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Optimal stator-current trajectory control of an IPM synchronous machine for hybrid electric vehicles

机译:混合动力汽车IPM同步电机的最佳定子电流轨迹控制

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This paper describes an optimal stator-current control strategy for an Integrated Starter-Alternator (ISA) prototype. Based on the applications of hybrid electric vehicles with wide constant power speed range, this paper investigates the various operation stages for the interior permanent magnet machine, including the maximum torque per ampere (MTPA), flux weakening control and maximum output power stage. A control algorithm was proposed to optimize the stator-current trajectories. Through the algorithm, the d-axis and q-axis components of the stator current were driven on the optimal trajectories to produce the desired torque and to maintain system stability under the voltage limit and current limit. The system takes full advantage of the capacity of the driving converter, and the maximum output torque was generated by the motor at any time. The reliability and dynamic performance of system were rather satisfactory. Energy optimization was achieved. The results from simulation and the real platform experiment verify the feasibility and advantages of the system.
机译:本文介绍了一种用于集成起动器-交流发电机(ISA)原型的最佳定子电流控制策略。基于具有恒定功率范围的混合动力电动汽车的应用,本文研究了内部永磁电机的各个运行阶段,包括最大每安培转矩(MTPA),磁通弱化控制和最大输出功率级。提出了一种控制算法,以优化定子电流轨迹。通过该算法,在最佳轨迹上驱动定子电流的d轴和q轴分量,以产生所需的转矩并在电压极限和电流极限下保持系统稳定性。该系统充分利用了驱动转换器的容量,并且最大功率输出随时由电动机产生。系统的可靠性和动态性能都令人满意。能源优化得以实现。仿真和真实平台实验的结果验证了该系统的可行性和优越性。

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