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A Comparative Study of Two PWM Techniques for Single-Phase Shunt Active Power Filters Employing Direct Current Control Strategy

机译:采用直流控制策略的单相分流有源电力滤波器两种PWM技术的比较研究

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This paper presents an experimental evaluation oftwo Pulse-Width-Modulation (PWM) control techniques applied to a Single Phase Shunt Active Power Filter (SPSAPF). A direct current control strategy is implemented using a Standard PWM (S-PWM) and a Modified PWM (M-PWM) in order to compensate the current harmonics and the reactive power generated by a nonlinear load. The M-PWM control technique is based on two comparisons of a triangular high frequency carrier signal with a low frequency modulating signal (that represents the load current harmonics) and its opposite. The M-PWM shifts the first significant harmonics rays towards twice the switching frequency, and eliminates the spectral rays that are centered on the odd multiples of the switching frequency. Furthermore, it is shown that, for a M-PWM, the losses of the active filter are four times smaller than when using a S-PWM. Simulation and experimental results are presented to verify the better performance of the M-PWM over the S-PWM in terms of the Total Harmonic Distortion (THD) of the source current and the reactive power compensation.
机译:本文介绍了对单相分流有源电力滤波器(SPSAPF)的脉冲宽度调制(PWM)控制技术的实验评估。使用标准PWM(S-PWM)和改进的PWM(M-PWM)来实现直流控制策略,以补偿电流谐波和由非线性负载产生的无功功率。 M-PWM控制技术基于具有低频调制信号的三角形高频载波信号的两个比较(表示负载电流谐波)及其相对。 M-PWM将第一个显着的谐波射向切换频率的两倍,并消除了以开关频率的奇数倍数为中心的光谱光线。此外,示出了,对于M-PWM,有源滤波器的损耗小于使用S-PWM时小的四倍。提出了模拟和实验结果,以验证M-PWM在源电流的总谐波失真(THD)方面更好地性能和无功补偿。

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