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首页> 外文期刊>Journal of circuits, systems and computers >Artificial Bee Colony Algorithm-Based Shunt Active Filter for Sinusoidal Supply and Trapezoidal Supply
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Artificial Bee Colony Algorithm-Based Shunt Active Filter for Sinusoidal Supply and Trapezoidal Supply

机译:基于人工蜂群算法的并联有源滤波器,用于正弦和梯形供电

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摘要

In this paper, a DC-link voltage tuning algorithm is introduced to control the shunt active filter (SAF) with sinusoidal and trapezoidal power supplies. The purpose of the proposed optimization algorithm is for tuning the PI controller and reducing the harmonics level. Artificial bee colony (ABC) algorithm is introduced for tuning the gain of the controller and the voltage variation of power converter by using PWM pulses. It regulates the DC-link voltage as per the signal harmonics and the active power loss of the system is reduced. Therefore, the accurate compensation current is injected by the SAF devices. The proposed ABC-PI controller-based harmonic compensation method is implemented in MATLAB/Simulink platform. Then, the Total Harmonic Distortion (THD) and the power factor are evaluated. The results of the proposed method are compared with PI controller and PSO-PI controller. The proposed method has fast DC-link voltage response, low THD and good power factor.
机译:本文介绍了一种直流链路电压调整算法,以控制具有正弦和梯形电源的并联有源滤波器(SAF)。提出的优化算法的目的是调整PI控制器并降低谐波水平。引入人工蜂群算法(ABC),利用PWM脉冲调节控制器的增益和功率转换器的电压变化。它根据信号谐波调节直流母线电压,从而降低了系统的有功功率损耗。因此,SAF设备注入了准确的补偿电流。提出的基于ABC-PI控制器的谐波补偿方法是在MATLAB / Simulink平台上实现的。然后,评估总谐波失真(THD)和功率因数。将该方法的结果与PI控制器和PSO-PI控制器进行了比较。该方法具有快速的直流母线电压响应,较低的THD和良好的功率因数。

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