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  4. Unit-Aware Genetic Programming for the Development of Empirical Equations
 
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2024
Conference Paper
Title

Unit-Aware Genetic Programming for the Development of Empirical Equations

Abstract
When developing empirical equations, domain experts require these to be accurate and adhere to physical laws. Often, constants with unknown units need to be discovered alongside the equations. Traditional unit-aware genetic programming (GP) approaches cannot be used when unknown constants with undetermined units are included. This paper presents a method for dimensional analysis that propagates unknown units as "jokers" and returns the magnitude of unit violations. We propose three methods, namely evolutive culling, a repair mechanism, and a multi-objective approach, to integrate the dimensional analysis in the GP algorithm. Experiments on datasets with ground truth demonstrate comparable performance of evolutive culling and the multiobjective approach to a baseline without dimensional analysis. Extensive analysis of the results on datasets without ground truth reveals that the unit-aware algorithms make only low sacrifices in accuracy, while producing unit-adherent solutions.
Author(s)
Reuter, Julia  
Otto-von-Guericke University Magdeburg
Martinek, Viktor  
Universität Heidelberg  
Herzog, Roland  
Universität Heidelberg  
Mostaghim, Sanaz
Fraunhofer-Institut für Verkehrs- und Infrastruktursysteme IVI  
Mainwork
Parallel Problem Solving from Nature - PPSN XVIII. Proceedings. Pt.I  
Conference
International Conference on Parallel Problem Solving from Nature 2024  
DOI
10.1007/978-3-031-70055-2_11
Language
English
Fraunhofer-Institut für Verkehrs- und Infrastruktursysteme IVI  
Keyword(s)
  • genetic programming

  • unit-awareness

  • physics constraints

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