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Solution methods for scheduling problems with sequence-dependent deterioration and maintenance events

Maxence Delorme, Manuel Iori, Nilson Felipe Matos Mendes

2021European Journal of Operational Research18 citationsDOIOpen Access PDF

Abstract

In this work, we study the problem of scheduling jobs and maintenance activities on a set of unrelated parallel machines, by considering that the processing time of a job increases according to a deterioration factor that depends both on the machine and on the set of jobs the machine has processed since its last maintenance. The objective we consider is to minimize the makespan. We introduce four mixed integer linear programming models, two of which using big-M constraints and the other two using an exponential number of variables. We also propose an iterated local search metaheuristic to tackle large size instances and we provide empirical evidence of the performance of the proposed approaches by means of extensive computational experiments.

Topics & Concepts

MetaheuristicJob shop schedulingComputer scienceIterated local searchIterated functionMathematical optimizationInteger programmingScheduling (production processes)Set (abstract data type)Sequence (biology)AlgorithmMathematicsScheduleGeneticsOperating systemMathematical analysisBiologyProgramming languageScheduling and Optimization AlgorithmsOptimization and Packing ProblemsAssembly Line Balancing Optimization