Publication | Open Access
Integrating Scientific Knowledge with Machine Learning for Engineering and Environmental Systems
65
Citations
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References
2020
Year
Artificial IntelligenceEngineeringMachine LearningMachine Learning ToolComputational Plasma PhysicsEnvironmental Impact AssessmentEnvironmental DataEnvironmental SystemsIntelligent SystemsData SciencePhysic Aware Machine LearningScientific KnowledgeKnowledge EngineeringSystems EngineeringRobot LearningPhysics-informed Machine LearningComplex ScienceData ModelingComputational Learning TheoryMachine Learning ModelFeature EngineeringKnowledge DiscoveryComputer SciencePhysics-guided Ml ModelsDeep LearningAutomated Machine LearningBusinessHybrid Physics-ml Frameworks
There is a growing consensus that solutions to complex science and engineering problems require novel methodologies that are able to integrate traditional physics-based modeling approaches with state-of-the-art machine learning (ML) techniques. This paper provides a structured overview of such techniques. Application-centric objective areas for which these approaches have been applied are summarized, and then classes of methodologies used to construct physics-guided ML models and hybrid physics-ML frameworks are described. We then provide a taxonomy of these existing techniques, which uncovers knowledge gaps and potential crossovers of methods between disciplines that can serve as ideas for future research.