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Reinforcement Learned Adversarial Agent (ReLAA) for Active Fault Detection and Prediction in Space Habitats

Space Sciences

Reinforcement Learned Adversarial Agent (ReLAA) for Active Fault Detection and Prediction in Space Habitats

M. Overlin, S. Iannucci, et al.

Explore the cutting-edge research by Matthew Overlin, Steven Iannucci, Bradly Wilkins, Alexander McBain, and Jason Provancher, introducing the revolutionary reinforcement learning adversarial agent (ReLAA) designed for enhancing fault detection and prediction in space habitats. This innovative approach leverages a digital twin simulation to accurately identify and predict system faults, minimizing false positives and enabling the discovery of hidden system behaviors!... show more
Abstract
With growing interest for human space tourism in the twenty-first century, much attention has been directed to the robust engineering of Environmental Control and Life Support Systems in space habitats. The stable, reliable operation of such a habitat is partly achieved with an ability to recognize and predict faults. For these two purposes, a reinforcement learning adversarial agent (ReLAA) is utilized in this work. A ReLAA is trained with experimental data to actively recognize and predict faults. These capabilities are achieved by proposing actions that activate known faults in a system. Instead of issuing these harmful actions to the actual hardware, a digital twin of the mock space habitat is simulated to discover vulnerabilities that would lead to faulted operation. The methods developed in this work will allow for the discovery of damaging latent behavior, and the reduction of false positive and negative fault identification.
Publisher
npj Microgravity
Published On
Feb 13, 2023
Authors
Matthew Overlin, Steven Iannucci, Bradly Wilkins, Alexander McBain, Jason Provancher
Tags
reinforcement learning
fault detection
space habitats
adversarial agent
digital twin simulation
predictive maintenance
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