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A Novel Method of Three-Dimensional Geometry Reconstruction of Space Targets Based on the ISAR Image Sequence

机译:基于ISAR图像序列的空间目标三维几何重构新方法

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Based on the inverse synthetic aperture radar image sequence of triaxial stabilized space targets, a novel method of three dimensional (3D) geometry reconstruction for space targets is proposed. We firstly construct the projection vectors connecting the 3D geometry and the 2D ISAR image sequence of a space target by utilizing ISAR imaging model and the radar line of sight (LOS). Then, by projecting the 3D scatterer candidates onto each imaging plane, we can accumulate the energy of the corresponding 2D scatterer in each image. The 3D scatterer candidates occupying larger accumulation energy are reserved as the real parts of the space target. Particle swarm optimization algorithm is applied to search the true 3D scatterers with high efficiency. The innovation of the proposed method lies in that it never needs the 2D scatterer extraction and association, which simplifies the reconstruction algorithm greatly compared with traditional 3D geometry reconstruction methods. Finally, experimental results based on the simulated point target are presented to validate the effectiveness and robustness of the proposed method.
机译:基于三轴稳定空间目标的逆合成孔径雷达图像序列,提出了一种新的空间目标三维(3D)几何重构方法。我们首先利用ISAR成像模型和雷达视线(LOS)构建连接空间目标的3D几何形状和2D ISAR图像序列的投影矢量。然后,通过将3D散射体候选投影到每个成像平面上,我们可以在每个图像中累积相应2D散射体的能量。占据较大累积能量的3D散射体候选物被保留为空间目标的真实部分。应用粒子群优化算法高效搜索真实的3D散射体。该方法的创新之处在于它不需要二维散射体的提取和关联,与传统的3D几何重构方法相比,极大地简化了重构算法。最后,提出了基于模拟点目标的实验结果,验证了该方法的有效性和鲁棒性。

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