A novel, on-board satellite spread spectrum correlator

A. Jenkins, A. M. Street, S. Morley, C. Grovenor, D. Dew-Hughes, D. Edwards
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引用次数: 2

Abstract

Currently, there is much research activity in the area of satellite on-board signal processing. This interest stems from the potential to use the space segment as more than just a transponder. On-board processing would improve the overall link budget and allow such features as signal re-routing to be exploited. Typically, most multiple access schemes to the satellite use either time or frequency division techniques. However, spread spectrum multiple access techniques are gaining in popularity and can, in certain instances, provide a viable alternative to the above methods. As with any spread spectrum system, the implementation of the correlator dictates, to an extent, the overall system performance. This paper describes a novel implementation of the correlation function which would be suited to space payloads and in addition considers the various design constraints and benefits. It then reports on the experimental results obtained using a prototype device operating in the C-band region with a spreading code rate of up to 500 Mbit/s. Implementation of the design in high temperature superconducting (HTS) technology is then discussed and results for an HTS delay line fabricated on a 50 mm diameter wafer presented.<>
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一种新型星载扩频相关器
目前,卫星星载信号处理领域的研究较多。这种兴趣源于将太空部分不仅仅用作应答器的潜力。机载处理将改善整体链路预算,并允许利用信号重路由等功能。通常,大多数卫星的多址方案要么使用时分技术,要么使用频分技术。然而,扩频多址技术越来越受欢迎,并且在某些情况下可以提供上述方法的可行替代方案。与任何扩频系统一样,相关器的实现在一定程度上决定了系统的整体性能。本文描述了一种适用于空间有效载荷的相关函数的新实现,并考虑了各种设计约束和效益。然后报告了在c波段工作的原型器件的实验结果,其扩展码率高达500mbit /s。然后讨论了设计在高温超导(HTS)技术中的实现,并给出了在50mm直径晶圆上制作高温超导延迟线的结果。
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