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Автор Anna M Leese de Escobar
Автор Deepnarayan Gupta
Автор Shön Sloat
Автор Harper J Whitehouse
Дата выпуска 2006-06-01
dc.description While state-of-the-art cryogenic receiver front end technology becomes more reliable and cost effective, the extent of actual performance gains still remains questionable and ill-defined. In order to support quantitative insight into cryogenic system deployment, this investigation explores the system performance characteristics of a generalized receiver model as a function of component temperature, antenna position (ground or space-based), antenna orientation and operational frequency. Specifically, the advantages offered by cryogenic relative to conventional components are analytically formulated and quantitatively assessed for a representative satellite up/down link antenna/receiver system. The extent to which signals can be usefully received is determined by the noise levels (natural and man-made) received by the antenna and those generated within the receiver. In order to characterize the upper bound of system performance, only natural sources of noise are investigated at the exclusion of potential man-made sources. Moreover, the magnitude of these noise contributions are observed to vary with frequency and are empirically characterized over a broad spectra from HF to mm wave. A general RF front end model is formulated to support a fully parametric analysis. The focus of this investigation is to provide a fundamental understanding of the real benefits that may be derived from cryogenic system implementation.
Формат application.pdf
Издатель Institute of Physics Publishing
Копирайт © 2006 IOP Publishing Ltd
Название Generalized Parametric Analysis of Cryogenic Receiver System Deployment
Тип paper
DOI 10.1088/1742-6596/43/1/349
Electronic ISSN 1742-6596
Print ISSN 1742-6588
Журнал Journal of Physics: Conference Series
Том 43
Первая страница 1424
Последняя страница 1427
Выпуск 1

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