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High-density dual-polarized GPR array for underground asset mapping

机译:用于地下资产测绘的高密度双极化GPR阵列

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GPR is one of the most reliable instruments to obtain information on subsoil utilities and since its diffusion many efforts have been made in order to reduce the effect of the “human factor” during the data interpretation phase, and to maximize the amount of the surface to be investigated per unit time during data acquisition. Locations where the detection of subsoil utilities is required by public or private organizations may be various in terms of both dimension and logistic. However, a full mapping, even of a small survey area, with a single GPR antenna is often unfeasible, due to the high spatial sampling required; the use of a massive vehicle-towed GPR array may be also not convenient to set up. After many years of technical development, a new system has been recently introduced on the market. This GPR system, thanks to the simultaneous use of an array of 32 channels in different polarization in one compact antenna, enables the collection of a 3-D volume of spatially correlated GPR data. In this paper the effectiveness of a high density array for underground imaging is proven. A dedicated Real-Time Automatic Pipe Detection (APD) algorithm has been also developed, aiming at reducing the “human factor” in radar data interpretation and dramatically decreasing the amount of time needed by data analysis. The implementation, in the same system, of software and hardware features such as the APD, the compact dimension, and the system's maneuverability, results in clear benefit in terms of GPR data density and performance, and high productivity.
机译:GPR是获取有关地下土壤实用信息的最可靠的工具之一,并且自从其传播以来,已经做出了许多努力,以减少数据解释阶段中“人为因素”的影响,并最大程度地增加地面覆盖面积。在数据采集期间每单位时间进行调查。公共或私人组织要求检测地下土壤公用设施的位置在规模和后勤方面可能各不相同。但是,由于需要大量的空间采样,因此即使使用单个GPR天线进行完整的测绘,即使是很小的调查区域,也往往不可行。使用大型的拖曳式GPR阵列也可能不方便设置。经过多年的技术开发,最近在市场上推出了新系统。由于在一个紧凑型天线中同时使用了32个极化方向不同的信道组成的阵列,因此该GPR系统可以收集3D量的空间相关GPR数据。本文证明了用于地下成像的高密度阵列的有效性。还开发了专用的实时自动管道检测(APD)算法,旨在减少雷达数据解释中的“人为因素”,并显着减少数据分析所需的时间。在同一系统中实施软件和硬件功能(例如APD),紧凑的尺寸以及系统的可操作性,在GPR数据密度和性能以及高生产率方面带来了明显的好处。

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