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Stable Photonic Links for Frequency and Time Transfer in the Deep-Space Network and Antenna Arrays

机译:用于深空网络和天线阵列中频率和时间传输的稳定光子链路

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摘要

For more than two decades, NASA deep space network (DSN) frequency and timing metrology has been a driving application for remote transfer of stable radio-frequency signals over fiber-optic cables. Precise, accurate, and stable signals are essential for deep-space communication and tracking, and syntonized and synchronized reference signals from atomic clocks calibrated to coordinated universal time must often be distributed over large distances. Fiber-optic technologies developed at the jet propulsion laboratory have resulted in several operational signal transport capabilities that enable precise spacecraft navigation and sensitive radio science experiments. These techniques are now finding further applicability in metrology applications to remotely compare ultra stable microwave and optical atomic clocks and for antenna array X- and Ka-band signal transport applications where temporal phase stability and alignment are critical. The pioneering DSN photonic link developments and capabilities are summarized, and a stabilized multiphotonic link architecture for ultrastable signal transport in antenna arrays is described.
机译:在过去的二十多年中,NASA深空网络(DSN)的频率和定时计量一直是通过光纤电缆远程传输稳定的射频信号的驱动应用。精确,准确和稳定的信号对于深空通信和跟踪必不可少,来自校准为协调世界时的原子钟的同步参考信号通常必须分布很长的距离。喷气推进实验室开发的光纤技术带来了多种运行信号传输功能,可实现精确的航天器导航和敏感的无线电科学实验。现在,这些技术正在计量学应用中进一步应用,以远程比较超稳定的微波和光原子钟,以及在时间相位稳定性和对准至关重要的天线阵列X和Ka波段信号传输应用中。总结了开创性的DSN光子链路发展和能力,并描述了用于天线阵列中超稳定信号传输的稳定多光子链路体系结构。

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