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Three-Dimensional Interferometric ISAR Imaging Algorithm Based on Cross Coherence Processing

机译:基于交叉相干处理的三维干涉测量ISAR成像算法

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摘要

Interferometric inverse synthetic aperture radar (InISAR) has received significant attention in three-dimensional (3D) imaging due to its applications in target classification and recognition. The traditional two-dimensional (2D) ISAR image can be interpreted as a filtered projection of a 3D target’s reflectivity function onto an image plane. Such a plane usually depends on unknown radar-target geometry and dynamics, which results in difficulty interpreting an ISAR image. Using the L-shape InISAR imaging system, this paper proposes a novel 3D target reconstruction algorithm based on Dechirp processing and 2D interferometric ISAR imaging, which can jointly estimate the effective rotation vector and the height of scattering center. In order to consider only the areas of the target with meaningful interferometric phase and mitigate the effects of noise and sidelobes, a special cross-channel coherence-based detector (C3D) is introduced. Compared to the multichannel CLEAN technique, advantages of the C3D include the following: (1) the computational cost is lower without complex iteration and (2) the proposed method, which can avoid propagating errors, is more suitable for a target with multi-scattering points. Moreover, misregistration and its influence on target reconstruction are quantitatively discussed. Theoretical analysis and numerical simulations confirm the suitability of the algorithm for 3D imaging of multi-scattering point targets with high efficiency and demonstrate the reliability and effectiveness of the proposed method in the presence of noise.
机译:干涉式逆合成孔径雷达(INISAR)由于其在目标分类和识别中的应用,在三维(3D)成像中受到了显着的关注。传统的二维(2D)ISAR图像可以被解释为3D目标的反射率函数的滤波投影到图像平面上。这种平面通常取决于未知的雷达目标几何和动态,这导致难以解释ISAR图像。本文采用了基于DECHIRP处理和2D干涉测量ISAR成像的新型3D目标重建算法,可以联合估计有效旋转向量和散射中心的高度。为了仅考虑具有有意义的干涉阶段的目标的区域,并减轻噪声和侧瓣的影响,引入了特殊的交叉通道相干的检测器(C3D)。与多通道清洁技术相比,C3D的优点包括以下内容:(1)计算成本较低而不复杂迭代,并且(2)可以避免传播误差的所提出的方法更适合具有多散射的目标要点。此外,定量讨论了误解及其对目标重建的影响。理论分析和数值模拟以高效率,确认了多散射点目标的3D成像算法的适用性,并证明了所提出的方法在存在噪声中的可靠性和有效性。

著录项

  • 期刊名称 Sensors (Basel Switzerland)
  • 作者

    Qian Lv; Shaozhe Zhang;

  • 作者单位
  • 年(卷),期 2021(21),15
  • 年度 2021
  • 页码 5073
  • 总页数 23
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:3D成像;DECHIRP处理;干涉逆合成孔径雷达(INISAR);L形INISAR系统;目标重建;

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