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Analysis of Electromagnetic Force of Linear Induction Motor with Segmented Power Supply for Electromagnetic Emission

机译:分段供电的电磁感应直线电动机的电磁力分析

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摘要

This paper introduces a linear induction motor with segmented power supply, which transforms the electric energy into the kinetic energy of the load movement in electromagnetic launch system. Based on the characteristics of electromagnetic emission mode, a special electromagnetic force analysis method of the motor is proposed. Firstly, considering secondary edge leakage, based on the principle of port equivalence, the equivalent circuit model is modified, and the calculation method of normal electromagnetic force of linear induction motor which is suitable for aperiodic transient operation in electromagnetic emission situation is analyzed. The accuracy of the method is verified by the finite element software. Secondly, combined with the kinematic model of Newton's second law, the relationship between the magnitude of electromagnetic force and the time of the stator in each section of the motor in the launching process is analyzed in detail, which lays the foundation for the dynamic response analysis and structural optimization design of the subsequent launching device.
机译:本文介绍了一种分段供电的线性感应电动机,它可以将电能转换为电磁发射系统中负载运动的动能。根据电磁辐射模式的特点,提出了一种特殊的电动机电磁力分析方法。首先,考虑到二次边沿泄漏,基于端口等效原理,对等效电路模型进行了修改,分析了适用于电磁辐射情况下非周期性瞬变的线性感应电动机法向电磁力的计算方法。该方法的准确性已通过有限元软件进行了验证。其次,结合牛顿第二定律的运动学模型,详细分析了启动过程中电动机各部分的电磁力大小与定子时间之间的关系,为动态响应分析奠定了基础。后续发射装置的结构优化设计。

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