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A study of surface and surface-volume scattering for discrete random medium in microwave remote sensing.

机译:微波遥感中离散随机介质的表面和表面体积散射研究。

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摘要

In the study of microwave remote sensing and wave propagation in a medium, it is interesting and important to model and calculate the interaction of the electromagnetic wave with the medium, as the backscattering returns from the medium will be recorded and processed to produce satellite radar images and the wave attenuation while propagating in the medium will affect the microwave and mobile communications.;Traditionally, theoretical modelling of this problem assumes that the scatterers are interacting with the wave independently. However, in real nature, the coherence effect of these interactions due to the close-spacing of the scatterers cannot be ignored, especially in the case of an electrically dense medium. Traditional theoretical modelling also assumes that wave-interface effects are only due to single scattering on the surface. This is also less accurate since multiple scattering can also contribute to the effect, especially for rough surfaces. It is also assumed that the surface-volume interaction is only due to first order surface-volume scattering. However, second order surface-volume scattering is also important and should not be ignored. Therefore, a good and reliable theoretical model for wave scattering in the natural earth terrain should be developed for the use in microwave remote sensing, communications and satellite-based natural resource monitoring.;In this research, the backscattering model for an electrically dense medium is developed. This model incorporates the coherent effects due to the close-spacing of the scatterers. Improvement is done by considering the multiple surface scattering effect, together with the single surface scattering effect on the surface scattering formulation based on the existing integral equation model (IEM) for both the top and the bottom surfaces of the layer of the model. The backscattering model is also improved by considering up to second order surface-volume scattering. Its effect on surface, surface-volume and volume scattering terms are investigated to understand the effect of multiple surface scattering and second order surface-volume scattering in more detail. The effects of individual backscattering components to the total backscattering coefficient for co- and cross-polarized return are studied and analyzed. Comparisons are made with the field measurement results to validate the theoretical model developed.
机译:在介质中微波遥感和波传播的研究中,对电磁波与介质的相互作用进行建模和计算是非常有趣且重要的,因为将记录并处理介质的反向散射返回并处理以产生卫星雷达图像传统上,该问题的理论模型是假设散射体与波独立相互作用,因此,在介质中传播时波的衰减会影响微波和移动通信。然而,实际上,由于散射体的紧密间距而导致的这些相互作用的相干效应不能忽略,尤其是在电致密介质中。传统的理论模型还假设波界面效应仅是由于表面上的单个散射引起的。这也不太准确,因为多次散射也会影响效果,尤其是对于粗糙表面。还假定表面-体积相互作用仅是由于一阶表面-体积散射。但是,二阶表面体积散射也很重要,不应忽略。因此,应建立一个良好且可靠的自然地球地形波散射的理论模型,以用于微波遥感,通信和基于卫星的自然资源监测。;在本研究中,电致密介质的反向散射模型为发达。由于散射体的间距较近,该模型包含了相干效应。通过考虑多个表面散射效果,以及基于模型层的上表面和下表面的现有积分方程模型(IEM),对表面散射配方的单表面散射效果进行了改进。通过考虑最多二阶表面体积散射,还可以改善反向散射模型。研究了它对表面,表面体积和体积散射项的影响,以更详细地了解多重表面散射和二阶表面体积散射的影响。研究并分析了各个反向散射分量对共极化和交叉极化返回的总反向散射系数的影响。与现场测量结果进行比较以验证开发的理论模型。

著录项

  • 作者

    Syahali, Syabeela Bt.;

  • 作者单位

    Multimedia University (Malaysia).;

  • 授予单位 Multimedia University (Malaysia).;
  • 学科 Engineering Electronics and Electrical.;Remote Sensing.;Physics Optics.
  • 学位 M.Eng.Sc.
  • 年度 2010
  • 页码 181 p.
  • 总页数 181
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:57

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