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Design of Power Converters by Optimization Under Multiphysic Constraints: Application to a Two-Time-Scale AC/DC–DC Converter

机译:在多物理约束下通过优化设计功率转换器:在两尺度AC / DC-DC转换器中的应用

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摘要

The aim of this paper is to present an optimization-under-constraints approach to design power converters. In fact, the time-domain simulation is very useful to evaluate the performances of power converters when the design solution area of the studied converter is much reduced due to the designer's experience and when only few design aspects are considered. However, the design of today's power converters is more and more complicated because it needs to consider multiphysic and multidomain constraints. In this context, a design approach using optimization under constraints allows exploring a large solution area by considering the multiphysic aspect and a high number of optimization parameters. In this way, this paper proposes the use of analytical models to carry out a compromise between the model accuracy and the computing time when optimizing power converters under volume, electromagnetic compatibility, efficiency, thermal, and control constraints. This approach is applied to optimize a two-time-scale flyback converter. The optimized converter is implemented, and the proposed approach is validated by measurements.
机译:本文的目的是提出一种约束设计优化方法来设计电源转换器。实际上,当由于设计师的经验而大大减少了所研究转换器的设计解决方案面积并且仅考虑了很少的设计方面时,时域仿真对于评估功率转换器的性能非常有用。但是,当今的电源转换器的设计越来越复杂,因为它需要考虑多物理场和多域约束。在这种情况下,使用约束条件下的优化的设计方法可以通过考虑多物理场方面和大量优化参数来探索较大的解决方案领域。通过这种方式,本文提出了在体积,电磁兼容性,效率,热和控制约束条件下优化功率转换器时,使用分析模型在模型精度和计算时间之间进行折衷。该方法适用于优化二倍比例反激转换器。实现了优化的转换器,并通过测量验证了所提出的方法。

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