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SAR image processing using GPU

机译:使用GPU的SAR图像处理

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摘要

Synthetic aperture Radar (SAR) has been extensively used for space-borne Earth observations in recent times. In conventional SAR systems analog beam-steering techniques are capable of implementing multiple operational modes, such as the Stripmap, ScanSAR, and Spotlight, to fulfill the different requirements in terms of spatial resolution and coverage. Future RADAR satellites need to resolve the complex issues such as wide area coverage and resolution. Digital beam-forming (DBF) is a promising technique to overcome the problems mentioned above. In communication satellites DBF technique is already implemented. This paper discuses the relevance of DBF in space-borne RADAR satellites for enhancements to quality imaging. To implement DBF in SAR, processing of SAR data is an important step. This work focused on processing of Level 1.1 and 1.5 SAR image data. The SAR raw data is computationally intensive to process. To resolve the computation problem, high performance computing (HPC) is necessary. The relevance of HPC for SAR data processing using an off-the-shelf graphical processing unit (GPU) over CPU is discussed in this paper. Quantitative estimates on SAR image processing performance comparisons using both CPU and GPU are also provided as validation for the results.
机译:合成孔径雷达(SAR)最近已广泛用于空间地球观测。在传统的SAR系统中,模拟光束转向技术能够实现多种操作模式,例如RILTMAP,SCANSAR和聚光灯,以满足空间分辨率和覆盖范围的不同要求。未来的雷达卫星需要解决广域覆盖和分辨率等复杂问题。数字光束形成(DBF)是一种克服上述问题的有希望的技术。在通信卫星中,已经实施了DBF技术。本文讨论了DBF在太空雷达卫星中的相关性,以提高质量成像。要在SAR中实现DBF,SAR数据的处理是一个重要的步骤。这项工作侧重于处理1.1和1.5 SAR图像数据的处理。 SAR原始数据是计算地的密集流程。为了解决计算问题,需要高性能计算(HPC)。本文讨论了HPC对SAR数据处理的相关性,在CPU上讨论了通过CPU的特性图形处理单元(GPU)。使用CPU和GPU的SAR图像处理性能比较的定量估计也被提供为结果验证。

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