Modelling and first order optimisation of the air-cored tubular PM machine using polynomial approximation

R. Crozier, M. Mueller
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引用次数: 5

Abstract

Finite element analysis remains the most reliable method of simulating electromagnetic systems. When attempting to optimise a system, FEA can be computationally expensive and time consuming. This paper demonstrates the use of polynomial approximation to FEA results to minimise the necessary number of FEA simulations. Using this method, a simulation is developed, capable of accurately reproducing the magnetic field above one pole in the air-cored tubular permanent magnet machine for any combination of machine parameters in a pre-chosen design space. The same method is also employed to optimise the machine parameters to produce the maximum reaction force for a fixed current. A second optimisation is also presented based on the capital cost per average power produced per unit length of translator in a typical wave motion.
采用多项式近似的空心管式永磁机床建模及一阶优化
有限元分析仍然是模拟电磁系统最可靠的方法。当试图优化系统时,有限元分析可能是计算上昂贵且耗时的。本文演示了对有限元结果的多项式近似的使用,以尽量减少必要的有限元模拟次数。利用该方法,在预先选定的设计空间中,能够精确地再现任意机器参数组合下空心管式永磁电机中一极以上的磁场。同样的方法也用于优化机器参数,以产生固定电流下的最大反作用力。第二个优化也提出了基于资本成本每平均功率产生的每单位长度的翻译器在一个典型的波浪运动。
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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