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Optimal design for electromagnetic devices: A synthesis approach using intervals and constraint-based methods

机译:电磁器件的最优设计:一种使用间隔和基于约束的方法的合成方法

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摘要

In electrical engineering, current methods show limits when it comes to complex design problems with heterogeneous and multidisciplinary requirements in the preliminary steps. Also, the setting and the solving of those problems is a simultaneous challenge that needs to be more explored. It may be necessary to recall the need to re-think the conventional design process when it comes to complex electrical systems. Particularly, by considering first the problem admissibility before its solving or optimization. Being able to detect an ill-posed or an over-constrained problem (causal analysis) can help in finding admissible solutions but also forces the designers to understand the meaning of the problem modeling. A synthesis point of view is proposed to ensure admissible and relevant solutions during the preliminary design (pre-design) process. Intervals and constraint-based methods are shown suitable for proposing efficient modeling, solving tools and addressing optimal design. This paper is illustrated by the case study of a benchmark transformer, taking into account multi-physical requirements. The optimal design includes mixed-type variables and tabulated constraints such as manufacturer datasheets. The computed results are then compared with solutions found in the literature and show the advantages of the implemented method in terms of solutions and computation time.
机译:在电气工程中,当前方法显示在初步步骤中具有异构和多学科要求的复杂设计问题的限制。此外,这些问题的环境和解决是需要更探索的同时挑战。可能有必要回顾在复杂电气系统方面重新思考传统设计过程的需要。特别是,通过考虑解决解决或优化之前的问题可否受理。能够检测到不受约束的问题(因果分析)可以帮助寻找可接受的解决方案,但也强制设计人员了解问题建模的含义。提出了一种合成观点,以确保在初步设计(预设计)过程中获得可允许和相关的解决方案。基于间隔和基于约束的方法被示出适用于提出有效的建模,求解工具和寻址最佳设计。通过基准变压器的案例研究说明了本文,考虑到多物理要求。最佳设计包括混合型变量和制表的约束,例如制造商数据表。然后将计算结果与文献中的溶液进行比较,并在解决方案和计算时间方面示出了实施方法的优点。

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