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首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >Ray-Tracing Simulation Techniques for Understanding High-Resolution SAR Images
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Ray-Tracing Simulation Techniques for Understanding High-Resolution SAR Images

机译:射线追踪模拟技术,用于理解高分辨率SAR图像

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摘要

In this paper, a simulation concept is presented for creating synthetic aperture radar (SAR) reflectivity maps based on ray tracing. Three-dimensional models of man-made objects are illuminated by a virtual SAR sensor whose signal is approximated by rays sent through the model space. To this end, open-source software tools are adapted and extended to derive output data in SAR geometry followed by creating the reflectivity map. Rays can be followed for multiple reflections within the object scene. Signals having different multiple reflection levels are stored in separate image layers. For evaluating the potentials and limits of the simulation approach, simulated reflectivity maps and distribution maps are compared with real TerraSAR-X images for various complex man-made objects like a skyscraper in Tokyo, the Wynn Hotel in Las Vegas, and the Eiffel Tower in Paris. The results show that the simulation can provide very valuable information to interpret complex SAR images or to predict the reflectivity of planned SAR image acquisitions.
机译:本文提出了一种模拟概念,用于基于光线跟踪创建合成孔径雷达(SAR)反射率图。人造物体的三维模型由虚拟SAR传感器照亮,该传感器的信号近似于通过模型空间发送的射线。为此,对开源软件工具进行了调整和扩展,以导出SAR几何形状的输出数据,然后创建反射率图。可以跟随光线在对象场景内进行多次反射。具有不同的多重反射水平的信号被存储在分开的图像层中。为了评估模拟方法的潜力和局限性,将模拟的反射率图和分布图与真实的TerraSAR-X图像进行比较,以比较各种复杂的人造物体,例如东京的摩天大楼,拉斯维加斯的永利酒店和埃菲尔铁塔。巴黎。结果表明,该仿真可以为解释复杂的SAR图像或预测计划的SAR图像采集的反射率提供非常有价值的信息。

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