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Optimized Vector Control Strategy for Dual-Rotor Axial Flux Permanent Magnet Synchronous Motor for in-Wheel Electric Drive Applications

机译:轮毂电机驱动中双转子轴向磁通永磁同步电动机的矢量控制策略优化

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This paper analyzes the performance of dual-rotor axial flux permanent magnet synchronous motor for its application in electric motor drive. Dual-rotor single-stator topology is employed for analysis due to its superior features compared to other topologies of the motor for electric drive application. Constant torque angle control strategy with hysteresis current controller for inverter switching is implemented with the axial flux motor and is analyzed for validation. To enhance the robustness of the control strategy, the coefficients of proportional-integral controller are optimized with particle swarm optimization algorithm using Matlab/Simulink software to minimize the torque and speed ripples obtained from the conventional setting of proportional-integral controller. The performance analysis of the motor drive with optimized controller coefficients is carried out using Ansys co-simulation with Maxwell and Simplorer softwares. The simulation analysis of the motor with optimized constant torque angle strategy shows good motor performance and robustness which is inferred from results.
机译:本文分析了双转子轴向磁通永磁同步电动机在电动机驱动中的性能。由于双转子单定子拓扑结构比电动驱动电机的其他拓扑结构优越,因此可用于分析。轴向磁通电动机实现了带有用于开关的滞环电流控制器的恒转矩角控制策略,并对其进行了分析以进行验证。为了增强控制策略的鲁棒性,使用Matlab / Simulink软件使用粒子群优化算法对比例积分控制器的系数进行优化,以最小化常规比例积分控制器的转矩和速度波动。使用Ansys与Maxwell和Simplorer软件进行的联合仿真,可以对具有优化控制器系数的电动机驱动器的性能进行分析。通过优化恒转矩角策略对电动机进行仿真分析,结果表明,电动机具有良好的性能和鲁棒性。

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