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A hybrid SDR-GPU receiver for a low-frequency array in radio astronomy

机译:用于射频天文学的低频阵列混合SDR-GPU接收器

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摘要

The Mauritius Deuterium Telescope (MDT) is an upcoming low-frequency array being built in Mauritius to observe the Deuterium hyperfine line at 327.4 MHz. This project is an opportunity to develop new techniques in radio astronomy considering the advent of the Square Kilometre Array in a few years time. The design of the MDT array targets a low-cost hybrid system consisting of Software Defined Radios (SDR) as the analogue receiver and digitiser, while a gaming Graphics Processing Unit (GPU) is used to implement the digital processing pipeline. We present the design and layout of the instrument. A polyphase filterbank (PFB) is implemented in parallel on the GPU. For an 11-station array, the PFB kernel has a computational throughput of 39.8 GiB/s. Since processing and copying can be overlapped, the latency of the processing kernels can be hidden behind the data copying to GPU memory; effectively establishing an input rate limit around 12 GiB/s due to the PCIe x16. Still, this will allow the hybrid SDR-GPU pipeline to perform real-time data acquisition and processing for the MDT. Finally, we present results from tests with real data from an FM antenna at 327 MHz.
机译:毛里求斯氘望远镜(MDT)是即将到来的低频阵列,建于毛里求斯,以观察327.4 MHz的氘高浓度线。这项项目是在几年内考虑广播天文学中的新技术,考虑到几年时间。 MDT阵列的设计针对由软件定义的无线电(SDR)组成的低成本混合系统,作为模拟接收器和DigIender,而游戏图形处理单元(GPU)用于实现数字处理流水线。我们介绍了仪器的设计和布局。多相滤波器组(PFB)在GPU上并行实现。对于11站阵列,PFB内核具有39.8 Gib / s的计算吞吐量。由于可以重叠处理和复制,因此处理内核的延迟可以隐藏在数据复制到GPU存储器后面;由于PCIe X16,有效地建立了大约12个Gib / s的输入速率限制。尽管如此,这将允许混合SDR-GPU管道对MDT执行实时数据采集和处理。最后,我们从327 MHz的FM天线的测试中存在测试结果。

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