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Acceleration of synthetic aperture radar imaging via subaperture chirp-scaling approach based on heterogeneous graphics-processing-unit-central-processing-unit architecture

机译:基于异构图形处理单元-中央处理单元架构的子孔径chi缩放方法加速合成孔径雷达成像

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摘要

For large-scale synthetic aperture radar (SAR) data, it is difficult to achieve SAR imagery in a timely manner using traditional imaging algorithms. Subaperture architecture is introduced to a chirp-scaling algorithm to process large-scale SAR data. By means of the subaperture partition, the real data can be processed in parallel based on heterogeneous graphics processing unit-central processing unit architecture. The principle of subaperture partition is not only discussed, but also the closed form of the overlap rate for a subaperture combination under the mode is first theoretically presented, which provides a foundation for airborne real-time data processing. Finally, simulation and real data experiments validate the proposed approach. (C) 2015 Society of Photo-Optical Instrumentation Engineers (SPIE)
机译:对于大型合成孔径雷达(SAR)数据,很难使用传统的成像算法及时获得SAR图像。子孔径架构引入了线性调频缩放算法,以处理大规模SAR数据。通过子孔径分区,可以基于异构图形处理单元-中央处理单元体系结构并行处理实际数据。不仅讨论了子孔径划分的原理,而且还首次从理论上提出了该模式下子孔径组合的重叠率的闭合形式,为机载实时数据处理奠定了基础。最后,仿真和真实数据实验验证了该方法的有效性。 (C)2015年光电仪器工程师协会(SPIE)

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