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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Amsterdam-ASTRON radio transient facility and analysis centre: Towards a 24 × 7, all-sky monitor for the low-frequency array (LOFAR)
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Amsterdam-ASTRON radio transient facility and analysis centre: Towards a 24 × 7, all-sky monitor for the low-frequency array (LOFAR)

机译:阿姆斯特丹-ASTRON无线电瞬变设施和分析中心:面向24×7的低频阵列全天候监视器(LOFAR)

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摘要

The Amsterdam-ASTRON Radio Transient Facility And Analysis Centre (AARTFAAC) project aims to implement an all-sky monitor (ASM), using the lowfrequency array (LOFAR) telescope. It will enable real-time, 24 × 7 monitoring for low-frequency radio transients over most of the sky locally visible to the LOFAR at time scales ranging from seconds to several days, and rapid triggering of follow-up observations with the full LOFAR on detection of potential transient candidates. These requirements pose several implementation challenges: imaging of an all-sky field of view, low latencies of processing, continuous availability and autonomous operation of the ASM. The first of these has already resulted in the correlator for the ASM being the largest in the world in terms of the number of input data streams. We have carried out test observations using existing LOFAR infrastructure, in order to quantify and constrain crucial instrumental design criteria for the ASM. In this study, we present an overview of the AARTFAAC data-processing pipeline and illustrate some of the aforementioned challenges by showing all-sky images obtained from one of the test observations. These results provide quantitative estimates of the capabilities of the instrument.
机译:阿姆斯特丹-ASTRON无线电暂态设施和分析中心(AARTFAAC)项目旨在使用低频阵列(LOFAR)望远镜实施全天候监视仪(ASM)。它可以对LOFAR本地可见的大部分天空中的低频无线电瞬变进行实时24×7监视,时间范围从几秒到几天不等,并且在整个LOFAR开启时可以快速触发后续观测检测潜在的瞬态候选者。这些要求带来了一些实施方面的挑战:全天候视野的成像,低处理延迟,ASM的连续可用性和自主运行。其中第一个已经使ASM的相关器在输入数据流数量方面成为世界上最大的。我们使用现有的LOFAR基础结构进行了测试观察,以便量化和约束ASM的关键仪器设计标准。在这项研究中,我们提供了AARTFAAC数据处理管道的概述,并通过显示从一项测试观测值获得的全天图像来说明上述挑战。这些结果提供了对仪器功能的定量估计。

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