LUNASERV: ADDING A GEOSPATIAL FRAMEWORK TO APOLLO SAMPLES DR. SAMUEL LAWRENCE SESE, ASU NICK ESTES SENIOR SYSTEMS ANALYST, LROC SOC, ARIZONA STATE UNIVERSITY.

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LUNASERV: ADDING A GEOSPATIAL FRAMEWORK TO APOLLO SAMPLES DR. SAMUEL LAWRENCE SESE, ASU NICK ESTES SENIOR SYSTEMS ANALYST, LROC SOC, ARIZONA STATE UNIVERSITY ERNEST CISNEROS OPERATIONS MANAGER, LROC SOC, ARIZONA STATE UNIVERSITY LUNASERV Your data, your way 1

WHAT IS LUNASERV? Lunaserv is a custom-built Web Map Service with native support for planetary IAU projections Not a data portal – Lunaserv is a WMS geospatial content delivery system service Key part of infrastructure for LROC Science Operations LROC SOC is a PDS Data Node and Lunaserv is the public-facing geospatial data delivery system Also used for internal targeting operations and science team research Ease of use provides flexibility for time-critical mission operation tasks and was a major design focus of the Lunaserv platform Compatible with JMARS desktop software, QGIS, ArcMAP, etc. – any desktop client that can access the WMS standard Free and Open Source Also used by the ISS Earth Observing team to serve Crew Earth Observations and other ISS remote sensing data in a geospatial framework For more information, visit: LUNASERV Your data, your way 2

SERVICE TIERS: DEFINITIONS Open Geospatial Consortium (OGC) OGC Web Services (OWS) Architecture Clients (Arc/Map, QGIS, JMARS) Clients (Arc/Map, QGIS, JMARS) Application Services (HTTP GET/PUT, SOAP) Application Services (HTTP GET/PUT, SOAP) Processing Services (WTD, W3DS, WCTS, WICS, CPS) Processing Services (WTD, W3DS, WCTS, WICS, CPS) Information Management Services Example: LUNASERV (WMS, WFS, CSW, UDDI) Information Management Services Example: LUNASERV (WMS, WFS, CSW, UDDI) LUNASERV Your data, your way 3

PROTOTYPE APOLLO SAMPLE GEOSPATIAL FRAMEWORK Goal is to place Apollo samples into a contextualized geospatial framework WMS compatible data service is platform independent, simplifies interface, broadens possible tools New paradigm for extraterrestrial sample context Flexible Easy to update Scalable for future growth Building on Lunaserv platform, requires <1 workday (8 person-hours) of effort Data used for this Proof of Concept: ASU Apollo Digital Petrographic Slide Collection (Howard Wilshire, USGS) See LROC PDS-released data (LRO NAC and WAC) – global to m-scale data from Moon through last PDS release Ultimate goal is to seamlessly combine the km-scale global images with the micron-scale petrology to enhance science and exploration LUNASERV Your data, your way 4

USER INTERFACE TOUR Each ASU DPSC slide has been assigned to station number and mission locations for each Apollo landing Location “eyeballed” – full-scale effort would require manual control and historical expertise User activates DPSC query layer Note positions of Apollo landing sites – user queries with mouse 5

EXAMPLE: APOLLO 11 Result of user query for samples collected near lunar module on Apollo 11 6

From DPSC layer, user can access images and data about a given sample straight from the geospatial framework LUNASERV Your data, your way 7

LUNASERV Your data, your way The Lunaserv platform enables seamless integration of km-scale imagery and mm- scale Apollo sample data This proof-of-concept built on existing technology framework is functioning right now JSC Astromaterials Research and Exploration Science is interested in using this tool to provide access to extraterrestrial sample data (e.g., in the Apollo Sample Compendium) PDART MoonDB project (K. Lehnert, Columbia Univ.) is working with ARES to provide access to sample compositional data from laboratory PIs This effort links sample compositional information with surface & subsurface geospatial information With addition of PDS data formatting, labels and documentation, access to the Apollo sample data will be significantly enhanced and more usable SUMMARY 8