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Queueing-model based analysis of assembly lines with finite buffers and general service times
Authors:Michael Manitz
Affiliation:Department for Supply Chain Management and Production, University of Cologne, 50923 Köln, Germany
Abstract:In this paper, we study the production process on multi-stage assembly lines. These production systems comprise simple processing as well as assembly stations. At the latter, workpieces from two or more input stations have to be merged to form a new one for further processing. As the flow of material is asynchronous with stochastic processing times at each station, queueing effects arise as long as buffers provide waiting room. We consider finite buffer capacities and generally distributed processing times. Processing is a service operation to customer items in the sense of a queueing system. The arrival stream of customer items is generated by processing parts at a predecessor station. This paper describes an approximation procedure for determining the throughput of such an assembly line. Exact solutions are not available in this case. For performance evaluation, a decomposition approach is used. The two-station subsystems are analyzed by G/G/1/NG/G/1/N stopped-arrival queueing models. In this heuristic approach, the virtual arrival and service rates, and the squared coefficients of variation of these subsystems are determined. A system of decomposition equations which are solved iteratively is presented. Any solution to this system of equations indicates estimated values for the subsystems’ unknown parameters. The quality of the presented approximation procedure is tested against the results of various simulation experiments.
Keywords:Flow production  Assembly lines  Assembly stations  Synchronization constraint  Decomposition  Queueing models  G/G/1/NG/G/1/N stopped-arrival queueing system" target="_blank">gif" overflow="scroll">G/G/1/N stopped-arrival queueing system  Throughput
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