A Single-Switch High-Voltage-Gain DC–DC Converter With Reduced Switch Voltage Stress

Burle Tulasi Rao;Dipankar De
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引用次数: 5

Abstract

In this article, a novel single-switch high-voltage-gain dc–dc converter is presented. The proposed converter is operated with continuous input current, and the voltage stress across the power switch is lower compared to the competitive high-voltage-gain topologies. Hence, a lower rating active switch can be selected for the proposed configuration to achieve reduced conduction losses due to its low on -state resistance of the switch. The leakage energy of the coupled inductor is effectively recycled to the load through the voltage multiplier used in the topology. The voltage stress across the power diode at the output side is low, and hence, there is an improvement in the output-side reverse recovery performance. Moreover, the proposed topology has reduced aggregate diode voltage stress. A detailed comparative study consisting of steady-state analysis, working principle, and efficiency and reliability evaluation of the proposed converter for the continuous conduction mode is presented. The proposed concept is verified through extensive simulation studies and from the measured results from the experimental prototypes.
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降低开关电压应力的单开关高压增益DC-DC转换器
本文提出了一种新型的单开关高压增益直流-直流变换器。所提出的转换器在连续输入电流的情况下运行,并且与竞争性的高电压增益拓扑相比,功率开关两端的电压应力更低。因此,可以为所提出的配置选择额定值较低的有源开关,以由于其开关的低导通状态电阻而实现降低的导通损耗。耦合电感器的泄漏能量通过拓扑中使用的电压倍增器有效地循环到负载。输出侧的功率二极管两端的电压应力较低,因此,输出侧反向恢复性能有所改善。此外,所提出的拓扑结构降低了二极管的总电压应力。对所提出的连续导通模式转换器的稳态分析、工作原理、效率和可靠性评估进行了详细的比较研究。通过广泛的模拟研究和实验原型的测量结果验证了所提出的概念。
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