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通过应用于混合动力汽车电机的可变磁阻传感器进行位置误差补偿。

Position error compensation via a variable reluctance sensor applied to a Hybrid Vehicle Electric machine.

机构信息

Computer Engineering Department, Engineering Faculty, Fatih University, 34500, Istanbul, Turkey.

出版信息

Sensors (Basel). 2010;10(3):1918-34. doi: 10.3390/s100301918. Epub 2010 Mar 9.

Abstract

In the automotive industry, electromagnetic variable reluctance (VR) sensors have been extensively used to measure engine position and speed through a toothed wheel mounted on the crankshaft. In this work, an application that already uses the VR sensing unit for engine and/or transmission has been chosen to infer, this time, the indirect position of the electric machine in a parallel Hybrid Electric Vehicle (HEV) system. A VR sensor has been chosen to correct the position of the electric machine, mainly because it may still become critical in the operation of HEVs to avoid possible vehicle failures during the start-up and on-the-road, especially when the machine is used with an internal combustion engine. The proposed method uses Chi-square test and is adaptive in a sense that it derives the compensation factors during the shaft operation and updates them in a timely fashion.

摘要

在汽车行业中,电磁可变磁阻(VR)传感器已被广泛用于通过安装在曲轴上的齿形轮来测量发动机的位置和速度。在这项工作中,选择了已经在发动机和/或变速器中使用 VR 感应单元的应用,以便推断出在并联混合动力电动汽车(HEV)系统中电机的间接位置。选择 VR 传感器来校正电机的位置,主要是因为在 HEV 的运行中,它仍然可能变得至关重要,以避免在启动和道路行驶过程中可能出现的车辆故障,特别是当机器与内燃机一起使用时。所提出的方法使用卡方检验,并且在某种意义上是自适应的,因为它在轴的运行过程中推导补偿因子,并及时更新它们。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbbe/3264459/62e6fca37b6d/sensors-10-01918f13.jpg

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