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A frequency transfer and cleanup system for ultra-high stability at both long and short times for the cassini Ka-band experiment

机译:Cassini KA波段实验的长短短期超高稳定性的频率传输和清理系统

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摘要

New radio science experiments, including a gravitational wave search and several atmospheric occultation studies, are planned for the Cassini Ka-band experiment. These experiments are made possible by reduced solar-induced phase fluctuations at the high frequency (32 GHz) of the radio link between the earth and the spacecraft. In order to match the improved link performance, a significant upgrade is under way to improve the frequency stability capabilities of NASA's Deep Space Network (DSN). Significant improvements are being undertaken in many areas, including antenna vibration and (wet) tropospheric calibration, in addition to frequency generation and distribution. We describe here the design and development of a system to provide a reference signal with the highest possible frequency stability for both long-term, short-term, and phase noise, at an antenna (DSS 25) that is remote from the frequency standards room at SPC-10 at the Goldstone site. The new technologies were developed in order to meet the very tight requirements. They are: (1) a Stabilized Fiber-Optic Distribution Assembly (SFODA) that includes active compensation of thermal variations to transfer long-term stability over 16 km of ordinary fiber-optic cable, and (2) a Compensated Sapphire Oscillator (CSO) that provides short-term performance in a cryocooled sapphire oscillator with ultra-high short-term stability and low phase noise.
机译:计划为Cassini KA波段实验计划新的无线电科学实验,包括引力波搜索和几种大气掩星研究。通过在地球和航天器之间的无线电链路的高频(32 GHz)处的太阳能引起的相位波动降低了这些实验。为了匹配改进的链接性能,正在进行重大升级来提高美国国家航空航天局的深空网(DSN)的频率稳定性能力。除了频率产生和分布外,许多领域,包括天线振动和(湿)对流层校准的许多领域正在进行重大改进。我们在这里描述了一种系统的设计和开发,用于在远离频率标准房间的天线(DSS 25)处提供具有最高可能频率稳定性的参考信号,该参考信号具有最高的频率稳定性,该参考信号在频率标准室的天线(DSS 25)中在Goldstone网站的SPC-10。开发了新技术,以满足非常紧张的要求。它们是:(1)(1)稳定的光纤分配组件(SFODA),包括热变化的主动补偿,以在普通光纤电缆的16公里处传递长期稳定性,以及(2)补偿的蓝宝石振荡器(CSO)这在龙囊冷却的蓝宝石振荡器中提供了短期性能,具有超高短期稳定性和低相位噪声。

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