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Presizing Methodology of DC–DC Converters Using Optimization Under Multiphysic Constraints: Application to a Buck Converter

机译:在多物理约束下使用优化优化DC-DC转换器的方法:在Buck转换器中的应用

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摘要

This paper presents an approach to presize dc–dc converters. This approach is carried out in three main steps. The first one helps the designer to select the most adapted architecture answering the specifications and appropriate technologies of passive and active components of the selected architecture minimizing a major constraint (like volume or cost). Models used in this step are developed from manufacturer datasheets. The second step consists on optimizing the selected architecture by considering the appropriate technologies resulting from the first step under multiphysic constraints: thermal, losses (or efficiency), volume, and electromagnetic compatibility. Analytical models to consider the different constraints are developed. The third step carries out a second optimization with integration of a finite element simulation. It allows refining the optimization results of the second step and consists on optimizing the components placement under thermal and EMC constraints together or separately. The developed methodology proposes a progressive approach to answer industrial needs when presizing power converters. It allows reducing significantly the computing time which is suitable in a presizing phase where several parameters must be optimized and multiphysic constraints must be respected.
机译:本文提出了一种预先确定DC-DC转换器尺寸的方法。此方法分为三个主要步骤。第一个帮助设计人员选择最合适的体系结构,以响应所选体系结构的无源和有源组件的规范和适当技术,从而最大程度地减少主要约束(如数量或成本)。此步骤中使用的模型是根据制造商数据表开发的。第二步包括通过考虑第一步在多物理约束(热,损耗(或效率),体积和电磁兼容性)下产生的适当技术来优化选定的体系结构。开发了考虑不同约束条件的分析模型。第三步是结合有限元模拟进行第二次优化。它可以优化第二步的优化结果,包括一起或分别优化在热和EMC约束下的组件放置。所开发的方法提出了一种渐进的方法,可在确定电源转换器尺寸时满足工业需求。它允许显着减少计算时间,该时间适用于必须优化几个参数并且必须遵守多物理约束的预定义阶段。

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