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Cascaded Boost Converter to Achieve High Voltage Boost Rate - Conduction Loss Analysis

机译:级联升压转换器实现高压升压速率-传导损耗分析

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This paper deals with a new approach to obtain a boost dc-dc converter with a very high voltage boost rate (e.g., 8 in practice or 16 in theoretical study) and a high efficiency by means of two single-ended boost dc-dc converters connected in cascade. A part of the whole study, i.e., the conduction losses produced by switches of the converter, has been descried and the results obtained so far are shown in the paper. The relation between the conduction losses and the intermediate voltage (or output voltage of the 1st stage converter) is clarified through a theoretical approach since it is the key. The validity of the theory has been confirmed through practical case study. Further, a 1 [kW] setup of the cascade system has been built and the overall efficiency marked 96 [%] under condition with input voltage of 50 [V] and output voltage of 400 [V]. It has been pointed out that the cascade system offers lower conduction losses than the traditional single-ended boost dc-dc converter. Thus, the cascade system can offer a higher efficiency under condition with a very higher voltage boost rate.
机译:本文研究了一种新方法,该方法通过两个单端升压dc-dc转换器来获得具有非常高的升压速率(例如,实践中为8或理论研究中为16)和高效率的boost dc-dc转换器级联连接。本文描述了整个研究的一部分,即由转换器的开关产生的传导损耗,并显示了迄今为止获得的结果。传导损耗和中间电压(或第一级转换器的输出电压)之间的关系通过理论方法得以阐明,因为它是关键。该理论的有效性已通过实际案例研究得到了证实。此外,在输入电压为50 [V],输出电压为400 [V]的条件下,已建立了1 [kW]的级联系统设置,总效率标记为96 [%]。已经指出,级联系统提供的传导损耗比传统的单端升压dc-dc转换器低。因此,级联系统可以在具有非常高的升压速率的条件下提供更高的效率。

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