论文标题

通过常见的偏移GPR测量,准确的树根定位和尺寸在波动的地面表面上

Accurate Tree Roots Positioning and Sizing over Undulated Ground Surfaces by Common Offset GPR Measurements

论文作者

Luo, Wenhao, Lee, Yee Hui, Ow, Lai Fern, Yusof, Mohamed Lokman Mohd, Yucel, Abdulkadir C.

论文摘要

树根检测是地面穿透雷达(GPR)的流行应用。通常,假定树根上方的地面是平坦的,并且基于双曲线拟合的标准处理方法应用于树根的双波拉尔反射模式以进行检测。当土地的表面波动(不是平坦)时,这些典型的双曲拟合方法将变得不准确。这是因为,反射模式随地面表面不平坦而变化。当土壤表面不平坦时,使用不对称反射模式的峰值来识别地下目标的深度和水平位置是不准确的。由于极端表面变化引起的复合形状的反射模式导致分析困难。此外,当将多个物体埋在起伏的地面下时,很难根据假定平坦的基础的B扫描来判断其相对位置。在本文中,提出了一种基于电磁波(EM)行进时间分析的根拟合方法,以考虑实际的起伏地面地面。提出了基于车轮的GPR和天线固定(AHF)GPR系统,并提出了相应的拟合模型。通过数值示例和现场实验来证明和验证该方法的有效性。

Tree roots detection is a popular application of the Ground-penetrating radar (GPR). Normally, the ground surface above the tree roots is assumed to be flat, and standard processing methods based on hyperbolic fitting are applied to the hyperbolae reflection patterns of tree roots for detection purposes. When the surface of the land is undulating (not flat), these typical hyperbolic fitting methods becomes inaccurate. This is because, the reflection patterns change with the uneven ground surfaces. When the soil surface is not flat, it is inaccurate to use the peak point of an asymmetric reflection pattern to identify the depth and horizontal position of the underground target. The reflection patterns of the complex shapes due to extreme surface variations results in analysis difficulties. Furthermore, when multiple objects are buried under an undulating ground, it is hard to judge their relative positions based on a B-scan that assumes a flat ground. In this paper, a roots fitting method based on electromagnetic waves (EM) travel time analysis is proposed to take into consideration the realistic undulating ground surface. A wheel-based (WB) GPR and an antenna-height-fixed (AHF) GPR System are presented, and their corresponding fitting models are proposed. The effectiveness of the proposed method is demonstrated and validated through numerical examples and field experiments.

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