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Analytical model-based optimization of the force production capability of IPM T-LSMs: Application to wave energy conversion systems

机译:IPM T-LSM的力生产能力基于分析模型的优化:在波能转换系统中的应用

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Linear permanent magnet (PM) synchronous machines have been and continue to be viable candidates in many industrial applications where they exhibit higher performance than their rotating counterparts. In this paper, an analytical model-based optimization procedure of interior PM tubular linear synchronous machines (IPM-TLSMs) with fractional-slot-arranged winding in the armature, is developed in an attempt to enhance their electromagnetic force production capability. The proposed optimization procedure is initially-applied to an elementary concept. The force of the optimized concept is validated by a 2D finite element analysis (FEA). Then, the optimization procedure is extended to the entire machine. In spite of the force enhancement, it has been found that the machine is penalized by asymmetrical phase flux linkages. An approach to counter this limitation, through the reduction of the end effect, is proposed and validated by 2D FEA.
机译:线性永磁(PM)同步电机在许多工业应用中已经并且将继续成为可行的候选产品,在这些应用中,它们的性能要高于旋转的同步电机。本文提出了一种基于解析模型的电枢内部具有分数槽布置绕组的内部PM管状直线同步电机(IPM-TLSM)的优化程序,以试图增强其电磁力的产生能力。所提出的优化程序最初应用于基本概念。通过2D有限元分析(FEA)验证了优化概念的作用力。然后,优化过程扩展到整个机器。尽管增加了力,但是已经发现,该机器受到非对称相磁链的影响。通过减少末端效应,提出了一种解决此限制的方法,并由2D FEA进行了验证。

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