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ZCS-PWM boost rectifier with high power factor and low conduction losses

机译:具有高功率因数和低传导损耗的ZCS-PWM升压整流器

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摘要

A new single-phase high power factor rectifier is proposed, which features regulation by conventional pulsewidth modulation (PWM), soft commutation, and instantaneous average line current control. A new zero-current-switching PWM (ZCS-PWM) auxiliary circuit is configured in the presented ZCS-PWM rectifier to perform ZCS in the switches and zero-voltage-switching (ZVS) in the diodes. Furthermore, soft commutation of the main switch is achieved without additional current stress by the presented ZCS-PWM auxiliary circuit. A significant reduction in the conduction losses 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 and 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. Seven transition states for describing the behavior of the ZCS-PWM rectifier in one switching period are described. The PWM switch model is used to predict the system performance. A prototype rated at 1 kW, operating 60 kHz, with an input ac voltage of 220 Vrms and an output voltage 400 Vdc has been implemented in laboratory. An efficiency of 97.2% and power factor near 0.99 has been measured. The analysis and design of the control circuitry are also presented.
机译:提出了一种新型的单相高功率因数整流器,该整流器具有通过常规脉冲宽度调制(PWM)进行调节,软换相和瞬时平均线电流控制的功能。在提出的ZCS-PWM整流器中配置了新的零电流开关PWM(ZCS-PWM)辅助电路,以在开关中执行ZCS,在二极管中执行零电压开关(ZVS)。此外,通过提出的ZCS-PWM辅助电路可实现主开关的软整流,而不会产生额外的电流应力。由于用于软开关的循环电流仅流过辅助电路,并且循环电流路径中涉及的开关设备数量最少,并且所建议的整流器使用单个转换器代替传统的整流器,因此可以显着降低传导损耗配置由一个四二极管前端整流器和一个升压转换器组成。描述了七个过渡状态,用于描述一个开关周期内ZCS-PWM整流器的行为。 PWM开关模型用于预测系统性能。在实验室中已经实现了一个额定值为1 kW,工作频率为60 kHz,输入交流电压为220 Vrms,输出电压为400 Vdc的原型。已测得效率为97.2%,功率因数接近0.99。还介绍了控制电路的分析和设计。

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