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Time-frequency analysis of enhanced GPR detection of RF tagged buried plastic pipes

机译:增强GPR检测RF标记埋藏塑料管的时频分析

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AbstractGround Penetrating Radar (GPR) is a well-received non-destructive technique for the detection of underground utilities, such as water/gas pipes, sewers, power cables, and telecommunication ducts. However, radar signatures of plastic pipes are generally weak when the surrounding soils are attenuative and/or the pipe and soils have similar electromagnetic characteristics. In order to increase the radar visibility of these pipes, attaching Radio-Frequency (RF) tags to them is a useful method. In this paper we designed two types of Bowtie-Omega shaped RF tags. The finite element method (FEM) simulation and measurement of the designed tags show strong resonances in the GPR spectrum, and by conducting GPR B-scans stronger radar signatures are observed when the RF tags are buried in our 2.0×1.5×0.75?m tank filled with dry sand. Furthermore, we implement a simple processing procedure based on Short-time Fourier Transform (STFT), by which strong time-frequency domain response of the tags is clearly seen at those designed resonant frequencies, and disappear when tags are not inserted. The resulting detection of the hollow plastic pipe in both time and frequency domains due to the co-located tag is evidently enhanced.]]>
机译:<![CDATA [ 抽象 地面穿透雷达(GPR)是一个良好接收的非破坏性技术,用于检测地下实用程序,如下作为水/煤气管,下水道,电力电缆和电信管道。然而,当周围的土壤衰减和/或管道和土壤具有相似的电磁特性时,塑料管的雷达签名通常很弱。为了增加这些管道的雷达可视性,将射频(RF)标签附加到它们是一种有用的方法。在本文中,我们设计了两种类型的Bowtie-Omega形RF标签。设计标签的有限元方法(FEM)模拟和测量在GPR频谱中显示出强大的共振,通过进行GPR B扫描,当RF标签在我们的2.0 × 1.5 × 0.75?M坦克充满干砂。此外,我们实现基于短时傅里叶变换(STFT)的简单处理过程,通过该变换在那些设计的谐振频率下清楚地看到标签的强时频域响应,并且在未插入标签时消失。通过共同定位的标签的时间和频率域中所产生的中空塑料管的检测显着增强。 ]]>

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