首页> 外文会议>Industry Applications Conference, 2003. 38th IAS Annual Meeting. Conference Record of the >Vector control of an IPM synchronous machine capable of full range operations for hybrid electric vehicle application
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Vector control of an IPM synchronous machine capable of full range operations for hybrid electric vehicle application

机译:IPM同步电机的矢量控制,该电机可在混合动力电动汽车应用中实现全范围运行

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Interior PM (IPM) synchronous machines are popularly used as traction motors for mild hybrid and hybrid electric vehicles. In order to achieve desired performance, such as, propulsion of the vehicle, torque boost, charging battery, driveline synchronization during gearshift, and active damping of driveline oscillation, the IPM synchronous machine must be able to operate at every load point inside the envelope as defined by the maximum torque-speed curve. The maximum electrical speed is typically in the range of 36000 RPM. These requirements represent considerable challenges to the motor control strategy, particularly the field weakening strategy. This paper presents a simple, yet practical field weakening strategy and the associated control techniques to ensure the traction motor drive capable of full range operations for the desired performance in hybrid electric vehicle applications. Extensive experimental results, including torque and speed transient responses, phase current responses, full range steady state torque control performance, power losses over the entire operating range, are reported to demonstrate the performance of the drive over the entire operating ranges and consequently the validity of the proposed control strategy.
机译:内部PM(IPM)同步电机普遍用作轻度混合动力和混合动力电动汽车的牵引电机。为了获得理想的性能,例如车辆的推进,扭矩提升,充电电池,变速过程中的传动系统同步以及传动系统振动的主动阻尼,IPM同步电机必须能够在外壳内的每个负载点运行,如下所示:由最大转矩-速度曲线定义。最大电气速度通常在36000 RPM的范围内。这些要求给电机控制策略(尤其是弱磁策略)提出了严峻的挑战。本文提出了一种简单而实用的磁场弱化策略和相关的控制技术,以确保牵引电动机驱动器能够进行全范围运行,以在混合动力电动汽车应用中获得所需的性能。报告了广泛的实验结果,包括转矩和速度瞬态响应,相电流响应,全范围稳态转矩控制性能,整个工作范围内的功率损耗,以证明驱动器在整个工作范围内的性能,从而证明了驱动器的有效性。建议的控制策略。

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