Development of steering wheel angle sensor used for torque coordinating control of in-wheel motor driven electric vehicle

Li Hao, Xu Yanliang, Zhang Yun, L. Yuandong
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引用次数: 12

Abstract

In-wheel motor driven electric vehicle (EV) is one of the main aspects in EV development where the electronic differential should be solved first of all. How to obtain ±720° steering wheel angle is fatal to realize the electronic differential and then coordinating control of in-wheel motor driven EV. The integrated Giant Magneto Resistance (iGMR) based steering wheel angular sensor is developed in this paper and its mechanical design, hardware and software design and error analysis are concerned. The prototyped angular sensor verified the design and can be applied feasibly in in-wheel motor driven EV.
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用于轮毂电机驱动电动汽车转矩协调控制的方向盘角度传感器的研制
轮毂电机驱动的电动汽车是电动汽车发展的主要方向之一,电子差速器是电动汽车发展的首要解决问题。如何获得±720°的方向盘转角是实现轮内电机驱动电动汽车电子差速器及协调控制的关键。本文研制了一种基于集成巨磁电阻(iGMR)的方向盘转角传感器,对其机械设计、硬件设计和软件设计以及误差分析进行了研究。该传感器样机验证了设计的正确性,在轮毂电机驱动的电动汽车上具有可行性。
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