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Integrated design of motor drives using random heuristic optimization for aerospace applications

机译:电机驱动的集成设计,采用随机启发式优化技术,用于航空航天应用

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摘要

High power density for aerospace motor drives is a key factor in the successful realization of the More Electric Aircraft (MEA) concept. An integrated system design approach offers optimization opportunities, which could lead to further improvements in power density. However this requires multi-disciplinary modelling and the handling of a complex optimization problem that is discrete and non¬linear in nature. This paper proposes a multi-level approach towards applying random heuristic optimization to the integrated motor design problem. Integrated optimizations are performed independently and sequentially at different levels assigned according to the 4-level modelling paradigm for electric systems. This paper also details a motor drive sizing procedure, which poses as the optimization problem to solve here. Finally, results comparing the proposed multi-level approach with a more traditional single-level approach is presented for a 2.5 kW actuator motor drive design. The multi-level approach is found to be more computationally efficient than its counterpart.
机译:航天电机驱动器的高功率密度是成功实现“更多电动飞机”(MEA)概念的关键因素。集成的系统设计方法提供了优化机会,这可能导致功率密度的进一步提高。然而,这需要多学科建模以及对本质上是离散和非线性的复杂优化问题的处理。本文提出了一种将随机启发式优化应用于集成电动机设计问题的多级方法。集成优化是根据电气系统的4级建模范例在分配给不同级别的不同级别上独立并顺序执行的。本文还详细介绍了电动机驱动器的选型过程,这是此处要解决的优化问题。最后,针对2.5 kW执行器电机驱动器设计,提出了将建议的多级方法与更传统的单级方法进行比较的结果。发现多级方法比相应方法具有更高的计算效率。

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