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Unmanned systems health analysis through evidential reasoning networks
Joel Dunham
,
Eric Johnson
, Eric Feron
, Brian German
Aerospace Engineering
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
2
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Scopus citations
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Computer Science
Driven Approach
100%
Computational Complexity
100%
Risk Analysis
100%
Computational Power
100%
Computing Power
100%
time-delay
100%
Subject Matter Expert
100%
Effective Approach
100%
Real Time Systems
100%
Avionics
100%
Failure Analysis
100%
Keyphrases
System Health
100%
Unmanned Systems
100%
Evidential Reasoning
100%
Health Analysis
100%
Sensor Systems
20%
Data-driven Approach
20%
Relationship-based
20%
Simulation Training
20%
Computational Complexity
20%
Effective Approach
20%
Time Delay
20%
Update Rule
20%
Computational Requirements
20%
Subject Matter Experts
20%
Risk Analysis
20%
Operational Decisions
20%
Computing Power
20%
Combined Method
20%
Contingency Management
20%
Time of Use
20%
Sensor Fusion
20%
Georgia Tech
20%
Real-time Systems
20%
Approaches to Learning
20%
Flight Testing
20%
Operational Results
20%
Node-based Approach
20%
Avionics System
20%
Learning Relationships
20%
Human Oversight
20%
Low Computational Power
20%
National Airspace
20%
Flight Demonstration
20%
Urban Air Mobility
20%
Contingent Response
20%
Engineering
Health System
100%
Automatic Pilot
100%
Nodes
50%
Avionics
50%
Sensor System
50%
Case Scenario
50%
Effective Approach
50%
Computational Complexity
50%
Delay Time
50%
Computing Power
50%
Subject Matter Expert
50%
Computational Power
50%
Flight Test
50%
Failure Analysis
50%
Sensor Fusion
50%
Air Mobility
50%
Operational Result
50%
Material Science
Avionics System
100%