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首页> 外文期刊>IEEE Transactions on Industry Applications >A Novel Grain-Oriented Lamination Rotor Core Assembly for a Synchronous Reluctance Traction Motor With a Reduced Torque Ripple Algorithm
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A Novel Grain-Oriented Lamination Rotor Core Assembly for a Synchronous Reluctance Traction Motor With a Reduced Torque Ripple Algorithm

机译:新型磁阻叠片式转子铁芯组件,用于降低转矩脉动算法的同步磁阻牵引电动机

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摘要

High torque density and low torque ripple are crucial for traction applications, which allow electrified powertrains to perform properly during start-up, acceleration, and cruising. High-quality anisotropic magnetic materials such as cold-rolled grain-oriented electrical steels can be used for achieving higher efficiency, torque density, and compactness in synchronous reluctance motors equipped with transverse laminated rotors. However, the rotor cylindrical geometry makes utilization of these materials with pole numbers higher than two more difficult. From a reduced torque ripple viewpoint, particular attention to the rotor slot pitch angle design can lead to improvements. This paper presents an innovative rotor lamination design and assembly using cold-rolled grain-oriented electrical steel to achieve higher torque density along with an algorithm for rotor slot pitch angle design for reduced torque ripple. The design methods and prototyping process are discussed, finite-element analyses and experimental examinations are carried out, and the results are compared to verify and validate the proposed methods.
机译:高扭矩密度和低扭矩波动对于牵引应用至关重要,这可使电动动力总成在启动,加速和巡航期间正常运行。高质量的各向异性磁性材料(例如冷轧晶粒取向电工钢)可用于在配备了横向叠片转子的同步磁阻电动机中实现更高的效率,转矩密度和紧凑性。但是,转子圆柱形的几何形状使得极数大于2的这些材料的利用更加困难。从减小转矩脉动的角度出发,特别注意转子槽螺距角设计可以带来改进。本文介绍了一种创新的转子叠片设计和组装方法,该方法使用冷轧晶粒取向电工钢来实现更高的转矩密度,并提供了一种用于转子槽螺距角设计的算法,以减少转矩波动。讨论了设计方法和原型制作过程,进行了有限元分析和实验检验,并对结果进行比较以验证和验证所提出的方法。

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