Wang B, Zhu X, Gao C, Bai Y, Dong J W, Wang L J
Joint Institute for Measurement Science, Tsinghua University, Beijing 100084, China.
State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instruments, Tsinghua University, Beijing 100084, China.
Sci Rep. 2015 Sep 9;5:13851. doi: 10.1038/srep13851.
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.
平方公里阵列(SKA)项目是一项国际合作努力,旨在建造世界上最大的射电望远镜,其收集面积达一平方公里。除了诸如探索宇宙黎明和生命摇篮等宏伟的科学目标外,SKA还需要多项革命性的技术突破,例如数千个天线的频率参考的超高精度同步。在本报告中,为了应用于SKA,我们展示了一种频率参考传播和同步方案,其中在客户端站点应用了相位噪声补偿功能。因此,一个中央集线器可以连接到大量客户端站点,从而形成星形拓扑结构。作为性能测试,来自氢脉泽(H-脉泽)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-脉泽源的特性一致,并满足SKA的要求。