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Analysis and Design of A Single-Stage ZCS Quasi-Resonant AC/DC Converter with Low DC Link Capacitor Voltage

机译:具有低直流链路电容器电压的单级ZCS准谐振AC / DC转换器的分析和设计

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摘要

An analysis and design of a single-stage zero-current-switching(ZCS) quasi-resonant ac/dc converter with low de-link capacitor voltage is presented. It has many advantages such as simple circuit, cost-effective, and high power density for low power applications. The proposed converter can effectively reduce the voltage stress on the dc link capacitor and can achieve the power factor correction(PFC) without a dead band at line zero-crossings, which improves the harmonic distortion in ac line current. Furthermore, it is possible to reduce the power loss of a semiconductor power switch by making use of zero-current switching quasi-resonant operation. Theoretical analysis of the converter is presented and design guidelines for selecting circuit components are given. The experimental results on a 75 W(15 V, 5 A) maximum switching frequency of 300 kHz show that maximum de-link capacitor voltage and maximum efficiency are 446 V and 78 %, respectively. The power factor is above 0.96 under universal line input.
机译:提出了一种具有低去链电容器电压的单级零电流开关(ZCS)准谐振AC / DC转换器的分析和设计。它具有许多优势,例如,电路简单,具有成本效益,并且在低功率应用中具有高功率密度。所提出的转换器可以有效降低直流链路电容器上的电压应力,并且可以实现功率因数校正(PFC),而不会在线路零交叉处出现死区,从而改善了交流线路电流中的谐波失真。此外,可以通过利用零电流开关准谐振操作来减少半导体功率开关的功率损耗。给出了转换器的理论分析,并给出了选择电路元件的设计指南。 75 W(15 V,5 A)最大开关频率300 kHz的实验结果表明,最大去链电容器电压和最大效率分别为446 V和78%。在通用线路输入下,功率因数高于0.96。

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