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Analysis of Direct-On-Line Synchronous Reluctance Machine Start-Up Using a Magnetic Field Decomposition

机译:使用磁场分解的直接在线同步磁阻电机启动分析

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Direct-on-line synchronous reluctance machines combine the characteristics of induction machines and synchronous reluctance machines. Saturation of core materials, the eddy currents, and the asymmetry of the rotor core and cage make it difficult to predict which kind of loads a machine can synchronize. In this paper, the start-up of a direct-on-line synchronous reluctance machine is analyzed with a magnetic field decomposition that makes it possible to quantify and isolate forces between any two distinct parts of an electric machine using a transient time-stepping finite element field solution. The results show explicitly which portion of the torque is produced by the rotor core and which by the rotor cage. Compared with conventional average torque analyses (also known as pseudo-constant-speed or quasi-steady-state analyses) used to distinguish between the torque on the rotor core and cage, the proposed method makes no assumptions on the state of the machine. This results in a more detailed view of the starting transient.
机译:直接在线同步磁阻电机结合了感应电机和同步磁阻电机的特性。铁心材料的饱和度,涡流以及转子铁心和笼子的不对称性使得很难预测机器可以同步哪种负载。在本文中,使用磁场分解对直接在线同步磁阻电机的启动进行了分析,该磁场分解可以使用瞬态时步有限元来量化和隔离电机任意两个不同部分之间的力元素场解决方案。结果清楚地表明,转矩的哪一部分由转子铁心产生,哪部分由转子笼产生。与用于区分转子铁心和保持架上的扭矩的常规平均扭矩分析(也称为伪恒定速度或准稳态分析)相比,该方法没有对电机状态进行任何假设。这样可以更详细地了解启动瞬变。

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