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Development of two-dimensional parametric radar signal modeling and estimation techniques with application to target identification.

机译:二维参数化雷达信号建模和估计技术的发展及其在目标识别中的应用。

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摘要

This dissertation develops one and two-dimensional signal processing models and algorithms which are utilized in the Radar Target Identification Problem. A basic assumption of this work is that the high-frequency scattering from a radar target, such as an aircraft, land-based vehicle, or ship, is comprised of the sum of the scattering from a finite number of canonical scattering centers, each with a specific location and identity. By high-frequency it is meant that the overall size of the target is at least one wavelength. The scattering center assumption is more valid as the individual scattering centers become more electrically isolated. If two individual scattering centers are electrically close, then their combined response is, in general, not the sum of their individual responses.; First, this dissertation investigates the electromagnetic scattering characteristics of canonical scattering centers. Canonical scattering centers are scattering centers on a target which account for the vast majority of the scattering from that target in the high-frequency case. Some of the targets of interest in this work are aircraft, tanks, trucks, automobiles and ships. Predominant scattering centers on these targets include corners, edges, plates, dihedrals, trihedrals, and cylinders. The scattering centers are described by their scattering characteristics as functions of angle, frequency, and polarization.; Second, this dissertation develops a two-dimensional (2-D) signal processing technique for locating and characterizing scattering centers from radar data. The radar gathers scattering data of a target at both multiple frequencies and multiple angles. This type of data is gathered (in raw form) by both Synthetic Aperture Radars and Inverse Synthetic Aperture Radars. The 2-D signal processing technique developed here is based on a 2-D extension of a total least squares (TLS) solution to a Prony Model and is called the 2-D TLS-Prony Technique. This technique can use single or multiple-polarization data. With full-polarization data, polarimetric characteristics of the scattering centers are found using the transient polarization response concept. This concept uses an ellipse to characterize the polarimetric characteristics of each scattering center. The abilities of the 2-D TLS-Prony Technique are demonstrated utilizing simulated 2-D radar data.
机译:本文提出了一种用于雷达目标识别的一维和二维信号处理模型和算法。这项工作的基本假设是,来自雷达目标(例如飞机,陆上车辆或轮船)的高频散射由有限数量的规范散射中心的散射总和组成,每个散射中心具体的位置和身份。高频是指靶的总尺寸为至少一个波长。随着各个散射中心变得更加电隔离,散射中心的假设更加有效。如果两个单独的散射中心在电气上接近,则它们的组合响应通常不是它们各自响应的总和。首先,本文研究了标准散射中心的电磁散射特性。典型的散射中心是目标上的散射中心,在高频情况下,该散射中心占该目标的绝大多数散射。这项工作中感兴趣的一些目标是飞机,坦克,卡车,汽车和轮船。这些目标上的主要散射中心包括角,边,板,二面体,三面体和圆柱体。散射中心通过其散射特性来描述,该散射特性是角度,频率和偏振的函数。其次,本文开发了一种二维(2-D)信号处理技术,用于从雷达数据中定位和表征散射中心。雷达以多个频率和多个角度收集目标的散射数据。合成孔径雷达和逆合成孔径雷达都以原始形式收集此类数据。此处开发的2D信号处理技术基于总最小二乘(TLS)解决方案对Prony模型的2D扩展,被称为2D TLS-Prony技术。该技术可以使用单极化或多极化数据。对于全极化数据,使用瞬态极化响应概念可以发现散射中心的极化特征。这个概念使用椭圆来表征每个散射中心的偏振特性。利用模拟的2-D雷达数据演示了2-D TLS-Prony技术的功能。

著录项

  • 作者

    Sacchini, Joseph John.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 301 p.
  • 总页数 301
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

  • 入库时间 2022-08-17 11:50:13

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