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首页> 外文期刊>European Journal of Remote Sensing >Simulation of subsurface imaging for remote sensing and buried object detection from airborne platforms
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Simulation of subsurface imaging for remote sensing and buried object detection from airborne platforms

机译:空气载体遥感和埋地物体检测地下成像的仿真

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This paper addresses the problem of efficient simulations of the signal backscattered from buried structures. The proposed modelling of subsurface soil structure is based on a geologically – and hydrologically-motivated approach by using of real geological database. Six different Soil Typological Units have been used to model the inhomogeneous and geological soil structures as well as for moisture profile simulation. We use the semi-empirical pedotransfer function to calculate the Complex Relative Effective Permittivity in frequency range of 0.3–1.3 GHz. The subsurface penetration capabilities have been analysed with the regard to attenuation along the propagation path in a layered structure. We use the backward-propagation matrix and ray-tracing method to compute the backscattered signals from five targets located at five different depths in order to analyse the defocusing effects due to EM wave propagation. The computation was performed for three different radar systems with various bandwidths and carrier frequencies.
机译:本文解决了从掩埋结构反向散射的信号的有效模拟的问题。拟议的地下土壤结构建模基于使用真实地质数据库的地质和水文动机方法。已经使用六种不同的土壤类型学单位来模拟不均匀和地质土结构以及水分曲线模拟。我们使用半经验网兜传输功能来计算0.3-1.3 GHz频率范围内复杂的相对有效介电常数。已经通过沿着分层结构的传播路径衰减来分析地下穿透能力。我们使用后向传播矩阵和射线跟踪方法来计算来自位于五个不同深度的五个目标的反向散射信号,以分析由于EM波传播引起的散焦效果。对具有各种带宽和载波频率的三种不同雷达系统执行计算。

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