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Ground clutter suppression in GPR using framing based mean removal and subspace decomposition

机译:GPR中的地面杂波抑制使用基于框架的平均移除和子空间分解

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Ground penetrating radar (GPR) is one of the effective tools for detecting subsurface objects. However, the existence of ground clutter negatively affects target signal extraction particularly for shallowly buried objects and/or weak target responses. Thus, the reliable clutter suppression method is needed for enhancing the target responses. This paper proposes a novel approach for ground clutter reduction by using framing based mean removal and a subspace decomposition method. In the first step, the GPR signal is processed by cross-correlation with a reflection from a flat-surface as the reference for determining the timing range of surface reflection. Then, the mean of the two neighboring traces in the predicted range is removed. The singular value decomposition and K-means algorithm are used to remove the residual noise according to the singular values. The simulation results indicate that the proposed method can effectively suppress the ground clutter without contamination of the target signal.
机译:地面穿透雷达(GPR)是用于检测地下物体的有效工具之一。然而,地面杂波的存在负面影响目标信号提取,特别是对于浅埋的物体和/或弱目标反应。因此,需要可靠的杂波抑制方法来增强目标响应。本文提出了利用基于框架的平均移除和子空间分解方法来实现地面杂波的新方法。在第一步中,GPR信号通过与来自平坦表面的反射的互相关作为用于确定表面反射的定时范围的参考。然后,去除预测范围中的两个相邻迹线的平均值。奇异值分解和k均值算法用于根据奇异值去除残余噪声。模拟结果表明,该方法可以有效地抑制地面杂波而不污染目标信号。

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