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Numerical reconstruction and applications of acoustic and electromagnetic ultra-wideband localized pulses generated by dynamic aperture antennas.

机译:动态孔径天线产生的声和电磁超宽带局部脉冲的数值重建和应用。

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摘要

A study is undertaken of the numerical reconstruction of acoustic and electromagnetic (EM) localized waves (LWs). The latter are carrier-free ultra-wideband pulses characterized by large focusing depths and extended ranges of localization. Special emphasis is placed on finite energy LWs that can be generated by dynamic aperture antennas with independently addressable elements. The reconstruction techniques are based on Huygens and Rayleigh-Sommerfeld integral I and II representations, both in the time and frequency domains. In contradistinction to the Weyl representation, they lend themselves to the physical realization of space-time aperture sources capable of generating localized wave solutions propagating away from the aperture plane. A detailed comparison of the three reconstruction techniques has been carried out in connection with LW solutions to the scalar wave equation, especially with respect to their handling of acausal components incorporated in the aperture excitation fields. In addition, a study is presented of the characteristic properties of LWs propagating through dispersive media modeled by the Klein-Gordon equation. It is demonstrated that contrary to expectation, the depletion of the spectral components of the LW Klein-Gordon field may be slower than that associated with the free space scalar field. Previous work by Power et al. (73) is extended by studying the acoustic bistatic scattering of a modified power spectrum (MPS) pulse from rigid and compressible spheres. The analysis allows the extraction of the radius of a sphere from the backscattered data. Finally, a special class of electromagnetic (EM) LWs, referred to as azimuthally polarized X waves (APXWs), is derived and their reconstruction is addressed, both in the time and frequency domains.
机译:对声和电磁(EM)局部波(LWs)的数值重构进行了研究。后者是无载波超宽带脉冲,其特点是聚焦深度大,定位范围扩大。特别强调的是可以由具有独立可寻址元件的动态孔径天线产生的有限能量LW。重建技术基于时域和频域中的惠更斯和瑞利-索默菲尔德积分I和II表示。与Weyl表示法不同的是,它们有助于时空孔径源的物理实现,这些源可以生成从孔径平面传播的局部波解。结合标量波方程的LW解法,对三种重建技术进行了详细的比较,特别是在处理包含在孔径激发场中的非因果分量方面。此外,对通过Klein-Gordon方程建模的色散介质传播的LW的特征进行了研究。事实证明,与预期相反,LW Klein-Gordon场的光谱分量的耗尽可能比与自由空间标量场相关的光谱慢。 Power等人先前的工作。通过研究来自刚性和可压缩球体的修正功率谱(MPS)脉冲的声双基地散射,扩展了(73)。该分析允许从反向散射数据中提取球体的半径。最后,推导了一类特殊的电磁(EM)LW,称为方位角极化X波(APXW),并在时域和频域中解决了它们的重构问题。

著录项

  • 作者

    Abdel-Rahman, Mohamed A.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 154 p.
  • 总页数 154
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:49:07

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