压下的谐波和无功抑制。参考电流信号是通过感应源电压、负载电流和直流母线电压产生的。利用这些信号通过磁滞带电流控制器产生栅极驱动脉冲。为了验证控制算法的鲁棒性,考虑了主电压不平衡、平衡畸变、不平衡畸变和负载故障四种情况。为了进一步提高有源滤波器的性能,对有源滤波器进行了基于教学的优化。仿真工作在MATLAB/SIMULINK Power系统模块集中进行。在这些条件下,采用基于教学的优化方法实现的算法的性能是非常有效和令人满意的。
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