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The Operational NASA Anomaly Gas Analyzer and Exploration Follow-OnsThe NASA Anomaly Gas Analyzer (AGA) is the culmination of nearly ten years of advancement of core technology originally developed by Vista Photonics through the Small Business Innovation Research (SBIR) program and expanded using NASA program funding. The AGA is a portable, battery operated, optical gas detection instrument for continuous monitoring of H2O, CO2, O2, CO, NH3, HCN, HF, HCl in the spacecraft environment. Real time, in-situ monitored, gas concentrations are communicated at 1 Hz through a built-in display on-orbit and additionally through a serial interface on the ground. The instruments function over the typical range of temperatures and pressures required for the spacecraft environment. A ten-year operational life is targeted. Seven AGA instruments are currently deployed on the International Space Station and two Orion-specific units are manifested for Artemis 2. A variation of the operational AGA is under development for lunar Human Landing Systems. A wider calibrated operating pressure envelope is required in this application. Otherwise, the instruments straightforwardly address lessons learned from the original AGA by improving aspects of thermal control, ruggedness, and ease-of-use. A subset of AGA-developed sensed gases (H2O, CO2, O2) is the subject of the Primary Constituent Monitor (PCM) development for the Habitation and Logistics Outpost (HALO) destined for lunar orbit. Two PCMs will be installed in HALO as part of the environmental control loop where they will interface with vehicle power and communications. While the basic sensor techniques are unchanged from the AGA, these instruments have been radiation hardened to survive for many years in the harsh target environment. Current development status for these instruments will be presented along with recent developments of a naval submarine variant.
Document ID
20260003174
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Nicholas R Wymore
(Johnson Space Center Houston, United States)
Brian P Rodrigue
(Johnson Space Center Houston, United States)
Jeffrey S Pilgrim
(Vista Photonics (United States) Las Cruces, United States)
Date Acquired
April 16, 2026
Publication Date
July 12, 2026
Publication Information
Publisher: International Conference on Environmental Systems
Subject Category
Spacecraft Instrumentation and Astrionics
Report/Patent Number
ICES-2026-266
Meeting Information
Meeting: 55th International Conference on Environmental Systems (ICES)
Location: Rio Grande
Country: PR
Start Date: July 12, 2026
End Date: July 16, 2026
Sponsors: International Conference on Environmental Systems
Funding Number(s)
WBS: 300750.02.01.10
WBS: 909018.37.50.72.01.01.04
CONTRACT_GRANT: 80NSSC25CA075
CONTRACT_GRANT: 80NSSC25CA015
CONTRACT_GRANT: NNX10RA08C
CONTRACT_GRANT: NNC11CA19C
CONTRACT_GRANT: NNJ12HE76P
CONTRACT_GRANT: NNJ13HB90C
CONTRACT_GRANT: NNJ14HD13P
CONTRACT_GRANT: NNX15CJ53C
CONTRACT_GRANT: NNJ16HD82P
CONTRACT_GRANT: NNJ17HD05P
CONTRACT_GRANT: 80JSC018P0002
CONTRACT_GRANT: 80JSC019P0029
CONTRACT_GRANT: N6833518C0653
CONTRACT_GRANT: N6833519C0721
Distribution Limits
Public
Copyright
Public Use Permitted.
Technical Review
External Peer Committee
Keywords
Air Monitoring
Combustion Product
Laser
Gas Sensing
AGA
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