Design methodology with optimization of an interleaved buck converter for automotive application

M. Bendali, C. Larouci, T. Azib, C. Marchand, G. Coquery
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引用次数: 5

Abstract

This paper presents a design methodology applied to interleaved converters. This methodology is based on a multi-physic optimisation. The number of cells is used as a key parameter to formalise this approach with analytical models established to offer compromise needed between the computation time and results accuracy. The proposed methodology is applied to an interleaved buck converter for automotive application considering electric, volume, efficiency and thermal constraints. It allows to find the optimal converter architecture by searching the optimal number of cells and adequate active and passive components selected from a manufacturer data base. The methodology is drawn up to remove the risk of feasibility of a converter configuration considering several design specifications.
汽车用交错降压变换器的优化设计方法
本文提出了一种应用于交错变换器的设计方法。这种方法是基于多物理场优化。细胞的数量被用作一个关键参数来形式化这种方法与建立的分析模型,以提供计算时间和结果精度之间所需的折衷。提出的方法应用于汽车应用的交错降压变换器,考虑了电、体积、效率和热约束。它允许通过搜索从制造商数据库中选择的最佳单元数量和适当的有源和无源组件来找到最佳转换器架构。该方法的制定是为了消除考虑几个设计规范的转换器配置可行性的风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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