Theoretical and Computational Research in Various Scheduling Models

Nine manuscripts were published in this Special Issue on “Theoretical and Computational Research in Various Scheduling Models, 2021” of the MDPI Mathematics journal, covering a wide range of topics connected to the theory and applications of various scheduling models and their extensions/generalizat...

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LanguageEnglish
Published Basel MDPI - Multidisciplinary Digital Publishing Institute 2022
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ISBN9783036530185
3036530193
9783036530192
3036530185
DOI10.3390/books978-3-0365-3019-2

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Abstract Nine manuscripts were published in this Special Issue on “Theoretical and Computational Research in Various Scheduling Models, 2021” of the MDPI Mathematics journal, covering a wide range of topics connected to the theory and applications of various scheduling models and their extensions/generalizations. These topics include a road network maintenance project, cost reduction of the subcontracted resources, a variant of the relocation problem, a network of activities with generally distributed durations through a Markov chain, idea on how to improve the return loading rate problem by integrating the sub-tour reversal approach with the method of the theory of constraints, an extended solution method for optimizing the bi-objective no-idle permutation flowshop scheduling problem, the burn-in (B/I) procedure, the Pareto-scheduling problem with two competing agents, and three preemptive Pareto-scheduling problems with two competing agents, among others. We hope that the book will be of interest to those working in the area of various scheduling problems and provide a bridge to facilitate the interaction between researchers and practitioners in scheduling questions. Although discrete mathematics is a common method to solve scheduling problems, the further development of this method is limited due to the lack of general principles, which poses a major challenge in this research field.
AbstractList Nine manuscripts were published in this Special Issue on “Theoretical and Computational Research in Various Scheduling Models, 2021” of the MDPI Mathematics journal, covering a wide range of topics connected to the theory and applications of various scheduling models and their extensions/generalizations. These topics include a road network maintenance project, cost reduction of the subcontracted resources, a variant of the relocation problem, a network of activities with generally distributed durations through a Markov chain, idea on how to improve the return loading rate problem by integrating the sub-tour reversal approach with the method of the theory of constraints, an extended solution method for optimizing the bi-objective no-idle permutation flowshop scheduling problem, the burn-in (B/I) procedure, the Pareto-scheduling problem with two competing agents, and three preemptive Pareto-scheduling problems with two competing agents, among others. We hope that the book will be of interest to those working in the area of various scheduling problems and provide a bridge to facilitate the interaction between researchers and practitioners in scheduling questions. Although discrete mathematics is a common method to solve scheduling problems, the further development of this method is limited due to the lack of general principles, which poses a major challenge in this research field.
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Snippet Nine manuscripts were published in this Special Issue on “Theoretical and Computational Research in Various Scheduling Models, 2021” of the MDPI Mathematics...
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SubjectTerms ant colony optimization
approximation algorithms
constraint programming
energy-efficiency
equipment combination and configuration
equipment idleness
flow shop
heuristic algorithms
heuristic methods
late work
linear project
linear scheduling method
logistics
markov activity network
Mathematics and Science
metaheuristic
metaheuristics
no-idle flowshop
northwest China
operations research
pareto frontier
Pareto-scheduling
phase-type distribution
polynomial time
production management
production scheduling
Reference, Information and Interdisciplinary subjects
relocation problem
renewable and non-renewable resources
Research and information: general
resource recycling
resource-constrained scheduling
return loading rate
scheduling
scheduling on parallel machines
scheduling theory
simulated annealing
stochastic makespan
subcontracted resources
TOC
total transport distance
trade-off curve
two agents
two-agent
unrelated parallel machine scheduling
variable neighborhood descent
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Title Theoretical and Computational Research in Various Scheduling Models
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