空间目标部件标记ISAR成像仿真方法

    ISAR Imaging Simulation Method for Space Target Component Labeling

    • 摘要: 为满足空间目标逆合成孔径雷达(ISAR)图像解译对部件标记ISAR图像的需求,提出了一种空间目标部件标记ISAR成像仿真方法。首先,基于Delaunay算法对目标面元进行三角剖分;然后,利用简化常规摄动轨道预报模型获取空间目标的轨道运动参数,结合雷达观测几何计算可见弧段;接着,计算空间目标可见部分面元的雷达散射截面积(RCS),仿真目标回波并进行部件标记;最后,利用天宫一号(TG-1)的三维模型和轨道数据开展了部件标记仿真实验。仿真结果表明,该方法对空间目标轨道运动的预报精度较高,生成的部件标记ISAR图像能准确反映目标部件分布。该方法能自动化的生成部件标记ISAR图像,避免了人工标记效率低下和标记误差大的问题,能为基于部件标记的ISAR图像解译提供准确数据支撑,对空间目标识别与结构分析具有重要工程应用价值。

       

      Abstract: To meet the demand for component-labeled inverse synthetic aperture radar (ISAR) images in the interpretation of space target ISAR images, a simulation method for component-labeled ISAR imaging of space target is proposed. First, the target surface elements are triangulated using the Delaunay triangulation algorithm. Then, the orbital motion parameters of the space target are obtained by the SGP4 orbital propagation model, and the visible arc segment is calculated by combining the radar observation geometry. Subsequently, the radar cross section (RCS) of the visible surface elements of the space target is calculated, and the target echo is simulated and component-labeled. Finally, simulation experiments on component labeling are conducted using the three-dimensional model and orbital data of Tiangong-1 (TG-1). The simulation results demonstrate that this method achieves high calculation accuracy for the orbital motion of space targets, and the generated component-labeled ISAR images can accurately reflect the distribution of target components. This method can automatically generate component-labeled ISAR images, avoiding the problems of low efficiency and large errors in manual labeling. It provides accurate data support for the interpretation of ISAR images based on component labeling and has important engineering application value for space target recognition and structural analysis.

       

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