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首页> 外文期刊>IEEE Transactions on Power Electronics >Analysis and Design of a High Power Density Flying-Capacitor Multilevel Boost Converter for High Step-Up Conversion
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Analysis and Design of a High Power Density Flying-Capacitor Multilevel Boost Converter for High Step-Up Conversion

机译:用于高升压转换的高功率密度飞电容多电平升压转换器的分析与设计

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This paper explores the use of the flying-capacitor multilevel (FCML) topology in high step-up conversion. Compared to the conventional two-level boost converter, the FCML topology utilizes high energy density capacitors to facilitate inductors with storing and transferring energy during the conversion process, which brings features, such as lower voltage stress on the switches, reduced voltage stress on the inductor, and high effective switching frequency at the switching node. As a result, the total volume of the passive components in the converter is greatly reduced while maintaining high efficiency at high voltage gain. To demonstrate the potential high power density and high efficiency, a hardware prototype that converts 100 V to 1 kV with 820-W maximum output power is built. Such specifications require careful optimizations in many aspects of the converter to ensure a high power density and efficiency design. The implemented solutions and associate design process are presented in detail, with comparison with other state-of-the-art solutions. The hardware prototype has successfully demonstrated a peak efficiency of 94.1%, and 329 W/in(3) (20W/cm(3)) overall power density.
机译:本文探讨了飞电容器多级(FCML)拓扑在高升压转换中的使用。与传统的两级升压转换器相比,FCML拓扑利用高能量密度电容器来促进电感器在转换过程中存储和传输能量,这带来了诸如开关上的较低电压应力,电感器上的较低电压应力等特性。 ,并且开关节点处的有效开关频率很高。结果,在保持高电压增益的高效率的同时,极大地减少了转换器中无源元件的总体积。为了演示潜在的高功率密度和高效率,构建了一个硬件原型,该原型将100 V转换为1 kV,最大输出功率为820W。此类规范要求在转换器的许多方面进行仔细的优化,以确保高功率密度和效率设计。详细介绍了已实现的解决方案和相关的设计过程,并与其他最新解决方案进行了比较。硬件原型已成功展示了94.1%的峰值效率和329 W / in(3)(20W / cm(3))的整体功率密度。

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