A two-stage flow shop scheduling with a critical machine and batch availability

Author:

Gerstl Enrique1,Mosheiov Gur2

Affiliation:

1. 1School of Business Administration, The Hebrew University,Jerusalem, Israel

2. 2School of Business Administration, The Hebrew University,Jerusalem, Israel.

Abstract

AbstractWe study a two-stage flowshop, where each job is processed on the first (critical) machine, and then continues to one of two second-stage (dedicated) machines. We assume identical (but machine-dependent) job processing times. Jobs are processed on the critical machine in batches, and a setup time is required when starting a new batch. The setting assumes batch-availability, i.e., jobs become available for the second stage only when their entire batch is completed on the critical machine. We consider three objective functions: minimum makespan, minimum total load, and minimum weighted flow-time. Polynomial time dynamic programming algorithms are introduced, which are numerically shown to be able to solve problems of medium size in reasonable time. A heuristic for makespan minimization is presented and shown numerically to be both accurate and efficient.

Publisher

Walter de Gruyter GmbH

Subject

General Computer Science,Theoretical Computer Science

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1. Scheduling on parallel dedicated machines with job rejection;International Journal of Production Research;2024-03-25

2. Survey and extensions of manufacturing models in two-stage flexible flow shops with dedicated machines;Computers & Operations Research;2018-10

3. A Batching Machine Model for Lot Scheduling on a Single Machine;Foundations of Computing and Decision Sciences;2018-02-16

4. Critical Machine Based Scheduling -A Review;IOP Conference Series: Materials Science and Engineering;2017-03

5. Two-stage flexible flow shop scheduling subject to fixed job sequences;Journal of the Operational Research Society;2016-03

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