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Power Loss Model and Efficiency Analysis of the Quasi-Z-Source Isolated Buck-Boost Converter with Wide Input Voltage and Load Range

机译:宽输入电压和负载范围的准Z源隔离降压转换器的功率损耗模型及效率分析

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The galvanically isolated full-bridge series resonant quasi-Z-source dc-dc converter is studied. It features two main operating modes, buck and boost, which correspond to the converter operation above and below the nominal voltage, respectively. Power loss models are developed for both operating modes to identify the mechanism of losses. They consider switching and conduction losses in the input-side switches, core and windings losses in the transformer and the quasi-Z-source inductor, and conduction losses in the voltage doubler rectifier diodes. The developed loss models are verified at three input voltages using a 300 W experimental prototype. The inaccuracy of the developed models does not exceed 2 W, which is acceptable in comparison with the maximum estimated power loss of over 12 W. The experimental and the estimated efficiency follow the same trend. Also, the estimated efficiency exceeds the measured by no more than 1% at full power.
机译:研究了电流隔离的全桥系列谐振Quasi-Z源DC-DC转换器。它具有两个主要操作模式,降压和升压,分别对应于上方和标称电压之下的转换器操作。为两种操作模式开发了电力损耗模型,以确定损耗机制。它们考虑在变压器和准Z源电感中的输入端开关,核心和绕组损耗中的开关和导通损耗,以及电压倍线整流二极管中的导通损耗。使用300 W实验原型在三个输入电压下验证发达的损耗模型。开发模型的不准确性不超过2W,与最大估计功率损耗相比,可以接受,实验和估计效率遵循相同的趋势。此外,估计的效率超过了全功率下不超过1%的测量。

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