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用于磁梯度张量系统差分的人工矢量校准方法。

Artificial Vector Calibration Method for Differencing Magnetic Gradient Tensor Systems.

作者信息

Li Qingzhu, Li Zhining, Zhang Yingtang, Yin Gang

机构信息

Department of Vehicle and Electrical Engineering, The Army Engineering University of PLA, Shijiazhuang 050003, China.

High Speed Institute, China Aerodynamics Research and Development Center, Mianyang 621000, China.

出版信息

Sensors (Basel). 2018 Jan 26;18(2):361. doi: 10.3390/s18020361.

Abstract

The measurement error of the differencing (i.e., using two homogenous field sensors at a known baseline distance) magnetic gradient tensor system includes the biases, scale factors, nonorthogonality of the single magnetic sensor, and the misalignment error between the sensor arrays, all of which can severely affect the measurement accuracy. In this paper, we propose a low-cost artificial vector calibration method for the tensor system. Firstly, the error parameter linear equations are constructed based on the single-sensor's system error model to obtain the artificial ideal vector output of the platform, with the total magnetic intensity (TMI) scalar as a reference by two nonlinear conversions, without any mathematical simplification. Secondly, the Levenberg-Marquardt algorithm is used to compute the integrated model of the 12 error parameters by nonlinear least-squares fitting method with the artificial vector output as a reference, and a total of 48 parameters of the system is estimated simultaneously. The calibrated system outputs along the reference platform-orthogonal coordinate system. The analysis results show that the artificial vector calibrated output can track the orientation fluctuations of TMI accurately, effectively avoiding the "overcalibration" problem. The accuracy of the error parameters' estimation in the simulation is close to 100%. The experimental root-mean-square error (RMSE) of the TMI and tensor components is less than 3 nT and 20 nT/m, respectively, and the estimation of the parameters is highly robust.

摘要

差分(即在已知基线距离处使用两个同质场传感器)磁梯度张量系统的测量误差包括单个磁传感器的偏差、比例因子、非正交性以及传感器阵列之间的对准误差,所有这些都会严重影响测量精度。在本文中,我们提出了一种用于张量系统的低成本人工矢量校准方法。首先,基于单传感器的系统误差模型构建误差参数线性方程,通过两次非线性转换以总磁场强度(TMI)标量为参考,得到平台的人工理想矢量输出,无需任何数学简化。其次,以人工矢量输出为参考,采用Levenberg-Marquardt算法通过非线性最小二乘法拟合计算12个误差参数的综合模型,同时估计系统总共48个参数。校准后的系统沿参考平台正交坐标系输出。分析结果表明,人工矢量校准输出能够准确跟踪TMI的方向波动,有效避免“过校准”问题。仿真中误差参数估计的精度接近100%。TMI和张量分量的实验均方根误差(RMSE)分别小于3 nT和20 nT/m,参数估计具有高度鲁棒性。

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