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Fixed-frequency zero-voltage switched low-cost single phase high quality rectifier circuits with minimum voltage stress across the switches

机译:固定频率零电压开关低成本单相高质量整流器电路,具有跨开关的最小电压应力

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This paper presents a family of circuits for single-phase diode rectifiers capable of drawing approximately sinusoidal current waveforms at unity power factor with high efficiency and minimum voltage stress across the switches. Moreover, they are suitable to work as boost and flyback power converters. These topologies use coupled inductors with capacitors for resonance to achieve zero voltage switching (ZVS) of the converters. The circuits consist of a single-phase diode bridge rectifier, followed by a boost stage containing two switches-the main switch for controlling the output DC voltage and the auxiliary switch for achieving ZVS. The output voltage is regulated by employing fixed frequency control. The paper explains the principle of operation and describes the analysis of each mode of operation for both boost and flyback converters. It also gives design criteria, derived from the mathematical analysis carried out, for achieving ZVS under all loading conditions from no load to full load. The simulation results obtained using PSPICE demonstrate the validity of the proposed power converters.
机译:本文介绍了一种家庭为单相能够以单位功率因数,效率高,开关两端的最小电压应力绘制近似正弦电流波形的二极管整流器电路。此外,它们适合工作的升压和反激式电源转换器。这些拓扑结构使用耦合电感器与电容器的谐振,以实现转换器的零电压开关(ZVS)。该电路由一个单相二极管桥式整流器,然后是包含两个开关-主开关,用于控制输出的直流电压和用于实现ZVS辅助开关升压级的。输出电压通过采用固定频率控制进行调节。本文介绍了工作原理,并描述了升压和反激式转换器的每个操作模式的分析。这也给了设计标准,从数学分析得出进行,从空载实现所有负载条件下ZVS至满负荷。使用PSPICE获得仿真结果表明,所提出的电源转换器的有效性。

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