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Use of Magnetic Field for Mitigating Gyroscope Errors for Indoor Pedestrian Positioning †

机译:使用磁场减轻室内行人定位的陀螺仪误差†

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摘要

In the field of indoor pedestrian positioning, the improved Quasi-Static magnetic Field (iQSF) method has been proposed to estimate gyroscope biases in magnetically perturbed environments. However, this method is only effective when a person walks along straight-line paths. For other curved or more complex path patterns, the iQSF method would fail to detect the quasi-static magnetic field. To address this issue, a novel approach is developed for quasi-static magnetic field detection in foot-mounted Inertial Navigation System. The proposed method detects the quasi-static magnetic field using the rate of change in differences between the magnetically derived heading and the heading derived from gyroscope. In addition, to eliminate the distortions caused by system platforms and shoes, a magnetometer calibration method is developed and the calibration is transformed from three-dimensional to two-dimensional coordinate according to the motion model of a pedestrian. The experimental results demonstrate that the proposed method can provide superior performance in suppressing the heading errors with the comparison to iQSF method.
机译:在室内行人定位领域,提出了一种改进的准静态磁场(iQSF)方法来估计在磁扰环境中的陀螺仪偏置。但是,该方法仅在人沿着直线路径行走时才有效。对于其他弯曲或更复杂的路径模式,iQSF方法将无法检测到准静态磁场。为了解决这个问题,开发了一种新颖的方法,用于在脚上安装的惯性导航系统中进行准静态磁场检测。所提出的方法利用磁衍生航向与陀螺仪衍生航向之间的差异变化率来检测准静态磁场。另外,为了消除由系统平台和鞋子引起的变形,开发了磁力计校准方法,并且根据行人的运动模型将校准从三维坐标转换为二维坐标。实验结果表明,与iQSF方法相比,该方法在抑制航向误差方面具有优越的性能。

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