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1.
Astrobiology ; 19(3): 462-477, 2019 03.
Artículo en Inglés | MEDLINE | ID: mdl-30840504

RESUMEN

Exploration analog field tests, missions, and deployments enable the integration and validation of new and experimental concepts and/or technologies through strategic experimental design. The results of these operations often create new capabilities for exploration and increase confidence in, and credibility of, emerging technologies, usually at very low cost and risk to the test subjects involved. While these experiments resemble missions 10-30 years into the future, insights obtained are often of immediate value. Knowledge gained in the field translates into strategic planning data to assist long-range exploration planners, and planners influence the experimental design of field deployments, creating a synergistic relationship. The Biologic Analog Science Associated with Lava Terrains (BASALT) communication architecture is a high-fidelity analog program that emulates conditions impacting future explorers on the martian surface. This article provides (1) a brief historical review of past analog operations that deliberately used elements of a flight-like telecommunication infrastructure to add fidelity to the test, (2) samples of the accomplishments made through analog operations, and (3) potentially significant deep-space telecommunication insights gained from the BASALT program in support of future extravehicular activity exploration of Mars. This article is paired with and complements Miller et al. in this issue which focuses on the telecommunication infrastructure utilized by the BASALT team during the field deployment.


Asunto(s)
Exobiología/organización & administración , Marte , Comunicaciones por Satélite/organización & administración , Vuelo Espacial/organización & administración , Simulación del Espacio , Astronautas , Comunicación , Exobiología/historia , Exobiología/tendencias , Predicción , Historia del Siglo XX , Humanos , Comunicaciones por Satélite/historia , Comunicaciones por Satélite/tendencias , Vuelo Espacial/historia , Vuelo Espacial/tendencias , Planificación Estratégica , Estados Unidos , United States National Aeronautics and Space Administration
2.
Astrobiology ; 19(3): 245-259, 2019 03.
Artículo en Inglés | MEDLINE | ID: mdl-30840510

RESUMEN

The articles associated with this Special Collection focus on the NASA BASALT (Biologic Analog Science Associated with Lava Terrains) Research Program, which aims at answering the question, "How do we support and enable scientific exploration during human Mars missions?" To answer this the BASALT team conducted scientific field studies under simulated Mars mission conditions to both broaden our understanding of the habitability potential of basalt-rich terrains on Mars and examine the effects of science on current Mars mission concepts of operations. This article provides an overview of the BASALT research project, from the science, to the operational concepts that were tested and developed, to the technical capabilities that supported all elements of the team's research. Further, this article introduces the 12 articles that are included in this Special Collection.


Asunto(s)
Exobiología/métodos , Medio Ambiente Extraterrestre/química , Marte , Vuelo Espacial , Simulación del Espacio , Astronautas , Humanos , Silicatos/química
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