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The AARTFAAC All-Sky Monitor: System Design and Implementation

机译:AARTFAAC全天候监控器:系统设计和实现

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The Amsterdam–ASTRON Radio Transients Facility and Analysis Center (AARTFAAC) all-sky monitor is a sensitive, real-time transient detector based on the Low Frequency Array (LOFAR). It generates images of the low frequency radio sky with spatial resolution of tens of arcmin, MHz bandwidths, and a time cadence of a few seconds, while simultaneously but independently observing with LOFAR. The image timeseries is then monitored for short and bright radio transients. On detection of a transient, a low latency trigger will be generated for LOFAR, which can interrupt its schedule to carry out follow-up observations of the trigger location at high sensitivity and resolutions. In this paper, we describe our heterogeneous, hierarchical design to manage the 259Gbps raw data rate and large scale computing to produce real-time images with minimum latency. We discuss the implementation of the instrumentation, its performance and scalability.
机译:阿姆斯特丹–ASTRON无线电瞬变设施和分析中心(AARTFAAC)全天候监控器是基于低频阵列(LOFAR)的灵敏的实时瞬态检测器。它以数十个arcmin,MHz带宽的空间分辨率和几秒钟的时间节奏生成低频无线电天空的图像,同时使用LOFAR进行独立观测。然后,监视图像时间序列的短暂和明亮的无线电瞬变。在检测到瞬态时,将为LOFAR生成低等待时间的触发器,该触发器可能会中断其计划,以高灵敏度和高分辨率对触发器位置进行后续观察。在本文中,我们描述了我们的异构,分层设计来管理259Gbps原始数据速率,并进行大规模计算以生成具有最小延迟的实时图像。我们讨论了仪器的实现,其性能和可伸缩性。

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