García-Carreño Pablo, González-García Javier, Patino-Esteban María, Beltrán-Martínez Francisco J, Bautista-Durán Marta, López-Espí Pablo Luis, López-Pérez José A
Yebes Observatory, Centro de Desarrollos Tecnológicos, Instituto Geográfico Nacional, Ministerio de Transportes, Movilidad y Agenda Urbana, Cerro de la Palera s.n., 19141 Yebes, Spain.
Department of Signal Theory and Communications, Escuela Politecnica Superior, Universidad de Alcala, Campus Universitario, Ctra. de Madrid a Barcelona km 33.600, 28805 Alcala de Henares, Spain.
Sensors (Basel). 2022 Mar 16;22(6):2308. doi: 10.3390/s22062308.
This paper presents the new cable delay measurement system (CDMS) designed at Yebes Observatory (IGN, Spain), which is required for the VLBI Global Observing System (VGOS) stations. This system measures the phase difference between the 5 MHz reference signal from the hydrogen maser and the 5 MHz signal that reaches the broadband receiver through a coaxial cable, for the generation of calibration tones. As a result, the system detects the changes in the length of that coaxial cable due to temperature variations along the cable run and flexures caused by VGOS radio telescope movements. This CDMS outperforms the previous versions: firstly, it does not require a frequency counter for phase/delay measurements; secondly, it largely reduces the use of digital circuits; hence, reducing digital noise; and thirdly, it has a remotely controlled automatic calibration subsystem. The system was tested in the laboratory and in the radio telescope, and the measurements of both set-ups are shown. These measurements include the total noise, accuracy, hysteresis, and stability. The results in the radio telescope can be correlated with the different factors that affect the cable, such as temperature and flexures. The system allows to achieve an RMS noise of less than 0.5 ps, significantly improving the requirements established in VGOS. The system is currently installed in the Red Atlántica de Estaciones Geodinámicas y Espaciales (RAEGE)Yebes VGOS 13.2 m radio telescope, and will be installed in the Norwegian Mapping Authority (NMA) twin VGOS radio telescopes, in the Finnish Geospatial Research Institute (FGI) VGOS station and in the RAEGE Santa María VGOS radio telescope (Açores, Portugal).
本文介绍了西班牙国家地理研究所(IGN)耶贝斯天文台设计的新型电缆延迟测量系统(CDMS),这是甚长基线干涉测量全球观测系统(VGOS)台站所必需的。该系统测量氢原子钟发出的5 MHz参考信号与通过同轴电缆到达宽带接收机的5 MHz信号之间的相位差,以生成校准信号。因此,该系统能够检测由于电缆沿线温度变化以及VGOS射电望远镜移动引起的弯曲而导致的同轴电缆长度变化。该CDMS优于先前版本:首先,它在进行相位/延迟测量时不需要频率计数器;其次,它大幅减少了数字电路的使用,从而降低了数字噪声;第三,它具有远程控制的自动校准子系统。该系统在实验室和射电望远镜中进行了测试,并展示了两种设置下的测量结果。这些测量包括总噪声、精度、滞后和稳定性。射电望远镜中的测量结果可以与影响电缆的不同因素相关联,如温度和弯曲。该系统能够实现均方根噪声小于0.5皮秒,显著提高了VGOS规定的要求。该系统目前已安装在西班牙耶贝斯VGOS 13.2米射电望远镜的大地测量与空间站大西洋网络(RAEGE)中,并将安装在挪威测绘局(NMA)的双VGOS射电望远镜、芬兰地理空间研究所(FGI)的VGOS台站以及RAEGE圣玛丽亚VGOS射电望远镜(葡萄牙亚速尔群岛)中。