使用IMU和GPS嵌入式传感器对车载智能手机进行全自动校准

J. Almazán, L. Bergasa, J. J. Torres, R. Barea, R. Arroyo
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引用次数: 50

摘要

如今,智能手机在世界上被广泛使用,一般来说,它们配备了许多传感器。本文研究了低成本的嵌入式IMU和GPS在智能汽车中的强大功能。如果知道智能手机参照系、车辆参照系和世界参照系之间的关系,加速度计和陀螺仪给出的信息是有用的。通常,磁力计传感器用于确定智能手机的方向,但其主要缺点是电磁干扰的高影响。鉴于此,我们提出了一种基于车辆纵向加速度,利用嵌入式IMU和GPS自动校准车载智能手机的新方法。据我们所知,这是第一次尝试估计智能手机在任何情况下相对于车辆的偏航角,即使在非零坡度的道路上也是如此。此外,为了降低IMU噪声的影响,提出了一种基于卡尔曼滤波和混合高斯拟合的算法。结果表明,该系统具有较高的精度,典型误差为1%,且不受电磁干扰。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Full auto-calibration of a smartphone on board a vehicle using IMU and GPS embedded sensors
Nowadays, smartphones are widely used in the world, and generally, they are equipped with many sensors. In this paper we study how powerful the low-cost embedded IMU and GPS could become for Intelligent Vehicles. The information given by accelerometer and gyroscope is useful if the relations between the smartphone reference system, the vehicle reference system and the world reference system are known. Commonly, the magnetometer sensor is used to determine the orientation of the smartphone, but its main drawback is the high influence of electromagnetic interference. In view of this, we propose a novel automatic method to calibrate a smartphone on board a vehicle using its embedded IMU and GPS, based on longitudinal vehicle acceleration. To the best of our knowledge, this is the first attempt to estimate the yaw angle of a smartphone relative to a vehicle in every case, even on non-zero slope roads. Furthermore, in order to decrease the impact of IMU noise, an algorithm based on Kalman Filter and fitting a mixture of Gaussians is introduced. The results show that the system achieves high accuracy, the typical error is 1%, and is immune to electromagnetic interference.
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