Munoz Diaz Estefania, de Ponte Müller Fabian, García Domínguez Juan Jesús
German Aerospace Center (DLR), Institute of Communications and Navigation, Oberpfaffenhofen, 82234 Wessling, Germany.
Electronic Department from the University of Alcalá, E.P.S. Campus Universitario, s/n, 28806 Alcalá de Henares, Spain.
Sensors (Basel). 2017 Apr 11;17(4):832. doi: 10.3390/s17040832.
An accurate orientation is crucial to a satisfactory position in pedestrian navigation. The orientation estimation, however, is greatly affected by errors like the biases of gyroscopes. In order to minimize the error in the orientation, the biases of gyroscopes must be estimated and subtracted. In the state of the art it has been proposed, but not proved, that the estimation of the biases can be accomplished using magnetic field measurements. The objective of this work is to evaluate the effectiveness of using magnetic field measurements to estimate the biases of medium-cost micro-electromechanical sensors (MEMS) gyroscopes. We carry out the evaluation with experiments that cover both, quasi-error-free turn rate and magnetic measurements and medium-cost MEMS turn rate and magnetic measurements. The impact of different homogeneous magnetic field distributions and magnetically perturbed environments is analyzed. Additionally, the effect of the successful biases subtraction on the orientation and the estimated trajectory is detailed. Our results show that the use of magnetic field measurements is beneficial to the correct biases estimation. Further, we show that different magnetic field distributions affect differently the biases estimation process. Moreover, the biases are likewise correctly estimated under perturbed magnetic fields. However, for indoor and urban scenarios the biases estimation process is very slow.
准确的方位对于行人导航中获得满意的位置至关重要。然而,方位估计会受到诸如陀螺仪偏差等误差的极大影响。为了最小化方位误差,必须估计并减去陀螺仪的偏差。在现有技术中,有人提出可以使用磁场测量来完成偏差估计,但尚未得到证明。这项工作的目的是评估使用磁场测量来估计中低成本微机电系统(MEMS)陀螺仪偏差的有效性。我们通过实验进行评估,实验涵盖了准无误差的转速和磁场测量以及中低成本MEMS转速和磁场测量。分析了不同均匀磁场分布和磁干扰环境的影响。此外,详细说明了成功减去偏差对方位和估计轨迹的影响。我们的结果表明,使用磁场测量有利于正确估计偏差。此外,我们表明不同的磁场分布对方差估计过程的影响不同。而且,在扰动磁场下同样能正确估计偏差。然而,对于室内和城市场景,偏差估计过程非常缓慢。