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Study on radial suspension forces of bearingless permanent magnet slice motor based on accurate inductance model

机译:基于精确电感模型的无轴承永磁片式电动机的径向悬架力研究

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An accurate mathematical model of radial suspension forces for a bearingless permanent magnet slice motor (BPMSM) is of great significance to levitate the rotor stably and to improve the control accuracy of radial suspension force. In this paper, after a brief introduction on the suspension principle of the BPMSM, the accurate inductance model of two sets of stator windings (torque windings and bearing windings) is deduced. Based on the accurate inductance model and taking rotor eccentricity into account, a complete and precise mathematical model of radial suspension forces of the BPMSM is obtained. In order to confirm the validity and feasibility of this mathematical model, the experiments are carried out on a 4kW prototype of the BPMSM. The experimental results show that the control system designed by using this method has high control accuracy of radial suspension force, strong capability of resisting disturbance, and good static and dynamic performance.
机译:无轴承永磁片式电动机(BPMSM)的径向悬架力的精确数学模型对于稳定地悬浮转子和提高径向悬架力的控制精度具有重要意义。本文在简要介绍了BPMSM的悬架原理之后,推导了两组定子绕组(转矩绕组和轴承绕组)的精确电感模型。基于精确的电感模型并考虑转子偏心距,获得了BPMSM径向悬架力的完整而精确的数学模型。为了确认该数学模型的有效性和可行性,对BPMSM的4kW原型进行了实验。实验结果表明,该方法设计的控制系统具有较高的径向悬架力控制精度,较强的抗干扰能力,良好的静态和动态性能。

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