A random-key encoded harmony search approach for energy-efficient production scheduling with shared resources

C.A. Garcia-Santiago, Javier Del Ser, C. Upton, F. Quilligan, S. Gil-Lopez, Sancho Salcedo-Sanz

Research output: Contribution to journalArticlepeer-review

24 Citations (Scopus)

Abstract

When seeking near-optimal solutions for complex scheduling problems, meta-heuristics demonstrate good performance with affordable computational effort. This has resulted in a gravitation towards these approaches when researching industrial use-cases such as energy-efficient production planning. However, much of the previous research makes assumptions about softer constraints that affect planning strategies and about how human planners interact with the algorithm in a live production environment. This article describes a job-shop problem that focuses on minimizing energy consumption across a production facility of shared resources. The application scenario is based on real facilities made available by the Irish Center for Manufacturing Research. The formulated problem is tackled via harmony search heuristics with random keys encoding. Simulation results are compared to a genetic algorithm, a simulated annealing approach and a first-come-first-served scheduling. The superior performance obtained by the proposed scheduler paves the way towards its practical implementation over industrial production chains.
Original languageEnglish
Pages (from-to)1481-1496
Number of pages16
Journalunknown
Volumeunknown
Issue number11
DOIs
Publication statusPublished - 2 Nov 2015

Keywords

  • random keys
  • energy efficiency
  • harmony search
  • production scheduling

Project and Funding Information

  • Project ID
  • info:eu-repo/grantAgreement/EC/FP7/260111/EU/Knowledge, Awareness and Prediction of Man, Machine, Material and Method in Manufacturing/KAP
  • Funding Info
  • European Unión, FP7

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