首页> 外文会议>European Conference on Applied Superconductivity;EUCAS'05 >Design of a linear synchronous motor with high temperature superconductor materials in the armature and in the field excitation system
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Design of a linear synchronous motor with high temperature superconductor materials in the armature and in the field excitation system

机译:在电枢和励磁系统中采用高温超导材料的线性同步电动机的设计

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The high diamagnetism observed in high temperature superconducting (HTS) materials lead to applications involving levitation such as the linear synchronous motor (LSM). Certain features taken into account in conventional LSM design cannot be applied in the HTS case, due to these materials characteristics, such as BSCCO stiffness, when used as armature windings. Also other design features, e.g. slot skewing, which reduces the space harmonics of the air gap magnetic flux density, thus influencing motor performance, plays an important role in final cost. These and other aspects such as the thrust force or the effect of motor control through an inverter are examined in this paper, where the analytical and numerical methodologies involved in the design optimisation of a LSM demonstrator with pre-magnetised YBCO pellets in the field excitation system and BSCCO armature windings are described. Simulation results are also included.
机译:在高温超导(HTS)材料中观察到的高反磁性导致了涉及悬浮的应用,例如线性同步电动机(LSM)。传统的LSM设计中考虑的某些功能无法应用于HTS,因为当用作电枢绕组时,由于这些材料特性(例如BSCCO刚度)而无法使用。还有其他设计功能,例如槽的倾斜,可降低气隙磁通密度的空间谐波,从而影响电机性能,在最终成本中起着重要的作用。本文研究了这些和其他方面,例如推力或通过逆变器进行的电动机控制效果,其中涉及在励磁系统中对具有预磁化YBCO磁粉的LSM演示器进行设计优化的分析和数值方法。描述了BSCCO和BSCCO电枢绕组。仿真结果也包括在内。

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