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THE DEEP SPACE ATOMIC CLOCK: USHERING IN A NEW PARADIGM FOR RADIO NAVIGATION AND SCIENCE

机译:深空原子钟:迎来一个新的广播导航和科学范式

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The Deep Space Atomic Clock (DSAC) mission will demonstrate the on-orbit performance of a high-accuracy, high-stability miniaturized mercury ion atomic clock during a year-long experiment in Low Earth Orbit. DSAC's timing error requirement provides the frequency stability necessary to perform deep space navigation based solely on one-way radiometric tracking data. Compared to a two-way tracking paradigm, DSAC-enabled one-way tracking will benefit navigation and radio science by increasing the quantity and quality of tracking data. Additionally, DSAC also enables fully-autonomous onboard navigation useful for time-sensitive situations. The technology behind the mercury ion atomic clock and a DSAC mission overview are presented. Example deep space applications of DSAC, including navigation of a Mars orbiter and Europa flyby gravity science, highlight the benefits of DSAC-enabled one-way Doppler tracking.
机译:深度空间原子钟(DSAC)任务将展示在低地球轨道的一年长期实验期间高精度,高稳定性小型化汞离子原子时钟的轨道性能。 DSAC的定时误差要求提供仅基于单向辐射跟踪数据执行深度空间导航所需的频率稳定性。与双向跟踪范例相比,通过提高跟踪数据的数量和质量,使能够使单向跟踪的单向跟踪将受益导航和无线电科学。此外,DSAC还可以实现对时间敏感情况有用的完全自主车载导航。提供了汞离子原子钟和DSAC任务概述的技术。示例DSAC的深度空间应用,包括MARS轨道器的导航和欧罗巴飞鹅的重力科学,突出了DSAC的单级多普勒跟踪的好处。

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