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dc.contributor.author
홍정우
dc.date.accessioned
2019-08-28T07:41:03Z
dc.date.available
2019-08-28T07:41:03Z
dc.date.issued
2011-12-01
dc.identifier.issn
0098-3004
dc.identifier.uri
https://repository.kisti.re.kr/handle/10580/13981
dc.description.abstract
Topographyoverterrestrialorotherplanetarysurfacesisanimportantbasedataforvirtualreality
construction.Inparticular,withinaccessibletopographysuchastheMartiansurface,virtualreality
provides greatvaluenotonlyforpublicinteractionbutalsoforscientificresearch.For thelatterapplication,
sincefieldsurveysareessentialforthegeologicalandgeomorphologicalresearches,thevirtualreality
environmentcreatedbasedonverifiedtopographicproducts providesanalternativesolutionforplanetary
research.
Theperformanceofvirtualrealityimplementationoveraplanetarysurfacecanbeassessedbytwo
majorfactors:(1)Thegeodeticallycontrolledbasetopographicproducts,suchasDTMandortho-image,
and (2)Technologicalintegration oftopographicproductsintovirtualrealitysoftwareandhardware.
For thefirstaspect,themulti-resolutionstereoanalysisapproachhasalreadyprovidedasolidbasissothat
specific topographicdatasetsovertestingareaswere generatedbythehierarchicalprocessor.Toaddress
the secondproblem,aparallelprocessorwithmultiple screendisplaycombining3Ddisplaysoftwarewas
employedinthisresearch.
As demonstratedinthispaper,theconstructedMartianvirtualenvironmentshowedhighlydetailed
featuresovertheAthabascaValles(oneofformerpotentialMarsExplorationRoverlandingsites)and
Eberswaldecrater(oneofthemainoriginallandingcandidatesfortheNASA’srovermissionscheduledto
launch inlate2011).Theemploymentofsuchvirtual realityenvironmentsisexpectedtobeapowerful
simulatorafterintegratinga3DMartianmodel,engineeringandenvironmentconstraintsforMartian
geologicalandgeomorphicresearchesincluding landing siteselectionandrovernavigation.
dc.language
eng
dc.relation.ispartofseries
Computers & geosciences
dc.title
Implementation of Martian virtual reality environment using very high-resolution stereo topographic data
dc.citation.endPage
195
dc.citation.startPage
184
dc.citation.volume
44
dc.subject.keyword
Mars
dc.subject.keyword
High resolution DTM
dc.subject.keyword
Ortho-image
dc.subject.keyword
Virtual reality
dc.subject.keyword
stereo analysis
dc.subject.keyword
Geomorphology
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7. KISTI 연구성과 > 학술지 발표논문
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