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Design of a bridgeless PFC with Line-Modulated Fixed Off-Time current control and zero-voltage switching

机译:具有线路调制固定的关闭时间电流控制和零电压切换的无灰度PFC的设计

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In this paper, the Line-Modulated Fixed Off-Time method is used as the current control strategy for a Power Factor Corrector (PFC) pre-regulator. A zero voltage switching PWM (ZVS-PWM) auxiliary circuit is configured to perform ZVS in the switches. Soft commutation of the main switch is achieved without additional current stress. A significant reduction in the total conduction loss is achieved, since the circulating current for the soft switching flows only through the auxiliary circuit and a minimum number of switching devices are involved in the circulating current path. The proposed rectifier uses a single converter instead of the conventional configuration composed of a four-diode front-end rectifier followed by a boost converter. A 250W, with an input ac voltage of 90–265 Vrms, output voltage of 400 Vdc and switching frequency of 100 kHz is designed and simulated to verify the system performance.
机译:在本文中,使用线路调制的固定关闭时间方法作为功率因数校正器(PFC)预调节器的电流控制策略。零电压切换PWM(ZVS-PWM)辅助电路被配置为在交换机中执行ZV。无需额外的电流应力,实现主开关的软换向。实现总导通损耗的显着降低,因为软切换的循环电流仅通过辅助电路流动,并且最小数量的开关装置涉及循环电流路径。所提出的整流器使用单个转换器代替由四二极管前端整流器组成的传统配置,然后是升压转换器。 A 250W,输入交流电压为90-265 VRMS,400 VDC的输出电压和100kHz的开关频率设计和模拟以验证系统性能。

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