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  4. Studying Evolutionary Solution Adaption by Using a Flexibility Benchmark Based on a Metal Cutting Process
 
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2025
Journal Article
Title

Studying Evolutionary Solution Adaption by Using a Flexibility Benchmark Based on a Metal Cutting Process

Abstract
We consider optimization for different production requirements from the viewpoint of a bio-inspired framework for system flexibility that allows us to study the ability of an algorithm to transfer solutions from previous optimization tasks, which also relates to dynamic evolutionary optimization. Optimizing manufacturing process parameters is typically a multi-objective problem with often contradictory objectives, such as production quality and production time. If production requirements change, process parameters have to be optimized again. Since optimization usually requires costly simulations based on, for example, the Finite Element method, it is of great interest to have a means to reduce the number of evaluations needed for optimization. Based on the extended Oxley model for orthogonal metal cutting, we introduce a multi-objective optimization benchmark where different materials define related optimization tasks. We use the benchmark to study the flexibility of NSGA-II, which we extend by developing two variants: (1) varying goals, which optimizes solutions for two tasks simultaneously to obtain in-between source solutions expected to be more adaptable, and (2) active–inactive genotype, which accommodates different possibilities that can be activated or deactivated. Results show that adaption with standard NSGA-II greatly reduces the number of evaluations required for optimization for a target goal. The proposed variants further improve the adaption costs, where on average, the computational effort is more than halved in comparison to the non-adapted baseline. We note that further work is needed for making the methods advantageous for real applications.
Author(s)
Francoso Dal Piccol Sotto, Leo
Fraunhofer-Institut für Algorithmen und Wissenschaftliches Rechnen SCAI  
Mayer, Sebastian  
Fraunhofer-Institut für Algorithmen und Wissenschaftliches Rechnen SCAI  
Nallani, Hemanth Janarthanam
Fraunhofer-Institut für Werkstoffmechanik IWM  
Butz, Alexander  
Fraunhofer-Institut für Werkstoffmechanik IWM  
Garcke, Jochen  
Fraunhofer-Institut für Algorithmen und Wissenschaftliches Rechnen SCAI  
Journal
Biomimetics  
File(s)
Download (810.19 KB)
Rights
CC BY 4.0: Creative Commons Attribution
DOI
10.3390/biomimetics10100663
10.24406/publica-6174
Language
English
Fraunhofer-Institut für Algorithmen und Wissenschaftliches Rechnen SCAI  
Fraunhofer-Institut für Werkstoffmechanik IWM  
Keyword(s)
  • extended Oxley model

  • manufacturing optimization

  • multi-objective optimization

  • NSGA-II

  • system flexibility

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