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A Propagation Model for Subsurface and Through-Wall Imaging Applications under the Frequency Dispersion Perspective

机译:频率色散视角下地下和穿墙成像应用的传播模型

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摘要

The frequency-dependent behavior in subsurface and through-the-wall media is analyzed in this paper as well as the formation of the Brillouin precursor waveforms inherently related to this feature. The emergence of these forerunners is presented as a plausible form to explain classical impairments observed in imaging technologies. The evolution of mono- and multicycle rectangular and first derivative Gaussian pulses through two dispersive media-concrete blocks and soil-is analyzed using a frequency-domain technique and the Debye dielectric model to characterize the media, at operating frequencies below 3 GHz. The frequency-domain approach facilitated to check the influence of some parameters considered critical for the precursor emergence-operating frequency, input pulse configuration, and internal structure of the underlying medium-results in a versatile tool suitable for any kind of modulated input signal propagated through any dispersive medium. The internal multireflection model has been considered as the most suitable model to describe the transmission process underlying both subsurface and through-wall imaging technologies. Two different moisture contents have been considered for concrete as a parameter to determine the performance of through-wall imaging radar from the precursor formation perspective. The results reveal that precursor is a phenomenon to take into account for application demanding larger signal-to-noise ratios.
机译:本文分析了地下和穿墙介质中与频率有关的行为,以及与该特征固有相关的布里渊前驱物波形的形成。这些先行者的出现以一种合理的形式出现,以解释在成像技术中观察到的经典损伤。使用频域技术和Debye介电模型分析了在3 GHz以下的工作频率下单周期和多周期矩形和一阶导数高斯脉冲通过两个色散介质-混凝土块和土壤的演化,以表征介质。频域方法有助于在通用工具中检查被认为对于前体出现操作频率,输入脉冲配置和基础介质的内部结构至关重要的某些参数的影响,该工具适用于任何通过其传播的调制输入信号任何分散介质。内部多重反射模型被认为是描述地下和穿透式成像技术基础的透射过程的最合适模型。从前驱物形成的角度来看,已经考虑了两种不同的水分含量作为确定混凝土穿墙成像雷达性能的参数。结果表明,前体是需要较大信噪比的应用要考虑的现象。

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  • 来源
    《International journal of antennas and propagation》 |2013年第3期|787910.1-787910.9|共9页
  • 作者单位

    Department of Teoria de la Serial y Comunicaciones, University of Vigo, Vigo, 36310 Pontevedra, Spain;

    Klipsch School of Electrical and Computer Engineering, New Mexico State University, Las Cruces, NM 88003, USA;

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