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Sensorless algorithm for sustaining controllability of IPMSM drive in electric vehicle after resolver fault

机译:解析器故障后维持电动汽车IPMSM驱动器可控性的无传感器算法

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摘要

This paper presents a sensorless algorithm designated for the emergency control of an interior permanent magnet synchronous motor (IPMSM) drive in electric or hybrid vehicle. Special requirements for emergency-activated sensorless algorithms are defined, and shortcomings of state-of-the-art methods in terms of the considered application are discussed. The proposed emergency-activated algorithm is based on analysing the derivatives of motor phase currents measured over the duration of particular inverter states. The method is computationally simple and does not require additional hardware since the derivatives are measured indirectly. A lag between activating the algorithm upon an emergency flying start and re-establishing the torque controllability is defined. The proposed algorithm was implemented in the controller of a laboratory IPMSM vehicle drive and tested under varying operational conditions, including the emergency activation.
机译:本文提出了一种无传感器算法,用于应急控制电动或混合动力汽车内部永磁同步电动机(IPMSM)驱动器。定义了紧急激活的无传感器算法的特殊要求,并讨论了考虑的应用方面的最新方法的缺点。所提出的紧急激活算法是基于分析在特定逆变器状态持续时间内测得的电动机相电流的导数。由于导数是间接测量的,因此该方法计算简单,并且不需要其他硬件。定义了在紧急飞行开始时激活算法与重新建立转矩可控制性之间的延迟。所提出的算法在实验室IPMSM车辆驱动器的控制器中实现,并在包括紧急激活在内的各种操作条件下进行了测试。

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