Dynamic Analysis and Optimization of a Production Control System under Supply and Demand Uncertainties

This study investigates the dynamic performance and optimization of a typical discrete production control system under supply disruption and demand uncertainty. Two different types of uncertain demands, disrupted demand with a step change in demand and random demand, are considered. We find that, un...

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Main Authors: Qiankai Qing, Wen Shi, Hai Li, Yuan Shao
Format: Article
Language:English
Published: Hindawi Limited 2016-01-01
Series:Discrete Dynamics in Nature and Society
Online Access:http://dx.doi.org/10.1155/2016/6823934
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spelling doaj-d8f14b7d346d4d05a067f9d3082308b62020-11-24T22:46:10ZengHindawi LimitedDiscrete Dynamics in Nature and Society1026-02261607-887X2016-01-01201610.1155/2016/68239346823934Dynamic Analysis and Optimization of a Production Control System under Supply and Demand UncertaintiesQiankai Qing0Wen Shi1Hai Li2Yuan Shao3School of Automation, Huazhong University of Science and Technology, Wuhan 430074, ChinaSchool of Logistics and Engineering Management, Hubei University of Economics, Wuhan 430205, ChinaSchool of Business Administration, Zhongnan University of Economics and Law, Wuhan 430073, ChinaSchool of Management, Wuhan University of Science and Technology, Wuhan 430080, ChinaThis study investigates the dynamic performance and optimization of a typical discrete production control system under supply disruption and demand uncertainty. Two different types of uncertain demands, disrupted demand with a step change in demand and random demand, are considered. We find that, under demand disruption, the system’s dynamic performance indicators (the peak values of the order rate, production completion rate, and inventory) increase with the duration of supply disruption; however, they increase and decrease sequentially with the supply disruption start time. This change tendency differs from the finding that each kind of peak is independent of the supply disruption start time under no demand disruption. We also find that, under random demand, the dynamic performance indicators (Bullwhip and variance amplification of inventory relative to demand) increase with the disruption duration, but they have a decreasing tendency as demand variance increases. In order to design an adaptive system, we propose a genetic algorithm that minimizes the respective objective function on the system’s dynamic performance indicators via choosing appropriate system parameters. It is shown that the optimal parameter choices relate closely to the supply disruption start time and duration under disrupted demand and to the supply disruption duration under random demand.http://dx.doi.org/10.1155/2016/6823934
collection DOAJ
language English
format Article
sources DOAJ
author Qiankai Qing
Wen Shi
Hai Li
Yuan Shao
spellingShingle Qiankai Qing
Wen Shi
Hai Li
Yuan Shao
Dynamic Analysis and Optimization of a Production Control System under Supply and Demand Uncertainties
Discrete Dynamics in Nature and Society
author_facet Qiankai Qing
Wen Shi
Hai Li
Yuan Shao
author_sort Qiankai Qing
title Dynamic Analysis and Optimization of a Production Control System under Supply and Demand Uncertainties
title_short Dynamic Analysis and Optimization of a Production Control System under Supply and Demand Uncertainties
title_full Dynamic Analysis and Optimization of a Production Control System under Supply and Demand Uncertainties
title_fullStr Dynamic Analysis and Optimization of a Production Control System under Supply and Demand Uncertainties
title_full_unstemmed Dynamic Analysis and Optimization of a Production Control System under Supply and Demand Uncertainties
title_sort dynamic analysis and optimization of a production control system under supply and demand uncertainties
publisher Hindawi Limited
series Discrete Dynamics in Nature and Society
issn 1026-0226
1607-887X
publishDate 2016-01-01
description This study investigates the dynamic performance and optimization of a typical discrete production control system under supply disruption and demand uncertainty. Two different types of uncertain demands, disrupted demand with a step change in demand and random demand, are considered. We find that, under demand disruption, the system’s dynamic performance indicators (the peak values of the order rate, production completion rate, and inventory) increase with the duration of supply disruption; however, they increase and decrease sequentially with the supply disruption start time. This change tendency differs from the finding that each kind of peak is independent of the supply disruption start time under no demand disruption. We also find that, under random demand, the dynamic performance indicators (Bullwhip and variance amplification of inventory relative to demand) increase with the disruption duration, but they have a decreasing tendency as demand variance increases. In order to design an adaptive system, we propose a genetic algorithm that minimizes the respective objective function on the system’s dynamic performance indicators via choosing appropriate system parameters. It is shown that the optimal parameter choices relate closely to the supply disruption start time and duration under disrupted demand and to the supply disruption duration under random demand.
url http://dx.doi.org/10.1155/2016/6823934
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