Boost-Buck power factor correction converter with integrated different current control methods

P. Mao, H. Jia, Chuanyim Wang, Ming Xu
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引用次数: 6

Abstract

Working principle of single-phase Boost-cascaded Boost-Buck(BoCBB) power factor correction converter is analyzed. On this basis, a new nonlinear current control method for buck converter is presented first, and a novel integrated control strategy constituting average current mode control and the above nonlinear current control method is proposed for BoCBB converter. With this control strategy, the BoCBB converter can work as a simple boost or a simple buck converter as required. That is, when the input voltage is lower than the output voltage, BoCBB works as a boost converter and the average current control method is used, and when the input voltage is higher than the output voltage, BoCBB works as a buck converter and the above nonlinear current control method is used. Compared with the traditional control scheme that the first-stage boost converter and second-stage buck converter are controlled independently, both the switching loss and voltage stress of the BoCBB can be reduced markedly, and the input current can be controlled more effectively not only in boost work mode, but also in buck work mode. Control diagram is given in this paper, and a 1.5kW rated single-phase boost-buck converter prototype controlled with digital signal processor (DSP) TMS28027 is built to verify the theoretical analysis. Experimental results shows that the output voltage can be regulated at a given value which is lower than peak line voltage, the input current can also be controlled into a sinusoidal waveform, and unit power factor is achieved meanwhile.
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集成了不同电流控制方法的升压-降压功率因数校正转换器
分析了单相升压级联升压降压(BoCBB)功率因数校正变换器的工作原理。在此基础上,提出了一种新的buck变换器非线性电流控制方法,并针对BoCBB变换器提出了一种将平均电流模式控制与上述非线性电流控制方法相结合的综合控制策略。使用这种控制策略,BoCBB转换器可以根据需要作为简单的升压转换器或简单的降压转换器工作。即当输入电压低于输出电压时,BoCBB作为升压变换器,采用平均电流控制方法;当输入电压高于输出电压时,BoCBB作为降压变换器,采用上述非线性电流控制方法。与传统的第一级升压变换器和第二级降压变换器独立控制的控制方案相比,BoCBB的开关损耗和电压应力都明显降低,并且在升压工作模式和降压工作模式下都能更有效地控制输入电流。本文给出了控制框图,并搭建了一个由数字信号处理器(DSP) TMS28027控制的1.5kW额定单相升压变换器样机来验证理论分析。实验结果表明,该系统可以将输出电压调节到低于线路峰值电压的给定值,并将输入电流控制成正弦波形,同时实现了单位功率因数。
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