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System-Level Optimization Design of Tubular Permanent-Magnet Linear Synchronous Motor for Electromagnetic Emission

机译:管式永磁线性同步电动机的系统级优化设计,用于电磁排放

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摘要

As the core equipment for the electromagnetic emission system, the tubular permanent magnet linear synchronous motor (TPMLSM) is required to be of lighter weight and less power, taking the weight of the pulse power supply system into account. In this paper, a comprehensive optimization design method of TPMLSM is introduced, which is aimed to obtain a system-level optimal solution with strict dimensional and power restrictions. First, the calculation model of TPMLSM performance is established based on magneto-static field (2D-FEM) and response surface methodology (RSM), the precision is validated by transient field (2D-FEM). Then the optimal design procedure of TPMLSM is deduced, revealing clear advantages of the proposed model in design flexibility. Finally, the performances of all designs including both the motor and power system are calculated, listed, and optimized by selecting the optimal power level.
机译:作为电磁排放系统的核心设备,管状永磁体线性同步电动机(TPMLSM)需要重量轻,功率较低,考虑脉冲电源系统的重量。 本文介绍了TPMLSM的全面优化设计方法,旨在获得具有严格尺寸和功率限制的系统级最佳解决方案。 首先,基于磁静电场(2D-FEM)和响应表面方法(RSM)建立TPMLSM性能的计算模型,通过瞬态场(2D-FEM)验证精度。 然后推导出TPMLSM的最佳设计过程,揭示了拟议模型在设计灵活性方面的明显优势。 最后,通过选择最佳功率水平来计算,列出包括电机和电力系统的所有设计的性能。

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