DocumentCode
1769805
Title
The DREAMS experiment on the ExoMars 2016 mission for the study of Martian environment during the dust storm season
Author
Bettanini, C. ; Esposito, Floriana ; Debei, S. ; Molfese, C. ; Arruego Rodriguez, I. ; Colombatti, G. ; Harri, A.-M. ; Montmessin, F. ; Wilson, Campbell ; Aboudan, Alessio ; Abbaki, S. ; Apestigue, V. ; Bellucci, G. ; Berthelier, Jean-Jacques ; Brucato, J
Author_Institution
CISAS, Univ. degli Studi di Padova, Padua, Italy
fYear
2014
fDate
29-30 May 2014
Firstpage
167
Lastpage
173
Abstract
The ExoMars programme, which is carried out by European Space Agency (ESA) in cooperation with the Russian federal Space Agency (Roscosmos), foresees a two-steps mission to Mars. The first mission consists of an orbiter and an Entry Descent and Landing Demonstrator Module (EDM) to be launched in January 2016 and is scheduled to land on the planet during the statistical dust storm season; the second mission includes a descent module, a surface platform and a rover and will be launched in 2018. The DREAMS (Dust characterization, Risk assessment and Environment Analyser on the Martian Surface) experiment for ExoMars 2016 is an autonomous meteorological station designed to study the effect of dust on Martian environment which will operate for two Martian days (sols) relying on its own power supply after landing. DREAMS includes a suite of sensors able to analyse temperature, pressure, humidity, wind speed and direction and solar irradiance as well as an electric field probe which will perform the first electrical characterization of Mars surface atmosphere.
Keywords
Mars; aerospace instrumentation; planetary atmospheres; space vehicles; AD 2016 01; DREAMS experiment; European Space Agency; ExoMars 2016 mission; ExoMars programme; Mars surface atmosphere; Martian environment; Roscosmos; Russian federal Space Agency; autonomous meteorological station; electric field probe; electrical characterization; entry descent demonstrator module; humidity analysis; landing demonstrator module; pressure analysis; solar irradiance; statistical dust storm season; temperature analysis; wind direction; wind speed; Atmospheric measurements; Extraterrestrial measurements; Mars; Temperature measurement; Temperature sensors; ExoMars; Mars dust storm; atmospheric electric phenomena; autonomous instrument; meteorological measurements;
fLanguage
English
Publisher
ieee
Conference_Titel
Metrology for Aerospace (MetroAeroSpace), 2014 IEEE
Conference_Location
Benevento
Type
conf
DOI
10.1109/MetroAeroSpace.2014.6865914
Filename
6865914
Link To Document