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A Digital Pulse Train Controlled High Power Factor DCM Boost PFC Converter Over a Universal Input Voltage Range

机译:通用输入电压范围内的数字脉冲序列控制的高功率因数DCM Boost PFC转换器

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In this paper, a digital-based pulse train (PT) control technique for a boost power factor correction (PFC) converter operating in a discontinuous conduction mode (DCM) is presented, which can achieve nearly unity power factor (PF) over a universal input voltage range. Different from traditional digital control techniques, which usually require complex arithmetic operations, the digital-based PT control technique only needs a simple operation. Besides, a DCM boost PFC converter with digital PT control can operate at a high switching frequency, which is less dependent on the processing speed of a digital controller. Thus, the proposed control strategy can be implemented with general purpose digital controllers, such as low-speed and low-cost microcontroller unit, for the DCM boost PFC converter where the cost is a focus. The operation principle of the digital PT controlled DCM boost PFC converter is analyzed. Experimental results are provided, which show that high PF and low input current total harmonic distortion can be maintained over a universal input voltage range of 90–264 V ac.
机译:本文提出了一种用于基于不连续传导模式(DCM)的升压功率因数校正(PFC)转换器的基于数字的脉冲序列(PT)控制技术,该技术可在通用范围内实现近乎统一的功率因数(PF)输入电压范围。与传统的数字控制技术通常需要复杂的算术运算不同,基于数字的PT控制技术仅需要简单的运算即可。此外,具有数字PT控制的DCM升压PFC转换器可以在较高的开关频率下运行,而该开关频率对数字控制器的处理速度的依赖性较小。因此,对于以成本为重点的DCM升压PFC转换器,可以使用通用数字控制器(例如低速和低成本微控制器单元)来实现所提出的控制策略。分析了数字PT控制的DCM升压PFC转换器的工作原理。提供的实验结果表明,在90-264 V交流的通用输入电压范围内,可以保持高PF和低输入电流的总谐波失真。

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