用于SKA的可重构光连接波束形成器和相关器处理节点

G. Hampson, J. Tuthill, A. Brown, J. Bunton, T. Bateman
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引用次数: 1

摘要

几十年来,数字信号处理(DSP)节点被设计用于处理从射电望远镜阵列接收到的数字数据。所有这些节点的共同线程是:数字通信、处理和存储。从根本上说,每个系统的目标都是为当时可用的技术提供最大的操作能力。随着系统规模的增长,一个关键的性能指标显然是处理节点的通信方式。沟通不畅可能导致计划延迟、操作性能降低和系统成本增加。平方公里阵列(SKA)项目代表了相对于当前射电天文望远镜在系统规模上的巨大飞跃。本文探讨了目前在这一领域的工作,并介绍了全光连接处理和存储节点的可能性。该节点可用于多级多相滤波器组、波束形成和相关。这里介绍的应用是射电天文学,但它也可以应用于国防和电信系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A reconfigurable optically connected beamformer and correlator processing node for SKA
For many decades Digital Signal Processing (DSP) nodes have been designed for processing digital data received from arrays of radio telescopes. Common threads in all these nodes are: digital communications, processing and memory. Fundamentally the aim of each system was to provide the greatest operational capability for the technology available at that time. As the systems grew in size it became apparent that a key performance indicator was how processing nodes communicated. Poor communication could result in delayed schedules, reduced operational performance and higher system costs. The Square Kilometre Array (SKA) project represents a quantum leap in system size relative to current radio astronomy telescopes. This paper explores current work in this area and introduces the possibility of a fully optically connected processing and memory node. Such a node could be utilized for multi-stage polyphase filterbanks, beamforming and correlation. The application presented here is radio astronomy, but it could also be applied to defence and telecommunication systems.
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