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Optimal Structure Design of Permanent Magnet Motors Based on a General Pattern of Rotor Topologies

机译:基于转子拓扑通用模式的永磁电动机的优化结构设计

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For the purpose of saving energy resources, it is extremely expected to develop highly efficient electric motors. Different types of permanent magnet (PM) arrangement can significantly affect the performance of the motors. Conventionally, the arrangement of the PMs is determined by designer's experience. This paper focuses on the optimal design of PM arrangement in PM synchronous motors (PMSMs). We present a general pattern of the PM arrangement in PMSM. By varying the parameters of the general pattern, it can produce different types of PM arrangement in the rotor. The employed approach combines the global optimization method with the finite-element method for solving the optimization of the PM structures. Based on the proposed general pattern and optimization methods, the best PM arrangement in the motor can be automatically determined. In order to reduce computing loading, this paper employs the response surface models for reducing the computing time of objective functions. In the end, numerical tests are designed to showcase the effectiveness of the proposed method.
机译:为了节省能源,非常期望开发高效的电动机。不同类型的永磁体(PM)布置会严重影响电动机的性能。通常,PM的布置取决于设计者的经验。本文着重于永磁同步电动机(PMSM)中永磁电动机布置的优化设计。我们介绍了PMSM中PM布置的一般模式。通过改变一般模式的参数,可以在转子中产生不同类型的PM布置。所采用的方法将全局优化方法与有限元方法相结合来解决PM结构的优化问题。基于所提出的一般模式和优化方法,可以自动确定电动机中最佳的PM布置。为了减少计算量,本文采用响应面模型来减少目标函数的计算时间。最后,设计了数值测试以展示所提出方法的有效性。

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