Due date assignment single-machine scheduling with delivery times, position-dependent weights and deteriorating jobs
From MaRDI portal
Publication:6046632
DOI10.1007/s10878-023-01025-6zbMath1519.90075OpenAlexW4366524726MaRDI QIDQ6046632
Ji-Bo Wang, Dan-Yang Lv, Lei Pan, Li-Han Zhang, Xinyu Sun
Publication date: 11 May 2023
Published in: Journal of Combinatorial Optimization (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10878-023-01025-6
Cites Work
- Unnamed Item
- Models and algorithms of time-dependent scheduling
- Due-window assignment scheduling in the proportionate flow shop setting
- Single-machine serial-batch delivery scheduling with two competing agents and due date assignment
- A survey of the state-of-the-art of common due date assignment and scheduling research
- Research on single-machine scheduling with position-dependent weights and past-sequence-dependent delivery times
- Study on proportionate flowshop scheduling with due-date assignment and position-dependent weights
- Due date assignment and two-agent scheduling under multitasking environment
- The due date assignment scheduling problem with the deteriorating jobs and delivery time
- Exponential time algorithms for just-in-time scheduling problems with common due date and symmetric weights
- Parallel-machine scheduling with job-dependent cumulative deterioration effect and rejection
- Single machine scheduling problems with general position-dependent processing times and past-sequence-dependent delivery times
- On optimal due date assignment without restriction and resource allocation in group technology scheduling
- Integrated production, inventory, and batch delivery scheduling with due date assignment and two competing agents
- CON/SLK due date assignment and scheduling on a single machine with two agents
- Proportionate flowshop scheduling with position-dependent weights
- Due-window assignment scheduling problems with position-dependent weights on a single machine
This page was built for publication: Due date assignment single-machine scheduling with delivery times, position-dependent weights and deteriorating jobs