DocumentCode
2373806
Title
Radiation Pattern Measurements and Predictions of the PLANCK RF Qualification Model
Author
Forma, G. ; Dubruel, D. ; Marti-Canales, J. ; Paquay, M. ; Crone, G. ; Tauber, J. ; Sandri, M. ; Villa, F. ; Ristorcelli, I.
Author_Institution
Thales Alenia Space, Cannes
fYear
2008
fDate
27-31 Oct. 2008
Firstpage
761
Lastpage
764
Abstract
PLANCK is one of the scientific missions of the European Space Agency, devoted to observe the cosmic microwave background radiation with unprecedented accuracy. One of the key factors for the performance is the radiation pattern of the telescope, especially the sidelobe performance in the direction of hot celestial bodies like Sun, Earth and Moon. The satellite will operate around the L2 Lagrangian point in deep space under cryogenic conditions. These conditions can not be realized in an antenna test range for a payload of this size. Therefore, the predictions for the performance under flight conditions depend highly on numerical simulations. The model to be used had never before been verified to this level of confidentiality. The challenge was to conduct a test campaign at frequencies up to 320 GHz (far beyond the normal range of the used CATR) with a very large object (the PLANCK RF qualification model with an aperture size of 1.5 m, i.e. more than 1500 wavelength at 320 GHz) to demonstrate sidelobe levels down to -90 dB. A selection of the measurement results and comparison with predictions will be presented.
Keywords
radiation detection; radioastronomy; radiofrequency cosmic radiation; radiofrequency measurement; CATR; L2 Lagrangian point; PLANCK RF qualification model; cosmic microwave background radiation; frequency 320 GHz; radiation pattern measurements; Antenna radiation patterns; Earth; Moon; Predictive models; Qualifications; Radio frequency; Space missions; Sun; Telescopes; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Microwave Conference, 2008. EuMC 2008. 38th European
Conference_Location
Amsterdam
Print_ISBN
978-2-87487-006-4
Type
conf
DOI
10.1109/EUMC.2008.4751564
Filename
4751564
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