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A Loss Separation Method of a High-Speed Magnetic Levitated PMSM Based on Drag System Experiment Without Torque Meter

机译:基于无转矩仪阻力系统实验的高速磁悬浮永磁同步电机的损耗分离方法

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摘要

Varieties of loss should be optimized to be as little as possible for the stability of the permanent magnet in a high-speed magnetic levitated permanent magnet synchronous motor (HSMLPMSM) rotor and ensure the high efficiency and low temperature of the motor. First, this paper analyzes loss distribution in a motor, whose power and rated speed are 100 kW and 32 000 r/min, by a calculation method. Then, separation of losses of the HSMLPMSM is implemented based on a drag system without torque meter accounting for its particularity of high-power and high-speed level. In all kinds of losses, core loss and coil loss can be separated by a traditional calculation method with related parameters being tested. Besides, windage loss and magnetic bearing loss can be obtained by a deceleration test. Resulting from power balance equations deduced by the relationship of the drag system's power input and output, eddy current loss of the rotor can be separated, compared to its finite-element analysis results and analytical results. In the end, with thermal-electromagnetic coupled analysis, loss separation results are validated via temperature rise experiment indirectly.
机译:为了使高速磁悬浮永磁同步电动机(HSMLPMSM)转子中的永磁体的稳定性尽可能降低,应优化各种损耗,并确保电动机的高效率和低温。首先,本文通过一种计算方法分析了功率和额定转速分别为100kW和32 000r / min的电动机中的损耗分布。然后,基于阻力系统实现HSMLPMSM的损耗分离,而无需考虑扭矩表的高功率和高速水平的特殊性。在各种损耗中,铁心损耗和线圈损耗可以通过传统的计算方法进行分离,并测试相关参数。此外,通过减速测试可以获得风阻损失和磁轴承损失。由阻力系统的功率输入和输出之间的关系推导出的功率平衡方程式可以将转子的涡流损耗与其有限元分析结果和分析结果进行比较。最后,通过热电磁耦合分析,通过温升实验间接验证了损耗分离的结果。

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