Scheduling in production, supply chain and Industry 4.0 systems by optimal control: fundamentals, state-of-the-art and applications
Планирование в системах производства, цепочек поставок и Индустрии 4.0 методами оптимального управления: основы, современное состояние и приложения
2018-03-01
SCID: 54.1/6aqvv2us
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Industry 4.0deterministic maximum principleoptimal controlproduction schedulingsupply chain
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Abstract (AI)
This paper presents a survey on the applications of optimal control to scheduling in production, supply chain and Industry 4.0 systems with a focus on the deterministic maximum principle. The first objective is to derive major contributions, application areas, limitations, as well as research and application recommendations for the future research. The second objective is to explain control engineering models in terms of industrial engineering and production management. To achieve these objectives, optimal control models, qualitative methods of performance analysis and computational methods for optimal control are considered. We provide a brief historic overview and clarify major mathematical fundamentals whereby the control engineering terms are brought into correspondence with industrial engineering and management. The survey allows the grouping of models with only terminal constraints with application to master production scheduling, models with hybrid terminal–logical constraints with applications to short term job and flow shop scheduling, and hybrid structural–terminal–logical constraints with applications to customised assembly systems such as Industry 4.0. Computational algorithms in state, control and adjoint variable spaces are discussed.
Key Findings
1
It maps control-engineering concepts and models to industrial engineering and production-management terminology, clarifying their mathematical foundations and practical interpretation.
2
Scheduling models are grouped by constraint structure: terminal constraints for master production scheduling, hybrid terminal–logical constraints for job and flow-shop scheduling, and hybrid structural–terminal–logical constraints for customized assembly systems.
3
The review covers qualitative performance-analysis methods and computational algorithms operating in state, control, and adjoint-variable spaces.
4
The survey establishes optimal control, particularly the deterministic maximum principle, as a framework for scheduling production, supply chain, and Industry 4.0 systems.
5
The survey identifies major contributions, application areas, limitations, and recommendations for future research and industrial applications of optimal-control scheduling.
Research Object
scheduling in production, supply chain, and Industry 4.0 systems
Research Subject
applications, models, constraints, performance analysis, and computational methods of optimal control for scheduling
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2018-03-01
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