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Design and Analysis of a Novel Trans-inverse DC-DC Converter

机译:一种新型反向DC-DC变换器的设计与分析

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This paper explores the coupled-inductor architectures for a trans-inverse DC-DC converter. The parasitics (e.g., leakage inductance and AC resistance) will inevitably affect the performance of the coupled-inductor and thus, the entire system. More specifically, when ignoring these parasitics, the operation principle of the DC-DC converter changes and the boosting capability is degraded. Considering the application in a trans-inverse DC-DC converter, three winding arrangements are explored in detail to demonstrate their advantages and disadvantages. Finite element analysis (FEA) on the magnetics is conducted in this paper to simulate the leakage inductance and AC resistance. Finally, the performance of the trans-inverse converter with the designed winding arrangements is verified by experimental tests.
机译:本文探讨了反式逆向DC-DC转换器的耦合电感架构。寄生效应(例如,漏感和交流电阻)将不可避免地影响耦合电感的性能,进而影响整个系统的性能。更具体地,当忽略这些寄生时,DC-DC转换器的操作原理改变并且升压能力降低。考虑到跨逆DC-DC转换器中的应用,详细探讨了三种绕组布置以展示其优缺点。本文对磁性材料进行了有限元分析(FEA),以模拟漏感和交流电阻。最后,通过实验测试验证了具有设计绕组布置的反变换器的性能。

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