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Development of a new algorithm for accurate estimation of GPR's wave propagation velocity by common-offset survey method

机译:共偏移法精确估计GPR波传播速度的新算法的开发

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The development of a new algorithm to estimate electromagnetic (EM) wave propagation velocity (v) with shielded ground penetrating radar (GPR) antenna with high-frequency of 2 GHz is presented in this paper. Common offset method (fixed transmitter-receiver distance) is used for data collection, the antenna's separation distances and the corresponding triangulation geometry are also considered. The distribution of discrete velocities at each point oblique to the embedded target object is calculated by the proposed method. It is similar to the curve fitting process of hyperbolas in most software. The method has been validated in air and in concrete media and compared with the traditional hyperbola geometry method (ASTM D6432-11). The results show that errors of the new algorithm is significantly lower than the hyperbolic method. Besides, effects of analyzing reflected signals with different object depths are discussed. Based on the result, differentiation of velocity variations in concrete as a result of water seepage and leakage will be studied in next stage. (C) 2016 Published by Elsevier Ltd.
机译:本文提出了一种利用2 GHz高频屏蔽地面穿透雷达(GPR)天线估算电磁波传播速度(v)的新算法的开发。常用的偏移方法(固定的发射器-接收器距离)用于数据收集,还考虑了天线的分离距离和相应的三角测量几何形状。通过所提出的方法,计算了与目标物体倾斜的每个点的离散速度分布。它与大多数软件中双曲线的曲线拟合过程相似。该方法已在空气和混凝土介质中得到验证,并与传统的双曲线几何方法(ASTM D6432-11)进行了比较。结果表明,新算法的误差明显低于双曲线法。此外,还讨论了分析不同物深的反射信号的效果。根据结果​​,下一步将研究由于渗水和渗漏导致的混凝土速度变化的差异。 (C)2016由Elsevier Ltd.出版

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