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Investigation of rotor strength and rotor dynamics for high-speed high-power switched reluctance machines

机译:高速大功率开关磁阻机转子强度和转子动力学的研究

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摘要

This study proposes an investigation scheme of the rotor strength and rotor dynamic characteristics for high-speed high-power switched reluctance machines (SRMs). The analytical model and finite element analysis model are established to predict the maximum stress and deformation in the rotor. The Mises yield criterion is employed to verify the strength of the rotor at 1.2 times the rated speed. For the rotor dynamics, critical speed, unbalance response, and stability of the shaft system are analysed in detail. In the developed critical speed calculation scheme, the gyroscopic effect and the impact of the rotation speed on the stiffness and damping are considered. Then, the critical speeds acquired by the developed scheme are compared with those derived by using the conventional method. The unbalance response curves at different nodes are adopted for the unbalance response calculation, while the stability of the shaft system is verified by calculating the logarithmic decrement rates. The critical speed measurement experiment is performed on a 160 kW and 18,000 r/min SRM prototype, and the proposed critical speed calculation scheme is proved to be effective and accurate. The effectiveness of the unbalance response calculation method and the stability judgement technique are also verified by experiment.
机译:本研究提出了对高速高功率开关磁阻机(SRMS)的转子强度和转子动态特性的调查方案。建立分析模型和有限元分析模型,以预测转子中的最大应力和变形。使用误率标准来验证转子的强度为额定速度的1.2倍。对于转子动力学,详细分析轴系统的临界速度,不平衡响应和稳定性。在发育的临界速度计算方案中,考虑了陀螺效应和旋转速度对刚度和阻尼的影响。然后,将开发方案所获取的临界速度与通过使用传统方法导出的那些进行比较。采用不平衡响应计算采用不同节点处的不平衡响应曲线,而通过计算对数减少速率来验证轴系统的稳定性。临界速度测量实验是在160 kW和18,000 r / min的原型上进行的,并且证明了所提出的临界速度计算方案是有效准确的。不平衡响应计算方法和稳定性判断技术的有效性也通过实验验证。

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