Forward modeling of wave scattering and radar imaging mechanisms is the key to information extraction from synthetic aperture radar (SAR) images. Like inverse graphics in optical domain, an inherently-integrated forward-inverse approach would be promising for SAR advanced information retrieval and target reconstruction. This paper presents such an attempt to the inverse graphics for SAR imagery. A differentiable SAR renderer (DSR) is developed which reformulates the mapping and projection algorithm of SAR imaging mechanism in the differentiable form of probability maps. First-order gradients of the proposed DSR are then analytically derived which can be back-propagated from rendered image/silhouette to the target geometry and scattering attributes. A 3D inverse target reconstruction algorithm from SAR images is devised. Several simulation and reconstruction experiments are conducted, including targets with and without background, using both synthesized data or real measured inverse SAR (ISAR) data by ground radar. Results demonstrate the efficacy of the proposed DSR and its inverse approach.
翻译:与光学领域反面图象一样,一个内在一体化的前向反向方法对合成孔径雷达先进信息检索和目标重建大有希望。本文件对合成孔径雷达图像的反向图象作了这种尝试。开发了一个不同的合成孔径雷达成像器(DSR),在可变概率图形式中重新配置合成孔径雷达成像机制的绘图和投影算法。然后,从分析中得出提议的DSR的一级梯度,从成像/光谱图到目标几何和分布属性可以反向重新定位。设计了合成孔径雷达图像的反向目标重建算法。进行了若干模拟和重建实验,包括有背景和没有背景的目标,同时使用合成数据或用地面雷达实际测量的反向合成合成合成孔径雷达(ISAR)数据。结果显示了拟议的DSR及其反向方法的功效。