LANDSAFE: LANDING SITE RISK ANALYSIS SOFTWARE FRAMEWORK; ; Cornet, Yves et alin Int. Arch. Photogramm. Remote Sens. Spatial Inf. Sci. (2012), XXXIX(B4), 505-510 The European Space Agency (ESA) is planning a Lunar Lander mission in the 2018 timeframe that will demonstrate precise soft landing at the polar regions of the Moon. To ensure a safe and successful ... [more ▼] The European Space Agency (ESA) is planning a Lunar Lander mission in the 2018 timeframe that will demonstrate precise soft landing at the polar regions of the Moon. To ensure a safe and successful landing a careful risk analysis has to be carried out. This is comprised of identifying favorable target areas and evaluating the surface conditions in these areas. Features like craters, boulders, steep slopes, rough surfaces and shadow areas have to be identified in order to assess the risk associated to a landing site in terms of a successful touchdown and subsequent surface operation of the lander. In addition, global illumination conditions at the landing site have to be simulated and analyzed. The Landing Site Risk Analysis software framework (LandSAfe) is a system for the analysis, selection and certification of safe landing sites on the lunar surface. LandSAfe generates several data products including high resolution digital terrain models (DTMs), hazard maps, illumination maps, temperature maps and surface reflectance maps which assist the user in evaluating potential landing site candidates. This paper presents the LandSAfe system and describes the methods and products of the different modules. For one candidate landing site on the rim of Shackleton crater at the south pole of the Moon a high resolution DTM is showcased. * Corresponding [less ▲] Detailed reference viewed: 16 (1 ULg) CHOLTIC Epidémies de choléra au lac Tanganyika induites par les changements climatiques ?; ; et al in Sciences Connection (2011), 35(Juillet-Août), 38-42 Detailed reference viewed: 58 (7 ULg) Transformée de Hough et détection de linéaments sur images satellitaires et modèles numériques de terrainPoncelet, Nadia ; Cornet, Yves ![]() in Bulletin de la Société Géographique de Liège (2010), 54 Detailed reference viewed: 136 (36 ULg) |
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