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Manufacturing and alignment tolerance analysis through Montecarlo approach for PLATO

Authors :
Jacopo Farinato
Daniele Spiga
Simonetta Chinellato
Willy Benz
Marco Gullieuszik
Marco Dima
Federico Biondi
Heike Rauer
Mauro Ghigo
Alexis Brandeker
Daniela Sicilia
Luca Marafatto
T. Bandy
Isabella Pagano
M. Schweitzer
Roberto Ragazzoni
Daniele Piazza
Giordano Bruno
Maximilian Klebor
Stefano Basso
Matteo Munari
Anders Erikson
Mathias Brändli
Maria Bergomi
Valery Mogulsky
Davide Greggio
Martin Rieder
Thierry De Roche
Valentina Viotto
M. Wieser
Demetrio Magrin
Francesco Borsa
ITA
Publication Year :
2016
Publisher :
SPIE, 2016.

Abstract

The project PLAnetary Transits and Oscillations of stars (PLATO) is one of the selected medium class (M class) missions in the framework of the ESA Cosmic Vision 2015-2025 program. The main scientific goal of PLATO is the discovery and study of extrasolar planetary systems by means of planetary transits detection. According to the current baseline, the scientific payload consists of 34 all refractive telescopes having small aperture (120mm) and wide field of view (diameter greater than 37 degrees) observing over 0.5-1 micron wavelength band. The telescopes are mounted on a common optical bench and are divided in four families of eight telescopes with an overlapping line-of-sight in order to maximize the science return. Remaining two telescopes will be dedicated to support on-board star-tracking system and will be specialized on two different photometric bands for science purposes. The performance requirement, adopted as merit function during the analysis, is specified as 90% enclosed energy contained in a square having size 2 pixels over the whole field of view with a depth of focus of +/-20 micron. Given the complexity of the system, we have followed a Montecarlo analysis approach for manufacturing and alignment tolerances. We will describe here the tolerance method and the preliminary results, speculating on the assumed risks and expected performances.

Details

Language :
German
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....78fe71e919e2d86614875b8911276304