为下一代射电望远镜传播参考信号

R. Siebrits, J. Burger, G. Adams, R. Gamatham, F. Kapp, T. Abbott, S. Malan, E. Bauermeister, L. Boyana, H. Kriel, M. Welz, N. Mnyandu, A. Otto, C. Vander Merwe, S. Tshongweni, T. Gibbon
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引用次数: 4

摘要

演示了一个完全集成的系统,通过光纤以高分支比(64)将原子钟信号直接传输到 L 波段数字转换器单元,以实现超低抖动、亚皮秒级相位和亚纳秒级定时。数字转换器单元安装在距离发射机 6 千米至 12 千米的 MeerKatradio 望远镜天线上。1712 MHz 采样时钟和每秒脉冲信号通过光纤射频技术传输到数字转换器。数字转换器对定时信号进行解调,并在内部使用这些信号对以 1712 MSPS 速率采样的天体物理信号进行时间标记。采样时钟发射器的综合抖动为 70 fs,在连接短光纤的数字转换器上,20 分钟内的有效值相位漂移为 140 fs 有效值。利用数字转换器上的板载时间间隔计数功能,在定时脉冲和射频采样时钟过零周期之间显示出短期标准偏差小于 320 ps 的次采样周期相位变化。发射机还进行了综合飞行时间测量,以补偿天线之间的不同路径延迟,估计不确定性小于 1 ns。该系统的独特之处在于,它直接向置于望远镜接收器之后的数字转换器内的采样点提供参考时钟和定时信号。最终系统完全符合 EMC 标准。利用干涉测量法对整个望远镜的相位稳定性进行了初步验证,并在 4 小时内实现了 20 ps 的漂移量级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dissemination of Reference Signals for a Next Generation Radio Telescope
A fully integrated system for transmitting atomic clock signals over optical fibre in a high branching ratio (64) directly to L-Band Digitiser units is demonstrated to achieve ultra low jitter, sub picosecond phasing and sub nanosecond timing. The Digitiser units are located on each MeerKatradio telescope antenna which is located 6 km to 12 km from the transmitter. A 1712 MHz sampling clock and a pulse per second signal are transmitted to the Digitisers by RF over Fibre techniques. The Digitisers demodulate the timing signals and use them internally to timestamp astrophysical signals which are sampled at a rate of 1712 MSPS. The integrated jitter of the sample clock transmitter is 70 fs and the RMS phase drift over 20 minutes is 140 fs RMS at the Digitiser units connected to short lengths of fibre. Sub sample period phase variation with a short term standard deviation of < 320 ps is demonstrated between the timing pulses and RF sample clock zero crossing cycles utilizing on board time interval counting on the Digitisers. An integrated time of flight measurement is also performed by the transmitter, to compensate for differential path delays between antennas, with an estimated uncertainty of <1 ns. The system is unique in that it supplies reference clock and timing signals directly to the point of sampling inside Digitisers placed after the receivers of the telescope. The final system is fully EMC qualified. Interferometry was utilized for initial verification of the full telescope phasing stability and drift of the order of 20 ps over 4 hours was achieved.
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