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Simulation of Ground Penetrating Radar for Anti-personnel Landmine Detection

机译:抗人员地区检测地面渗透雷达仿真

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摘要

Ground Penetrating Radar (GPR) is an important non-destructive tool to detect landmines. It radiates radar pulses to probe the ground that contains a variety of media, including landmine, sand, soil, clay, water, etc. and a large number of clutter items like burrows, cracks, discarded waste, branches and roots, metal wire, and so on. The subsurface is in such a complex and unidentified condition, that it will impact the performance of the GPR system considerably. This brings a big challenge for the system developers to control and understand the GPR system, especially during the early stage of the design. Therefore, a simpler and less time-consuming simulation method for GPR than the real-field test is essential for engineers to have an overview and a clear grasp of the whole GPR system. This paper uses gprMax, an open-source software using the Finite-Difference Time-Domain (FDTD) method, to explore the parameter tradeoffs for a transmitter-receiver pair of bowtie antennas operating at different spacing and heights above the ground for target at different depths.
机译:地面穿透雷达(GPR)是一种检测地雷的重要性非破坏性工具。它辐射雷达脉冲以探测含有各种介质的地面,包括地雷,沙,土壤,粘土,水等,以及洞穴,裂缝,废弃物,树枝和根,金属线,金属线等大量杂乱物品,等等。地下处于如此复杂且不明的条件,它将大大影响GPR系统的性能。这为系统开发人员控制和理解GPR系统,为系统开发人员提供了一项重大挑战,特别是在设计的早期阶段。因此,对于GPR而不是实场测试的更简单和更少耗时的仿真方法对于工程师来说,GPR是必不可少的,以概述并清楚地掌握整个GPR系统。本文使用GPRMAX,使用有限差分时域(FDTD)方法,探索在不同间距和地面上方的不同间隔和高度以外的地面运行的发射器 - 接收器对的参数权衡。深度。

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