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Continuous Conduction Mode Soft-Switching Boost Converter and its Application in Power Factor Correction

机译:连续导通模式软开关升压转换器及其在功率因数校正中的应用

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摘要

Continuous conduction mode (CCM) boost converters are commonly used in home appliances and various industries because of their simple topology and low input current ripples. However, these converters suffer from several disadvantages, such as hard switching of the active switch and reverse recovery problems of the output diode. These disadvantages increase voltage stresses across the switch and output diode and thus contribute to switching losses and electromagnetic interference. A new topology is presented in this work to improve the switching characteristics of CCM boost converters. Zero-current turn-on and zero-voltage turn-off are achieved for the active switches. The reverse-recovery current is reduced by soft turning-off the output diode. In addition, an input current sensorless control is applied to the proposed topology by pre-calculating the duty cycles of the active switches. Power factor correction is thus achieved with less effort than that required in the traditional method. Simulation and experimental results verify the soft-switching characteristics of the proposed topology and the effectiveness of the proposed input current sensorless control.
机译:连续传导模式(CCM)升压转换器因其简单的拓扑结构和低输入电流纹波而广泛用于家用电器和各种行业。但是,这些转换器具有几个缺点,例如,有源开关的硬开关和输出二极管的反向恢复问题。这些缺点增加了开关和输出二极管两端的电压应力,从而导致开关损耗和电磁干扰。在这项工作中提出了一种新的拓扑,以改善CCM升压转换器的开关特性。有源开关实现了零电流导通和零电压关断。通过软关断输出二极管可以减小反向恢复电流。另外,通过预先计算有源开关的占空比,将输入电流无传感器控制应用于建议的拓扑。因此,与传统方法相比,可以以更少的努力实现功率因数校正。仿真和实验结果验证了所提出的拓扑的软开关特性以及所提出的输入电流无传感器控制的有效性。

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