Constraint feedback in solving incomplete models: a case study in sheet metal bending
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Summary
This work applies a planning method that extends constraint programming, based on the communication of a general-purpose constraint solver and a domain-specific geometric expert, to the problem of generating process plans in a real-life engineering domain, the bending of sheet metal parts.
- Type
- article
- Published
- 2002-01-01
- Cited by
- 3
- References
- 15
- OpenAlex
- https://openalex.org/W2239609541
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:7092802
Keywords
Constraint (computer-aided design), Constraint programming, Domain (mathematical analysis), Constraint logic programming, Representation (politics)
References
- Stochastic Programming
- IMACS: A Case Study in Real-World Planning
- Integrating general purpose planners and specialized reasoners: case study of a hybrid planning architecture
- Automated process planning for sheet metal bending operations
- Fuzzy set theory applied to bend sequencing for sheet metal bending
- Constraint-based process planning in sheet metal bending
- Optimized bending sequences of sheet metal bending by robot
- Process planning with conditional and conflicting advice
- The accuracy aspect in set-up determination for sheet bending
- SHEET METAL BENDING OPERATION PLANNING : USING VIRTUAL NODE GENERATION TO IMPROVE SEARCH EFFICIENCY
- Making Compromises Among Antagonist Constraints in a Planner
- Design and Manufacturing of Sheet Metal Parts: Using Features to Aid Process Planning and Resolve Manufacturability Problems
- Methods for the sequencing of sheet metal bending operations
- Practical applications of constraint programming
- Collision Detection: Algorithms and Applications
- A Constraint Engine for Manufacturing Process Planning