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Magnetic Anomaly Detection Using Continuous Angle Alignment of Three-Axis Magnetic Signal

机译:磁异常检测使用连续角度对准三轴磁信号

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摘要

A magnetic anomaly detection (MAD) scheme detects magnetic changes generated from the ferromagnetic target in the geomagnetic field. The three-axis magnetic vector sensor is considered as a technique to extend the detection range for the MAD scheme. However, in the conventional MAD scheme, the scheme detects only the magnitude signal calculated from the three-axis signal, and thus, the sensitivity of the three-axis signal which has been changed by the target cannot be directly reflected. In addition, when the axis of the magnetic vector sensor is physically rotated during the installation, the detection probability of the MAD scheme using the three-axis signal is deteriorated because the strength and pattern of the three-axis signal are changed by the rotated axis. In this paper, we propose a continuous angle alignment-based MAD (CAA-MAD) to extend the detection range of the target and to reduce the false alarm rate. Experimental results show that the proposed CAA-MAD can extend the detection range significantly compared with the conventional magnitude-based MAD.
机译:磁异常检测(MAD)方案检测从地磁场中的铁磁靶产生的磁性变化。三轴磁矢量传感器被认为是扩展MAD方案的检测范围的技术。然而,在传统的MAD方案中,该方案仅检测由三轴信号计算的幅度信号,因此,由目标改变的三轴信号的灵敏度不能直接反射。另外,当磁矢量传感器的轴线在安装过程中物理旋转时,使用三轴信号的MAD方案的检测概率劣化,因为三轴信号的强度和图案由旋转轴改变。在本文中,我们提出了一种连续的角度对齐的MAD(CAA-MAD)来扩展目标的检测范围,并降低误报率。实验结果表明,与传统的基于幅度的MAD相比,建议的CAA-MAD可以显着扩展检测范围。

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