磁悬浮列车
悬浮
直线电机
推进
磁悬浮
直线感应电动机
电磁悬浮
有限元法
控制理论(社会学)
工程类
磁铁
汽车工程
机械工程
物理
计算机科学
电气工程
航空航天工程
感应电动机
结构工程
电压
控制(管理)
人工智能
作者
Gang Lv,Leilei Cui,Ruodong Zhi,Tong Zhou,Yaqing Liu
出处
期刊:IEEE Transactions on Transportation Electrification
日期:2023-02-16
卷期号:9 (3): 4113-4120
被引量:7
标识
DOI:10.1109/tte.2023.3246070
摘要
Conventional electromagnetic suspension (EMS) high-speed trains adopt linear synchronous motors (LSMs) and electromagnets together to provide propulsion, levitation, and guidance (PLG) forces. In this article, a new transverse flux linear synchronous motor (TFLSM) is presented for high-speed maglev trains, which can concurrently provide PLG forces. First, the topology and operating principle of TFLSMs are introduced. Second, the electromagnetic characteristics in the TFLSMs and conventional LSMs applied in high-speed maglev trains under the same dimensional conditions are compared and analyzed using the 3-D finite-element method (FEM). A quantitative comparison of the two motors is carried out to show the feasibility of TFLSMs in maglev transportation system applications. Third, the variations of electromagnetic forces in TFLSM with different mechanical parameters and input currents are calculated and analyzed. Finally, the test platform of the prototype TFLSM is built and experiments are conducted to validate the simulation results. Compared with the conventional LSMs, the levitation force generated by TFLSM is increased by 55% and the propulsion force is increased by 21%.
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