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A Sensorless-Based Control Scheme to Enhance the Accuracy of Position Encoders Used in Permanent Magnet Synchronous Motors for Automotive Applications

机译:一种基于无传感器的控制方案,提高了用于汽车应用永磁同步电动机中使用的位置编码器的准确性

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In this paper, the problem of designing a position and speed observer for Permanent Magnet Synchronous Motors (PMSMs) used in automotive applications is addressed adopting a three-step approach. First, we propose to estimate at rest the initial rotor angular position. This is done by injecting high-frequency currents within the stator windings. Second, for low speed, we propose to use an incremental sensor with coarse accuracy, similar to those attached to the crankshaft of the internal combustion engine. Third, for speed range above a given threshold, we design a nonlinear observer that relies on stator currents and voltages measurements and generates exactly the position estimate. These different estimations are then used in the field oriented torque control scheme to respond to a torque request in a vehicle application. Several experimental results are provided and the control scheme is then implemented on a vehicle benchmark application which consists in a shuttle system for inner-city transportation. The theory is verified via experimental results on an HIL testbed.
机译:在本文中,解决了汽车应用中使用的永磁同步电动机(PMSMS)的位置和速度观测器的问题采用三步方法。首先,我们建议估计休息初始转子角位置。这是通过在定子绕组内注射高频电流来完成的。其次,对于低速,我们建议使用具有粗精度的增量传感器,类似于附接到内燃机的曲轴上的传感器。第三,对于给定阈值高于给定阈值的速度范围,我们设计了依赖于定子电流和电压测量的非线性观察者,并确切地产生位置估计。然后将这些不同的估计用于场取向扭矩控制方案中以响应车辆应用中的扭矩请求。提供了几种实验结果,然后在车辆基准应用上实施了控制方案,该应用程序包括用于内部城市交通的梭系统。该理论通过实验结果验证了HIL试验台的实验结果。

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