晶体管
压力(语言学)
电压
材料科学
电气工程
充电泵
电容器
电子工程
光电子学
工程类
语言学
哲学
作者
Saeed Pourjafar,Tala Hemmati Shahsavar,Seyed Majid Hashemzadeh,Oleksandr Husev,Oleksandr Matiushkin,Dmitri Vinnikov
标识
DOI:10.1109/tie.2024.3383025
摘要
Based on the coupled inductor and voltage multiplier cells (VMCs), a nonisolated ultrahigh step-up dc–dc converter topology is presented in this article. The secondary side of the coupled inductor is paired with VMC in order to raise the output voltage. Therefore, a higher voltage gain with lower duty cycles is achieved by combining the coupled inductor and VMC approach, thus enhancing the overall robustness of the system. In addition, VMCs suppress the peak voltages across the power switches that leads to mitigate the maximum voltage throughout the switches intensively. Continuous input current with lower ripple and ultrahigh voltage gain with very low voltage stress over the semiconductors are the main benefits of the suggested topology. A comprehensive discussion of the proposed converter's operational modes, steady-state performance, design process, and a comparison with other similar converters have been provided in this literature. Moreover, to illustrate the converter's performance, an experimental prototype with a 240 W rating power, input voltage range of 14–60 V, and output voltage of 350 V at a switching frequency of 60 kHz was constructed, and the outcomes of the experiment are showcased.
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