3.5 New developments for GNSS precise positioning and timing

M. Schulz, J. Rüffer
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Abstract

: The latest developments in the GNSS precise positioning and timing receivers from JAVAD GNSS include the option to replace the classical TCXO (Temperature Compensated Crystal Oscillator) by an OCXO (Oven Controlled Crystal Oscillator). This internal OCXO delivers an unmachted short term frequency stability 2x10-12 (@1sec) and 5x10-12 (@10sec). The position and timing signals measured using this OCXO will have great advantages, especially for flight test measurements with high dynamics or ionosphere scintillation measurements both requiring high update rates for raw measurement and positioning (up to 200Hz supported). For the long term frequency stability, the latest JAVAD GNSS receivers have the ability to precisely synchronize the internal receiver clock with external 1 PPS signal without any additional equipment. In this mode the receiver uses the external frequency as the reference, but the time offset between 1 PPS and 10 MHz signal is measured inside the receiver and can be recorded. All the observations are performed in the epoch defined by an incoming 1 PPS signal. Receiver synchronizes its internal time scale to input 1 PPS signal with accuracy less or equal 0.4 ns, without any external time interval counter. This is the optimal solution for network timing or to synchronize FTI.
3.5 GNSS精确定位授时的新进展
JAVAD GNSS精确定位和定时接收器的最新发展包括用OCXO(烤箱控制晶体振荡器)取代经典的TCXO(温度补偿晶体振荡器)的选项。这个内部OCXO提供了一个未切割的短期频率稳定性2x10-12 (@1sec)和5x10-12 (@10sec)。使用该OCXO测量的位置和定时信号将具有很大的优势,特别是对于具有高动态或电离层闪烁测量的飞行测试测量,这两种测量都需要高原始测量和定位的更新速率(支持高达200Hz)。为了长期的频率稳定性,最新的JAVAD GNSS接收机能够精确地同步内部接收机时钟与外部1 PPS信号,而无需任何额外的设备。在这种模式下,接收器使用外部频率作为参考,但在接收器内部测量1 PPS和10 MHz信号之间的时间偏移,并可以记录。所有的观测都是在输入1pps信号定义的历元内进行的。接收机内部时标同步输入精度小于等于0.4 ns的1 PPS信号,不需要任何外部时间间隔计数器。这是网络定时或同步FTI的最佳解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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