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Unformatted digital fiber-optic data transmission for radio astronomy front-ends

机译:用于射电天文前端的无格式数字光纤数据传输

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摘要

We report on the development of a prototype integrated receiver front-end that combines all conversions from RF to baseband, from analog to digital, and from copper to fiber into one compact assembly, with the necessary gain and stability suitable for radio astronomy applications. The emphasis in this article is on a novel digital data link over optical fiber which requires no formatting in the front-end, greatly reducing the complexity, bulk, and power consumption of digital electronics inside the antenna, facilitating its integration with the analog components, and minimizing the self-generated radio-frequency interference (RFI) which could leak into the signal path. Management of the serial data link is performed entirely in the back-end based on the statistical properties of signals with a strong random noise component. In this way, the full benefits of precision and stability afforded by conventional digital data transmission are realized with far less overhead at the focal plane of a radio telescope.
机译:我们报告了一个原型集成接收器前端的开发,该前端将射频到基带,模拟到数字,铜到光纤的所有转换组合到一个紧凑的组件中,并具有适合射电天文应用的必要增益和稳定性。本文的重点是通过光纤的新型数字数据链路,该链路无需在前端进行格式化,从而大大降低了天线内部数字电子设备的复杂性,体积和功耗,从而促进了其与模拟组件的集成,并最小化可能泄漏到信号路径中的自生射频干扰(RFI)。串行数据链路的管理完全基于具有强大随机噪声成分的信号的统计属性在后端执行。以这种方式,实现了常规数字数据传输所带来的精度和稳定性的全部好处,而在射电望远镜的焦平面上的开销却大大减少。

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