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Real-Time Modeling of Forward-Looking Synthetic Aperture Ground Penetrating Radar Scattering From Rough Terrain

机译:远程观察合成孔径地面穿透雷达散射从崎岖地形的实时建模

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摘要

Ground penetrating radar (GPR) is a viable tool for fast and high fidelity detection of concealed explosive threats. The radar effectiveness is limited by scattering from rough terrain which considerably obscures the buried target response. To calculate the rough ground scattering, a 3-D full-wave algorithm such as finite-difference frequency-domain (FDFD) method is required but is often prohibitive for multiple frames when the GPR antennas are distant from the target region. This paper presents a real-time 3-D modeling of a moving platform forward-looking GPR scattering from rough terrain located at great electrical distances from the GPR antenna. For a synthetic aperture, the computational domain of the focal region is reduced to a very small subset of the entire observed volume, and the surface clutter is computed via a mere multiplication of a precomputed impulse response matrix of the rough ground with the matrix characterizing the GPR transmitting signal. For a vehicle-mounted GPR detection system, this results in a significant reduction of complexity and saving of computation resources. The effectiveness of the algorithm is evaluated through an implementation of 3-D Monte Carlo simulation for various rough surface parameters. Our developed model compares well with the direct FDFD results, and can be used for lossy and frequency-dispersive soils.
机译:地面穿透雷达(GPR)是一种可行的爆炸威胁的快速和高保真检测的可行工具。通过从粗糙的地形散射,雷达有效性受到限制,这些粗糙的地形具有显着掩盖了埋地的目标反应。为了计算粗地面散射,需要一种三维全波算法,例如有限差分频域(FDFD)方法,但是当GPR天线远离目标区域时,多帧通常对多个帧持久。本文介绍了从粗糙地形的移动平台前瞻性GPR散射的实时3-D模型,距离GPR天线很大的电气距离。对于合成孔径,焦点区域的计算结构域减小到整个观察到的体积的非常小的子集,并且通过仅使用粗糙接地的预先计算的脉冲响应矩阵来计算表面杂波,其中矩阵表征了矩阵GPR传输信号。对于车载的GPR检测系统,这导致复杂性和计算资源的复杂性显着降低。通过实现各种粗糙表面参数的3-D蒙特卡罗模拟来评估算法的有效性。我们开发的模型与直接FDFD结果相比,可用于有损和频分散的土壤。

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