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Detection of moving human micro-Doppler signature in forest environments with swaying tree components by wind

机译:随风摇曳的树木成分在森林环境中检测移动的人类微多普勒信号

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摘要

The objective of this paper is to investigate human motion in forest medium with swaying tree components due to time-varying wind effects and to observe the characteristics of the received Doppler signature from the scene. We provide the results of an accurate model accounting for the key contributions to the Doppler signature in this scenario. A realistic walking motion is generated using an analytical model extracted from empirical data. The swaying canopy motion is modeled by employing a spring response mechanism to the wind force. The backscattered field calculations from the scene comprise of contributions from the forest (including trunks, branches, and the ground) and human, and the interactions between them. An analytical forest scattering model, which accounts for the ground effects, is used to calculate the contribution from the forest. The attenuation effects due to the vegetation are accounted for. In order to characterize the effects of human motion accurately, a full wave technique, namely, method of moments (MOM) enhanced with fast multipole method (FMM), is employed for the human scattering calculations. A parallel version of MOM-FMM is implemented on a graphics processing unit based cluster to handle the large problem size. The human walking signatures created by the model are analyzed for different winds.
机译:本文的目的是研究由于风时变效应引起树木成分摇摆的森林介质中的人类运动,并观察场景中接收到的多普勒信号的特征。我们提供了一个精确模型的结果,说明了在这种情况下对多普勒签名的关键作用。使用从经验数据中提取的分析模型可以生成逼真的步行运动。通过对风力采用弹簧响应机制来模拟冠层摇摆运动。场景中的反向散射场计算包括森林(包括树干,树枝和地面)和人类的贡献以及它们之间的相互作用。分析森林散射模型(考虑了地面效应)用于计算森林的贡献。考虑了由于植被引起的衰减效应。为了准确地表征人体运动的影响,全波技术,即用快速多极方法(FMM)增强的矩量法(MOM),被用于人体散射计算。在基于图形处理单元的群集上实现了MOM-FMM的并行版本,以处理较大的问题。该模型创建的人类步行签名将针对不同的风进行分析。

著录项

  • 来源
    《Radio Science》 |2015年第3期|238-248|共11页
  • 作者单位

    Electrical Engineering and Computer Science Department, Catholic University of America, Washington, District of Columbia, USA;

    Electrical Engineering and Computer Science Department, Catholic University of America, Washington, District of Columbia, USA;

    Electrical Engineering and Computer Science Department, Catholic University of America, Washington, District of Columbia, USA;

    Electrical Engineering and Computer Science Department, Catholic University of America, Washington, District of Columbia, USA;

    Electrical Engineering and Computer Science Department, Catholic University of America, Washington, District of Columbia, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Radar; Mutual coupling; Time-frequency analysis; Radar scattering; Doppler effect; Attenuation;

    机译:雷达;相互耦合;时频分析;雷达散射;多普勒效应;衰减;

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