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This book provides an in-depth presentation of algorithms for and complexity of open shop scheduling. Open shops allow operations of a job to be executed in any order, contrary to flow and job shops where the order is pre-specified. The author brings the field up to date with more emphasis on new and recent results, and connections with graph edge coloring and mathematical programming. The book explores applications to production and operations management, wireless network scheduling, and timetabling. The book is addressed to researchers, graduate students, and practitioners in Operations Research, Operations Management, computer science and mathematics, who are developing and using mathematical approaches to applications in manufacturing, services and distributed wireless network scheduling.
Operational research. Game theory --- Mathematical statistics --- Planning (firm) --- Business management --- management --- mathematische modellen --- econometrie --- operationeel onderzoek
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recherche opérationnelle --- optimisation --- recherche opérationnelle --- optimisation
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Proportional Optimization and Fairness is a long-needed attempt to reconcile optimization with apportionment in just-in-time (JIT) sequences and find the common ground in solving problems ranging from sequencing mixed-model just-in-time assembly lines through just-in-time batch production, balancing workloads in event graphs to bandwidth allocation internet gateways and resource allocation in computer operating systems. The book argues that apportionment theory and optimization based on deviation functions provide natural benchmarks for a process, and then looks at the recent research and developments in the field. Individual chapters look at the theory of apportionment and just-in-time sequences; minimization of just-in-time sequence deviation; optimality of cyclic sequences and the oneness; bottleneck minimization; competition-free instances, Fraenkel's Conjecture, and optimal admission sequences; response time variability; applications to the Liu-Layland Problem and pinwheel scheduling; temporal capacity constraints and supply chain balancing; fair queueing and stride scheduling; and smoothing and batching.
Operational research. Game theory --- Engineering sciences. Technology --- Planning (firm) --- Production management --- Computer. Automation --- technologiebeleid --- automatisering --- mathematische modellen --- speltheorie --- productieorganisatie --- logistiek --- operationeel onderzoek --- ingenieurswetenschappen
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Operational research. Game theory --- Engineering sciences. Technology --- Planning (firm) --- Production management --- Computer. Automation --- technologiebeleid --- automatisering --- mathematische modellen --- speltheorie --- productieorganisatie --- logistiek --- operationeel onderzoek --- ingenieurswetenschappen
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