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Three-phase Half-controlled Boost PFC Rectifier With New Variable Duty Cycle Control

机译:具有新型可变占空比控制的三相半控升压PFC整流器

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Converters operating in discontinuous-conduction-mode and using the bridgeless technique can offer rectification and elevation of voltage in high frequency, also can offer better efficiency when compared to the conventional single-switch boost power-factor-correction converter. In this conduction mode, the input current naturally follows a sinusoidal envelope, dispensing current sensors of use. Some these advantages are inherent to the converter operating mode, as the zero-current-switching during the turn-on of the switches, the simplicity of control system and the lower cost. However, the discontinuous-conduction-mode operation with constant duty cycle control leads to a high harmonic content of current in low frequency, limiting the converters applications and may exceed the limits imposed by international standards. This paper presents the analysis and experimental results of the three-phase bridgeless boost converter with new variable duty cycle control, operating in discontinuous-conduction-mode. In this configuration, the current stress in semiconductors are divided and, a single pulse is necessary for switch conduction. The results proved that occurs power factor correction with harmonic current content reduction of input current in low frequency.
机译:与传统的单开关升压功率因数校正转换器相比,以不连续导通模式运行并使用无桥技术的转换器可以提供高频的整流和电压升高,还可以提供更高的效率。在这种传导模式下,输入电流自然遵循正弦曲线包络,从而分配使用的电流传感器。其中一些优点是转换器工作模式所固有的,例如,在开关导通期间进行零电流开关,控制系统简单且成本较低。但是,具有恒定占空比控制的不连续导通模式操作会导致低频电流的高谐波含量,从而限制了转换器的应用,并可能超过国际标准的限制。本文介绍了具有新型可变占空比控制,以非连续导通模式工作的三相无桥升压转换器的分析和实验结果。在这种配置中,半导体中的电流应力被分割,并且对于开关导通而言,单个脉冲是必需的。结果证明,在低频输入电流的谐波电流含量减少的情况下,可以进行功率因数校正。

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