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基于 EKF 误差预测滤波器和 PI 控制器的姿态确定系统精度改进。

Accuracy Improvement of Attitude Determination Systems Using EKF-Based Error Prediction Filter and PI Controller.

机构信息

LASSENA Laboratory, Department of Electrical Engineering, Ecole de Technologie Superieure, Montreal, QC H3C 1K3, Canada.

出版信息

Sensors (Basel). 2020 Jul 21;20(14):4055. doi: 10.3390/s20144055.

Abstract

Accurate attitude and heading reference system (AHRS) play an essential role in navigation applications and human body tracking systems. Using low-cost microelectromechanical system (MEMS) inertial sensors and having accurate orientation estimation, simultaneously, needs optimum orientation methods and algorithms. The error of attitude estimation may lead to imprecise navigation and motion capture results. This paper proposed a novel intermittent calibration technique for MEMS-based AHRS using error prediction and compensation filter. The method, inspired from the recognition of gyroscope's error and by a proportional integral (PI) controller, can be regulated to increase the accuracy of the prediction. The experimentation of this study for the AHRS algorithm, aided by the proposed prediction filter, was tested with real low-cost MEMS sensors consists of accelerometer, gyroscope, and magnetometer. Eventually, the error compensation was performed by post-processing the measurements of static and dynamic tests. The experimental results present about 35% accuracy improvement in attitude estimation and demonstrate the explicit performance of proposed method.

摘要

精确的姿态和航向参考系统 (AHRS) 在导航应用和人体跟踪系统中起着至关重要的作用。使用低成本的微机电系统 (MEMS) 惯性传感器和具有精确的方向估计,同时需要最优的方向方法和算法。姿态估计的误差可能导致不精确的导航和运动捕捉结果。本文提出了一种基于误差预测和补偿滤波器的新型间歇校准技术,用于基于 MEMS 的 AHRS。该方法受到陀螺仪误差识别的启发,并通过比例积分 (PI) 控制器进行调节,以提高预测的准确性。本研究针对 AHRS 算法的实验,辅助以提出的预测滤波器,使用由加速度计、陀螺仪和磁力计组成的低成本真实 MEMS 传感器进行了测试。最终,通过对静态和动态测试的测量值进行后处理来进行误差补偿。实验结果表明,在姿态估计方面的精度提高了约 35%,并展示了所提出方法的明显性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b630/7411976/dfb7c3e9203c/sensors-20-04055-g001.jpg

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