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A simple scheme for unity power-factor rectification for high frequency AC buses

机译:高频交流母线统一功率因数整流的简单方案

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A simple scheme is proposed for offline unity power factor rectification for high-frequency AC buses (20 kHz). A bandpass filter of the series-resonant type, centered at the line frequency, is inserted between the line and the full-wave rectified load. The Q=Z/sub 0//R/sub L/ formed by the load and the characteristic impedance of the tank circuit determines the power factor, the boundary between continuous and discontinuous conduction modes, the peak stresses, and the transient response of the rectifier. It is shown that for Q<2/ pi the rectifier operates in continuous conduction mode and the output voltage is independent of the load. Also, it is shown that for Q<2 the line current is nearly sinusoidal with less than 5% third-harmonic distortion and the power factor is essentially unity. An increase in Q causes an increase in the peak voltages of the tank circuit and a slower transient response of the rectifier circuit. The DC, small-signal, and transient analyses of the rectifier circuit are carried out, and the results are in good agreement with simulation and experimental results.
机译:提出了一种简单的方案,用于高频交流母线(20 kHz)的离线单位功率因数整流。在线路和全波整流负载之间插入一个以线路频率为中心的串联谐振型带通滤波器。由负载和振荡电路的特性阻抗形成的Q = Z / sub 0 // R / sub L /决定了功率因数,连续和不连续导通模式之间的边界,峰值应力以及瞬态响应。整流器。结果表明,对于Q <2 / pi,整流器以连续导通模式工作,并且输出电压与负载无关。此外,还表明,对于Q <2,线电流几乎为正弦曲线,三次谐波失真小于5%,并且功率因数基本上为1。 Q的增加导致谐振电路的峰值电压增加,整流电路的瞬态响应变慢。对整流器电路进行了直流,小信号和瞬态分析,结果与仿真和实验结果吻合良好。

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