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首页> 外文期刊>IEEE Transactions on Magnetics >Performance Evaluation of a Low-Speed Single-Side HTS Linear Induction Motor Used for Subway System
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Performance Evaluation of a Low-Speed Single-Side HTS Linear Induction Motor Used for Subway System

机译:地铁系统用低速单边HTS直线感应电动机的性能评估

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摘要

Due to the critical characteristics and the magnetic flux pinning phenomenon of the high-temperature superconducting (HTS) material, the electromagnetic calculation for the HTS motor is more complicated than for conventional motors. In this paper, the equivalent electrical conductivity and the equivalent magnetic permeability are proposed to represent the critical characteristics and the magnetic flux pinning phenomenon, respectively. Considering the low-speed single-sided HTS linear induction motor as an example, the 2-D mathematical model is established and its boundary conditions are given. The model is solved using the time-step finite-element method. The flux density distributions and the performance parameters, such as thrust, vertical force, eddy-current loss, efficiency, power factor, and so on, are obtained. In addition, the magnetic flux density around the HTS windings is also calculated to evaluate the influence of the leakage magnetic flux on the critical current. Finally, the experiment is carried out to validate the accuracy of the established model.
机译:由于高温超导(HTS)材料的关键特性和磁通钉扎现象,HTS电动机的电磁计算比常规电动机更加复杂。本文提出了等效电导率和等效磁导率分别代表临界特性和磁通钉扎现象。以低速单边高温超导直线感应电动机为例,建立了二维数学模型并给出了边界条件。使用时步有限元法求解该模型。获得磁通密度分布和性能参数,例如推力,垂直力,涡流损耗,效率,功率因数等。此外,还计算了HTS绕组周围的磁通密度,以评估泄漏磁通对临界电流的影响。最后,进行实验以验证所建立模型的准确性。

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