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Speed Sensorless Control of Hybrid Excitation Axial Field Flux-Switching Permanent-Magnet Machine Based on Model Reference Adaptive System

机译:基于模型参考自适应系统的混合励磁轴向场磁通切换永磁机的无传感器控制

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摘要

A novel 6/13-pole hybrid excitation axial field flux-switching permanent magnet machine (HEAFFSPMM) exhibits strong fault tolerance capability, high efficiency, and large torque density. However, merely few research on speed sensorless control in HEAFFSPMM exists. The speed sensorless control methods based on model reference adaptive system (MRAS) are studied and compared for the machine to improve the stability and reliability of the system and consequently improve the application of machine in control system. Based on the field-oriented control strategy, the MRAS observer of speed is designed and built by applying stator currents, stator flux linkages, and simplified stator currents. The three speed sensorless control algorithms of MRAS are compared and analyzed by using MATLAB/Simulink simulation and dSPACE1104 experimental platform. Results show that the speed sensorless control algorithm based on simplified stator currents has good control performance and high control accuracy.
机译:一种新颖的6/13极混合励磁轴向场磁通开关永磁机(Heaffspmm)具有强大的容错能力,高效率和大的扭矩密度。但是,只有很少有关于HeaffSPMM中速度传感器控制的研究。研究并比较了基于型号参考自适应系统(MRAS)的速度传感器控制方法,并比较了机器,以提高系统的稳定性和可靠性,从而改善机器在控制系统中的应用。基于面向现场的控制策略,通过施加定子电流,定子通量连接和简化的定子电流来设计和构建速度的MRAS观察者。使用MATLAB / SIMULINK仿真和DSPACE1104实验平台进行比较和分析MRA的三种速度无传感器控制算法。结果表明,基于简化定子电流的速度传感器控制算法具有良好的控制性能和高控制精度。

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