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Radar resonance reflection from sets of plane dielectric layers

机译:来自平面介质层组的雷达共振反射

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摘要

The prediction of the Resonance Scattering Theory (RST) for the reflection coefficient from a set of two contiguous plane dielectric layers separating two semi‐infinite dissimilar nonconducting media, is constructed and compared to the exact classical model solution. The comparison serves to: (a) show the excellence, accuracy, and simplicity of the RST prediction, and (b) to underline the usefulness of the RST to produce clear physical interpretations of generally complex phenomena. In addition, the analysis serves to provide a systematic method for detecting the presence of a dielectric layer under another one covering it (possibly the situation caused by an oil spill in ice‐covered Arctic regions), by certain modulation effects present in the ‘‘response surface’’ of the returned echoes, which we describe in the text. This method not only serves to detect, but also to characterize/identify, the material composition of the low or hidden layer in the bilaminar configuration. The process disentangles which resonance feature present in the radar reflection coefficient is caused by which of the two interacting layers. This, therefore, solves the inverse scattering problem for the composition and thickness not only of the top visible (ice) layer, but also of the substance (oil) hidden under that upper layer, via the radar resonances of the reflected echoes.
机译:构建了共振散射理论(RST)对分隔两个半连字符非导电介质的两个连续平面介电层的反射系数的预测,并与精确的经典模型解进行了比较.这种比较的目的是:(a)显示RST预测的卓越性、准确性和简单性,以及(b)强调RST对一般复杂现象产生清晰的物理解释的有用性。此外,该分析还提供了一种系统的方法,通过返回回波的“响应面”中存在的某些调制效应,通过覆盖它的另一个介电层下是否存在介电层(可能是由冰覆盖的北极地区的漏油引起的情况),我们在文中对此进行了描述。该方法不仅用于检测,而且用于表征/识别双胺构型中低层或隐藏层的材料成分。该过程解开了雷达反射系数中存在的哪个共振特征是由两个相互作用层中的哪一个引起的。因此,这不仅解决了顶部可见(冰)层的成分和厚度的反散射问题,而且通过反射回波的雷达共振解决了隐藏在上层下的物质(油)的成分和厚度。

著录项

  • 来源
    《journal of applied physics》 |1982年第10期|6663-6670|共页
  • 作者

    P. D. Jackins; G. C. Gaunaurd;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类
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