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Model Predictive Scheduling of Semi-cyclic Discrete-event Systems Using Switching Max-plus Linear Models and Dynamic Graphs by van den Boom, Ton J. J.; Muijsenberg, Marenne van den; De Schutter, Bart is a Computer Science article available to read on EtoBox.

What is Model Predictive Scheduling of Semi-cyclic Discrete-event Systems Using Switching Max-plus Linear Models and Dynamic Graphs about?

## Abstract In this paper we discuss scheduling of semi-cyclic discrete-event systems, for which the set of operations may vary over a limited set of possible sequences of operations. We introduce a unified modeling framework in which different types of semi-cyclic discrete-event systems can be described by switching max-plus linear (SMPL) models. We use a dynamic graph to visualize the evolution of an SMPL system over a certain period in a graphical way and to describe the order relations of the system events. We show that the dynamic graph can be used to analyse the structural properties of the system. In general the model predictive scheduling design problem for SMPL systems can be recast as a mixed integer linear programming (MILP) problem. In order to reduce the number of optimization parameters we introduce a novel reparametrization of the MILP problem. This may lead to a decrease in computational complexity.

Who reads Model Predictive Scheduling of Semi-cyclic Discrete-event Systems Using Switching Max-plus Linear Models and Dynamic Graphs?

It is typically read by researchers, students, and practitioners in Computer Science.

Author
van den Boom, Ton J. J.; Muijsenberg, Marenne van den; De Schutter, Bart
Publisher
Springer; Springer-Verlag; Kluwer Academic Publishers; Springer Science and Business Media LLC; Society for Mining, Metallurgy and Exploration Inc. (ISSN 0924-6703)
Published
2020
Language
EN
Field
Computer Science (Physical Sciences)

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