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A method to calculate displacements as End of Line Calibration for AMR-based angular sensors

机译:一种基于AMR的角度传感器的位移计算方法,作为生产线标定

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Precise angular measurement is important for many applications in the automotive domain such as electric power steering or throttle/pedal systems. The accuracy of such an angle sensing system essentially depends on mounting tolerances. In this paper we show a methodology, which is able to detect a displacement between sensor and magnet. We compute the magnet position exploiting the minima and maxima of the magnetic field which is sampled by the AMR sensors. By using measurements of a sensor array consisting of anisotropic magneto-resistive (AMR) angular sensors an End of Line Calibration can be done. From this follows relaxed mounting tolerances while the accuracy is preserved. Thus, the presented technique lead to a significant improved mechanical flexibility and lower production costs.
机译:精确的角度测量对于汽车领域中的许多应用至关重要,例如电动助力转向或油门/踏板系统。这种角度感测系统的精度主要取决于安装公差。在本文中,我们展示了一种能够检测传感器与磁体之间的位移的方法。我们利用由AMR传感器采样的磁场的最小值和最大值来计算磁体位置。通过使用由各向异性磁阻(AMR)角度传感器组成的传感器阵列的测量结果,可以完成线路校准。因此,在保持精度的同时,可以放宽安装公差。因此,提出的技术导致显着改善的机械柔韧性和较低的生产成本。

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