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Real-time parallel processor for on-board airborne synthetic aperture radar (SAR)

机译:机载机载合成孔径雷达(SAR)的实时并行处理器

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A real-time modular architecture that implements an airborne synthetic aperture radar (SAR) processor is described. A high-efficiency computation SAR data-focusing algorithm is used in order to design a scalable architecture able to be adapted to different SAR missions. A multiprocessor digital signal processing (DSP) architecture meets both of the requirements of a high computation throughput, imposed by the real-time focusing algorithm, and of a modular onboard airborne structure. The system design is partitioned into the range-focusing circuit and the azimuth-focusing circuit. While the first stage uses a pipeline structure to interconnect the DSP processors, the azimuth subsystem implements a single input/multiple data structure. This permits an easier growth of processing capabilities and limits the inter-processor communications to a reasonable factor.
机译:描述了一种实现机载合成孔径雷达(SAR)处理器的实时模块化体系结构。为了设计可适应不同SAR任务的可伸缩体系结构,使用了高效的计算SAR数据聚焦算法。多处理器数字信号处理(DSP)体系结构既满足实时聚焦算法所要求的高计算吞吐量的要求,又满足模块化机载机载结构的要求。系统设计分为范围聚焦电路和方位角聚焦电路。在第一阶段使用流水线结构互连DSP处理器的同时,方位子系统实现单个输入/多个数据结构。这使得处理能力的增长更加容易,并将处理器间的通信限制在合理的范围内。

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