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Optimum efficiency control of interior permanent magnet synchronous motors in drive trains of electric and hybrid vehicles

机译:电动和混合动力车辆传动系统中内部永磁同步电动机的最佳效率控制

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In automotive traction applications the interior permanent magnet synchronous motor (IPMSM) is preferentially chosen as traction drive due to its high torque and power densities. In drive trains of electrical vehicles (EV) and most hybrid electrical vehicles (HEV) the traction motor is operated in torque controlled mode. In a field-oriented control scheme an operation point selection strategy is required to choose appropriate current setpoints to generate the requested torque with high precision and optimal efficiency. In this paper the potential to improve the efficiency by operating a motor with minimum overall losses instead of minimum current per torque is investigated. The interaction between the motors loss characteristic, the impact of the voltage limit and the relevance of operation points for vehicle operation is explored theoretically and based on loss measurements. It is shown, that the losses can potentially be reduced at medium to high motor speeds with moderate torque requirements. This operation range corresponds to traveling with constant medium to high speed and slight acceleration and deceleration in electric vehicles. As well most operation points of the New European Driving Cycle (NEDC) and the Worldwide harmonized Light vehicles Test Procedure (WLTP) are in that operation range due to the moderate accelerations and decelerations in both driving cycles.
机译:在汽车牵引应用中,由于内部永磁同步电动机(IPMSM)具有高扭矩和高功率密度,因此被优先选择为牵引驱动装置。在电动汽车(EV)和大多数混合电动汽车(HEV)的传动系中,牵引电动机以扭矩控制模式运行。在磁场定向控制方案中,需要一个操作点选择策略来选择合适的电流设定点,以高精度和最佳效率生成所需的转矩。在本文中,研究了通过以最小的总损耗而不是每个转矩的最小电流运行电动机来提高效率的潜力。理论上并基于损耗测量,探讨了电动机损耗特性,电压极限的影响和操作点与车辆运行的相关性之间的相互作用。结果表明,在中等到较高的电动机转速下,以适度的扭矩要求,可以潜在地减少损耗。该操作范围对应于在电动汽车中以恒定的中速到高速行驶以及轻微的加速和减速行驶。同样,由于两个行驶周期中的适度加减速,新欧洲行驶周期(NEDC)和全球统一轻型车辆测试程序(WLTP)的大多数运行点也在该运行范围内。

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