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Modified Interleaved Current Sensorless Control for Three-Level Boost PFC Converter With Considering Voltage Imbalance and Zero-Crossing Current Distortion

机译:考虑电压不平衡和零交叉电流失真的三电平升压PFC转换器的交错电流修正无传感器控制

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摘要

The three-level boost power factor correction (PFC) converter has advantages of lower inductor current ripple and lower switch withstanding voltage compared with the boost PFC converter. Interleaved pulsewidth modulation had been used in the multiphase boost PFC converter. In the literature, interleaved current sensorless control (ICSC) for the multiphase boost PFC converters had been proposed. In this paper, the behavior of the three-level boost PFC converter is first analyzed. The results show that three-level converter has the same average equation as the interleaved boost PFC converter. Then, ICSC is modified for the three-level boost PFC converter with considering the voltage imbalance and the zero-crossing current distortion. The proposed modified ICSC (MICSC) is implemented in a field-programmable gate array board. Simulation results and experimental results are also provided to validate the proposed MICSC.
机译:与升压PFC转换器相比,三级升压功率因数校正(PFC)转换器具有更低的电感器电流纹波和更低的开关耐压的优势。交错式脉宽调制已用于多相升压PFC转换器中。在文献中,已经提出了用于多相升压PFC转换器的交错电流无传感器控制(ICSC)。本文首先分析了三级升压PFC转换器的行为。结果表明,三电平转换器具有与交错式升压PFC转换器相同的平均方程。然后,考虑到电压不平衡和过零电流失真,对三电平升压PFC转换器修改了ICSC。拟议的修改后的ICSC(MICSC)在现场可编程门阵列板上实现。仿真结果和实验结果也被提供来验证所提出的MICSC。

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