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Adaptive filtering method for magnetic anomaly detection

机译:磁异常检测的自适应过滤方法

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Magnetic anomaly detection (MAD) is a technique applied in searching, localizing, and even tracking (if the target is moving) a ferromagnetic target of interest. Due to the complexity of the ambient magnetic field, almost all of the detection methods need a filter to be a preprocessing procedure. A typical way is passing the measured signal through a fixed frequency band that contains the frequency of the target signal. However, the target signal's frequency is mostly determined by the movement velocity of the magnetometer and the distance from magnetometer to target. Namely, in different cases, the targets' frequencies are different. We analyze the target model and represent the target signal with a single scalar variable. Through projecting the three-dimensional space into a two-dimensional plane, we lastly transform the target signal into a superposition of three sinusoids. Based on it, we propose a method to estimate the frequency band adaptively. Furthermore, we present an adaptive filtering method based on wavelet transform and take some simulation tests to prove that the proposed method has better performance compared with traditional filters. (C) 2018 Society of Photo-Optical Instrumentation Engineers (SPIE)
机译:磁异常检测(MAD)是应用于搜索,本地化甚至跟踪(如果目标正在移动)感兴趣的铁磁目标的技术。由于环境磁场的复杂性,几乎所有的检测方法都需要过滤器是预处理过程。典型的方法是通过包含目标信号频率的固定频带通过测量信号。然而,目标信号的频率主要由磁力计的移动速度和距磁力计到目标的距离决定。即,在不同的情况下,目标的频率是不同的。我们分析目标模型,并用单个标量变量代表目标信号。通过将三维空间突出到二维平面中,我们将目标信号完善地转化为三个正弦曲线的叠加。基于它,我们提出了一种自适应地估计频带的方法。此外,我们提出了一种基于小波变换的自适应滤波方法,采用一些模拟测试来证明该方法与传统过滤器相比具有更好的性能。 (c)2018年光学仪表工程师协会(SPIE)

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