首页> 外文会议>International conference on ground penetrating radar >DETECTING AND CLASSIFYING OF PHYSICAL AND GEOMETRICAL CHARACTERISTICS OF THE SUBSURFACE THROUGH THE USE OF COMPUTING DIAGNOSTICS METHOD FOR GROUND PENETRATING RADAR
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DETECTING AND CLASSIFYING OF PHYSICAL AND GEOMETRICAL CHARACTERISTICS OF THE SUBSURFACE THROUGH THE USE OF COMPUTING DIAGNOSTICS METHOD FOR GROUND PENETRATING RADAR

机译:通过使用计算诊断方法对地面渗透雷达的诊断方法来检测和分类地下的物理和几何特征

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The method of computational diagnostics has been recently developed to determine the depth of layers and their electro-physical parameters related to structural diagnostics (monitoring of road pavements, runways, etc.). The method of computational diagnostics is based on minimizing a certain smoothing functional, which includes a functional of discrepancy between the resulting measurements of scattered electromagnetic field and the results of a direct model problem, and also a stabilizing functional accounting for a priori data on the electrophysical and geometrical parameters of a sounded object (medium). The solution minimizing this functional is found both by one of the iterative techniques (simple iteration, steepest descent, conjugate gradients, etc.) and direct techniques. The problem discussed is related to the complexity of searching for a global minimum of the finite dimensional spaces of the layer parameters, when this complexity is brought about by the multiple-extremality of the functional. The examples are presented of the actually restored electrophysical and geometrical medium parameters by using a video pulse ultra-wideband ground penetrating radar.
机译:最近开发了计算诊断方法以确定与结构诊断有关的层次及其电物理参数(道路路面,跑道等)。计算诊断方法基于最小化某些平滑功能,其包括散射电磁场的所得测量与直接模型问题的结果之间的差异的功能,以及用于电神法上的先验数据的稳定功能算法和探测物体(媒体)的几何参数。通过其中一个迭代技术(简单的迭代,最陡,缀合梯度等)和直接技术,发现最小化该功能的溶液。所讨论的问题与在功能的多极端引起这种复杂性时,与层参数的有限尺寸空间的全局最小值的复杂性有关。通过使用视频脉冲超宽带接地穿透雷达呈现实际恢复的电神法和几何介质参数的示例。

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