Belief-based fault recovery for marine robotics
- Jeremy Paul Coffelt,
- Mahya Mohammadi Kashani(Author),
- Andrzej Wasowski(Author),
- Peter Kampmann
- ROSEN Research and Technology Group,
- ,
Research Output:
Conference Article in Proceeding or Book/Report chapter
Article in proceedings
Peer-reviewOpen access
Publication Information
Output type
Research Output:
Conference Article in Proceeding or Book/Report chapter
Article in proceedings
Peer-reviewOriginal language
EnglishArticle number
paper3-RobOnticsPublication milestones
- Accepted/In press - 16/08/2022
- Published - 16/08/2022
Publication status
Published - 16/08/2022
Volume
Vol-3249Chapter Number
Vol-3249Host publication title
The Eighth Joint Ontology Workshops (JOWO’22), August 15-19, 2022, Jönköping University, SwedenAbstract
We propose a framework expanding the capabilities of underwater robots to autonomously recover from anomalous situations. The framework is built around a knowledge model developed in three stages.
First, we create a deterministic knowledge base to describe the “health” of hardware, software, and environment components involved in a mission. Next, we describe the same components probabilistically, defining probabilities of failures, faults, and fixes. Finally, we combine the deterministic and probabilistic
knowledge into a minimal ROS package designed to detect failures, isolate the underlying faults, propose fixes for the faults, and determine which is the most likely to help. We motivate the solution with a camera fault scenario and demonstrate it with a thruster failure on a real AUV and a simulated ROV.
First, we create a deterministic knowledge base to describe the “health” of hardware, software, and environment components involved in a mission. Next, we describe the same components probabilistically, defining probabilities of failures, faults, and fixes. Finally, we combine the deterministic and probabilistic
knowledge into a minimal ROS package designed to detect failures, isolate the underlying faults, propose fixes for the faults, and determine which is the most likely to help. We motivate the solution with a camera fault scenario and demonstrate it with a thruster failure on a real AUV and a simulated ROV.
Access to documents
Final published version
License:CC BY, opens in new tab
Related Event
Title
Joint Ontology Workshop
Event type
WorkshopDate
15/08/2022 - 19/08/2022Location
Jönköping University JönköpingSweden
