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Compensation Vehicle Distortion Field and Improvement of Magnetic Target Localization

机译:补偿车辆畸变场与磁目标定位的改进

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Generally, a magnetic target includes ferromagnetic material, which can be generated the magnetic anomaly. Based on the magnetic anomaly, we can use a sensor array to locate a magnetic target. Due to sensors located on a vehicle, the distortion field generated by it can affect the value measured by the magnetic sensor. Therefore, the distortion field needs to be compensated. In this paper, the sensor array with four magnetometers and an inertial instrument is presented. We analyze the relationship between the measurements of each magnetometers in the array. Then, we propose a method for compensating the distortion field generated by the vehicle. In addition, we present a method for locating the magnetic target using the sensor array. Based on the magnetic moment, we formulate an optimization problem for estimating the parameters of the target and develop a dedicated PSO algorithm to solve the optimization. from the experiment results, we can know that the calculated positions of the target by the method were near the true values.
机译:通常,磁性靶包括铁磁材料,其可以在磁异常中产生。基于磁异常,我们可以使用传感器阵列来定位磁目标。由于传感器位于车辆上,由其产生的变形场会影响磁传感器测得的值。因此,失真场需要被补偿。在本文中,提出了具有四个磁力计和一个惯性仪器的传感器阵列。我们分析阵列中每个磁力计的测量值之间的关系。然后,我们提出了一种补偿车辆产生的畸变场的方法。此外,我们提出了一种使用传感器阵列定位磁性目标的方法。基于磁矩,我们提出了用于估计目标参数的优化问题,并开发了专用的PSO算法来解决该优化问题。从实验结果可以看出,该方法计算出的目标位置接近真实值。

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