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Analytical Calculation for Temperature Rise of Bearingless Switched Reluctance Motor Based on Lumped-Parameter Simplified Thermal Circuit Model

机译:基于集体参数简化热电路模型的无轴承开关磁阻电动机升温的分析计算

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The magnetic bearings are more suitable in harsh environments, especially in which the bearings are the vulnerable part of system, and they can be integrated with switched reluctance motor to form bearingless switched reluctance motor (BSRM). However, the temperature rise of machine limits the performance of BSRM. Aiming at the analytical calculation of the temperature rise of dual-winding BSRM, the lumped-parameter (LP) thermal circuit method is used to build the LP simplified thermal circuit model of BSRM. Different from the switched reluctance motor, the heat performance for the dualwinding structure of the BSRM is considered. The temperature of machine case and windings are measured in the direct current thermal tests. Experimental results show that the proposed LP simplified thermal circuit model of BSRM obtains good accuracy for engineering application. The proposed model has less parameter with fast solving speed, which is more suitable for thermal analysis and thermal design of BSRM.
机译:磁轴承更适合于恶劣环境,特别是其中轴承是系统的易受攻击的部分,并且它们可以与开关磁阻电动机集成,以形成无轴承开关磁阻电动机(BSRM)。但是,机器的温度升高限制了BSRM的性能。针对双绕组BSRM的温度升高的分析计算,LumpEd参数(LP)热电路方法用于构建BSRM的LP简化的热电路模型。不同于开关磁阻电机的不同,考虑了BSRM的Dualwinding结构的热性能。在直流热试验中测量机器壳体和绕组的温度。实验结果表明,建议的LP简化的BSRM热电路模型获得了工程应用的良好精度。该模型具有快速求解速度的参数,更适合于BSRM的热分析和热设计。

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