近等功率因数单相梯形交流电源的分析与设计

N. Kaushik, P. Jain, G. Joós
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引用次数: 0

摘要

用于光纤/同轴电缆供电的单相交流电源要求产生梯形波形。所提出的转换器拓扑结构具有以下主要特征:(a)一个小的直流母线电容器,导致直流母线具有非常大的120 Hz分量;(b)基于复位积分控制技术的在线瞬时压控前馈PWM模式发生器,其中PWM调制功能与直流母线纹波同步;梯形输出电压符合纹波的包络线,从而最大限度地利用电压;(c)输入电流在整个周期内流动,产生低总体失真和高功率因数。给出了一种基于单周期复位积分PWM模式发生器的电源和控制方案的电源电路实现,该电源和控制方案需要产生梯形输出电压。单周期复位积分控制技术在功率因数(PF)、总谐波失真(THD)和效率(/spl eta/)方面产生了最佳的总体结果。本文给出了实现该电源所需的详细分析和设计曲线。导出了通过电容器和输入交流线路的电流均方根值的解析表达式。通过一个设计实例,说明了电源和控制电路元件的选择和速率的设计过程。最后,对理论和仿真结果进行了实验验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis and design of a near unity power factor single phase trapezoidal AC power supply
Single phase AC power supplies used for powering optical fiber/coax cable are required to generate trapezoidal-shaped waveform. The proposed converter topology has the following main features: (a) a small DC bus capacitor resulting in a DC bus having a very large 120 Hz component; (b) an on-line instantaneous voltage controlled feedforward PWM pattern generator, based on reset integral control technique, in which the PWM modulating function is synchronized with the DC bus ripple; the trapezoidal output voltage fits within the envelope of the ripple, leading to maximum voltage utilization; and (c) the input current flows during the complete period which yields low overall distortion and high power factor. A power circuit realization of the proposed power supply and control scheme based on the one-cycle reset integral PWM pattern generator, required to produce a trapezoidal output voltage is shown. The one-cycle reset integral control technique produced the best overall results in terms of power factor (PF), total harmonic distortion (THD) and efficiency (/spl eta/). This paper presents detailed analysis and design curves that are required to implement the proposed power supply. The analytical expression for the RMS value of the current through the capacitor and input AC line are derived. A design procedure to select and rate components of the power and control circuit is illustrated by means of a design example. Finally, the theoretical and simulated results presented are experimentally verified.
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