On the use of GPGPU computing for Space-Time Adaptive Processing on airborne systems

Jean-François Degurse, S. Kemkemian
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Abstract

New generation radar systems offer both morefi equency bandwidth and multi-channel receiving capability. This allows the use ofadvancedsignalprocessing algorithms, which delivers a major performance leap, but the amount of data to be processed and the computational workload drastically increases. In the paper, we focus on Space-Time Adaptive Processing (STAP) which purpose is to remove ground echoes, in order to enhance slow moving target detection. The downside of STAP is its high computational cost. Graphical Processing Unit (GPU) processors are used for several years now to perform general purpose computing. Although not originally made for scientifc computing, their high performance per watt efficiency on certain tasks makes it an ideal candidate for embedded radar systems where physical size and electrical consumption are very limited. We investigate the use of such processors for this application and compare their performances with classical general-purpose processor (CPU).
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GPGPU计算在机载系统空时自适应处理中的应用
新一代雷达系统提供更多的频率带宽和多通道接收能力。这允许使用先进的信号处理算法,这提供了一个主要的性能飞跃,但要处理的数据量和计算工作量急剧增加。本文重点研究了空时自适应处理(STAP)技术,该技术的目的是去除地面回波,以提高对慢速运动目标的检测能力。STAP的缺点是计算成本高。图形处理单元(GPU)处理器用于执行通用计算已经有好几年了。虽然最初不是为科学计算而制造的,但它们在某些任务上的每瓦效率高,使其成为物理尺寸和电力消耗非常有限的嵌入式雷达系统的理想候选者。我们研究了这种处理器在这个应用程序中的使用,并将它们的性能与经典的通用处理器(CPU)进行了比较。
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