Publication | Open Access
Developing Decision Aids to Enable Human Spaceflight Autonomy
17
Citations
8
References
2016
Year
EngineeringMission RiskSpace EthicAutonomous SystemsIntelligent SystemsAutonomySpace SystemSocial SciencesIntelligent Autonomous SystemsSpace RoboticsAutonomous Mission OperationsSystems EngineeringAutonomous Decision-makingDecision TheoryMission Control CenterDistributed Space SystemsDesignSpace CommunicationsDecision AidsComputer ScienceSpacecraft EngineeringSpace HardwareSpacecraft CooperationAerospace EngineeringSpacecraft ControlSpace Mission DesignAutomationSystem AutonomyRoboticsMission-critical System
As NASA explores destinations beyond the moon, the distance between Earth and spacecraft will increase communication delays between astronauts and the Mission Control Center (MCC). Today, astronauts coordinate with MCC to request assistance and await approval to perform tasks. Many of these coordination tasks require multiple exchanges of information, (for example, taking turns). In the presence of long communication delays, the length of time between turns may lead to inefficiency or increased mission risk. Future astronauts will need software‐based decision aids to enable them to work autonomously from the Mission Control Center. These tools require the appropriate combination of mission operations functions, for example, automated planning and fault management, troubleshooting recommendations, easy‐to‐access information, and just‐in‐time training. Ensuring that these elements are properly designed and integrated requires an integrated human factors approach. This article describes a recent demonstration of autonomous mission operations using a novel software‐based decision aid on board the International Space Station. We describe how this new technology changes the way astronauts coordinate with MCC, and how the lessons learned from these early demonstrations will enable the operational autonomy needed to ensure astronauts can safely journey to Mars, and beyond.
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