一种面向时变干扰的地磁矢量测量补偿方法
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国防科技大学智能科学学院 长沙 410073

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TN06

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A compensation method of geomagnetic vector measurement for time-varying disturbances
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College of Intelligent Science, National University of Defense Technology,Changsha 410073, China

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    摘要:

    为了提升地磁矢量测量的精度,并有效应对传统补偿方法在处理磁干扰模型参数时变性问题上的不足,本文提出了一种面向时变干扰的地磁矢量测量补偿方法。该方法在测量过程中可以根据最新的测量数据、先前的补偿参数与压缩矩阵,利用Woodbury方程对先前参数进行迭代更新,从而准确获取时变磁干扰参数,并进行补偿。通过仿真和实验验证了所提方法的有效性,尤其是在磁干扰特性变化较大时,此方法效果更为明显。实验结果显示,采用传统方法时,地磁场总强度和3个分量的均方根误差分别可以从4 596.3、1 310.0、5 768.9和3 245.7 nT降低到123.34、35.93、142.12和100.54 nT,但采用本文所提方法,它可以进一步降低到31.57、11.09、35.13和27.26 nT。这表明相较于传统方法,本方法不仅成功捕捉到了时变磁干扰参数的动态变化,还显著降低了地磁场总强度及各分量的均方根误差,实现了对时变磁干扰的高精度补偿。

    Abstract:

    In order to improve the accuracy of geomagnetic vector measurements and effectively deal with the shortcomings of traditional compensation methods in dealing with the problem of time-varying magnetic interference model parameters, this paper proposes a time-varying interference oriented compensation method for geomagnetic vector measurements. The method can accurately obtain the time-varying magnetic interference parameters and compensate them during the measurement process by iteratively updating the previous parameters using Woodbury′s equation based on the latest measurement data, the previous compensation parameters and the compression matrix. The effectiveness of the proposed method is verified through simulations and experiments, especially when the magnetic interference characteristics vary greatly. The experimental results show that the total geomagnetic field intensity and the rms errors of the three components can be reduced from 4 596.3、1 310.0、5 768.9 and 3 245.7 nT to 123.34、35.93、142.12 and 100.54 nT, respectively, when using the traditional method, but it can be further reduced by our proposed method to 31.57、11.09、35.13 and 27.26 nT. This shows that compared with the traditional method, the present method not only successfully captures the dynamic changes of the time-varying magnetic interference parameters, but also significantly reduces the root-mean-square error of the total geomagnetic field strength and each component, and realises the high-precision compensation of the time-varying magnetic interference.

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刘中艳,唐凤燕,徐昱静,邱晓天,何鑫蓉.一种面向时变干扰的地磁矢量测量补偿方法[J].电子测量技术,2024,47(20):76-83

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  • 在线发布日期: 2025-01-06
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