Speed sensorless control of hybrid excitation axial field flux-switching permanent-magnet machine based on model reference adaptive system

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Abstract

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.

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Zhang, W., Yang, Z., Zhai, L., & Wang, J. (2020). Speed sensorless control of hybrid excitation axial field flux-switching permanent-magnet machine based on model reference adaptive system. IEEE Access, 8, 22013–22024. https://doi.org/10.1109/ACCESS.2020.2967098

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