基于曲线拟合的探地雷达层状介质参数反演算法

Inversion Algorithm for Layered Medium Parameters with Ground Penetrating Radar Based on Curve Fitting

  • 摘要: 探地雷达具有探测速度快、穿透能力强、分辨率高的特点,是一种有效的无损探测技术,在市政建设、交通、安防等领域有着广泛的应用需求。在探地雷达中分层介质参数反演是地下目标成像与检测识别的必要步骤。本文提出了一种基于曲线拟合的层状介质参数反演算法。首先基于B-scan数据中的反射波曲线拟合,结合电磁波垂直入射模型,获取地下介质的均方根速度,通过Dix公式,反演得到分层介质相对介电常数与层厚信息。最后,通过有限差分时域(FDTD)仿真软件对本文所提的层状介质参数反演算法的准确性和有效性进行了验证。

     

    Abstract: GPR has the characteristics of fast detection speed, strong penetrating ability and high resolution. It is an effective non-destructive detection technology and has a wide range of applications in municipal construction, transportation, security and other fields. Inversion of stratified medium parameters is a necessary step for imaging and detection of underground targets in GPR. In this paper, an inversion algorithm of layered media parameters based on curve fitting is proposed. Firstly, the RMS velocity of underground media was obtained by fitting the reflected wave curve in B-scan data and combining with the electromagnetic wave vertical incidence model. The relative dielectric constant and layer thickness information of layered media were obtained by inversion through DIX formula. Finally, the accuracy and effectiveness of the proposed algorithm were verified by finite difference time domain (FDTD) simulation software.

     

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