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Square Kilometre Array Telescope—Precision Reference Frequency Synchronisation via 1f-2f Dissemination

机译:平方公里阵列望远镜-通过1f-2f传播实现精确的参考频率同步

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The Square Kilometre Array (SKA) project is an international effort to build the world’s largest radio telescope, with a one-square-kilometre collecting area. In addition to its ambitious scientific objectives, such as probing cosmic dawn and the cradle of life, the SKA demands several revolutionary technological breakthroughs, such as ultra-high precision synchronisation of the frequency references for thousands of antennas. In this report, with the purpose of application to the SKA, we demonstrate a frequency reference dissemination and synchronisation scheme in which the phase-noise compensation function is applied at the client site. Hence, one central hub can be linked to a large number of client sites, thus forming a star-shaped topology. As a performance test, a 100-MHz reference frequency signal from a hydrogen maser (H-maser) clock is disseminated and recovered at two remote sites. The phase-noise characteristics of the recovered reference frequency signal coincide with those of the H-maser source and satisfy the SKA requirements.
机译:平方千米阵列(SKA)项目是一项国际努力,旨在建造世界上最大的射电望远镜,该望远镜具有一个平方公里的收集区域。 SKA除了雄心勃勃的科学目标(例如探测宇宙的曙光和生命的摇篮)外,还需要一些革命性的技术突破,例如数千个天线的频率参考的超高精度同步。在本报告中,出于应用于SKA的目的,我们演示了一种频率参考传播和同步方案,其中在客户端现场应用了相位噪声补偿功能。因此,一个中央集线器可以链接到大量客户站点,从而形成星形拓扑。作为一项性能测试,来自氢气maser(H-maser)时钟的100 MHz参考频率信号在两个远程站点进行了传播和恢复。恢复的参考频率信号的相位噪声特性与H-maser源的相位噪声特性一致,并满足SKA要求。

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