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应用于射电天文的高效实时管道数据流传输与处理技术

Efficient Real-time Data Transmission and Processing Technologies Applied to Radio Astronomy

  • 摘要: 针对超宽带及多波束接收系统海量天文信号实时高效传输与处理问题,对基于现场可编程门阵列(Field Programmable Gate Array,FPGA)+图形处理器(Graphics Processing Unit,GPU)的主流终端设备软件系统进行了测试分析。超宽带接收设备要求终端系统软件能够在更宽带宽、更高时间分辨率和频率分辨率的条件下,实现数据流实时传输与处理。结合大口径射电观测设备未来发展的方向,提出了利用高速并行环形缓冲区实现数据流缓存,基于图形处理器集群实现数据流实时处理,基于BeeGFS实现分布式并行数据存储,模块化构建射电天文信号传输管道软件的设计思路。

     

    Abstract: Aiming at problems of massive signals real-time transmission and processing in ultra-wideband and multi-beam receiving systems, we tested and analyzed the related software of the mainstream backend system based on FPGA + GPU. The ultra-wide band receiving equipment required the backend system software to be capable of wider bandwidth and higher time resolution and higher frequency resolution conditions, as well as the realization of real-time data stream transmission and processing. Combined with the future development direction of large aperture radio observation equipment, it was proposed to use high-speed parallel ring buffers to achieve data stream caching, GPU clusters to achieve data stream real-time processing, and distributed parallel data storage based on BeeGFS, modular construction of data stream transmission pipelines software design ideas.

     

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