ANALYSIS OF MIXED INTEGER PROGRAMMING FORMULATIONS FOR SINGLE MACHINE SCHEDULING PROBLEMS WITH SEQUENCE DEPENDENT SETUP TIMES AND RELEASE DATES
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https://scielo.figshare.com/articles/ANALYSIS_OF_MIXED_INTEGER_PROGRAMMING_FORMULATIONS_FOR_SINGLE_MACHINE_SCHEDULING_PROBLEMS_WITH_SEQUENCE_DEPENDENT_SETUP_TIMES_AND_RELEASE_DATES/8128025/1
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ABSTRACT The scheduling of jobs over a single machine with sequence dependent setups is a classical problem setting that appears in many practical applications in production planning and logistics. In this work, we analyze six mixed-integer formulation paradigms for this classical context considering release dates and two objective functions: the total weighted completion time and the total weighted tardiness. For each paradigm, we present and discuss a MIP formulation, introducing in some cases new constraints to improve performance. A dominance hierarchy in terms of strength of their linear relaxations bounds is developed. We report extensive computational experiments on a variety of instances to capture several aspects of practical situations, allowing a comparison regarding size, linear relaxation and overall performance. Based on the results, discussions and recommendations are made for the considered problems.
提供机构:
SciELO journals
创建时间:
2019-05-15



