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Operational methods for minimization of energy consumption of manufacturing equipment

International Journal of Production Research · 2007 · Vol. 45(18-19) · pp. 4247–4271
Gilles MouzonMehmet Bayram YildirimJanet Twomey

Abstract

This paper develops operational methods for the minimization of the energy consumption of manufacturing equipment. It is observed that there can be a significant amount of energy savings when non-bottleneck (i.e. underutilized) machines/equipment are turned off when they will be idle for a certain amount of time. Using this fact, several dispatching rules are proposed. A detailed performance analysis indicates that the proposed dispatching rules are effective in decreasing the energy consumption of especially underutilized manufacturing equipment. In addition, a multi-objective mathematical programming model is proposed to minimize the energy consumption and total completion time. Using this approach, a production manager will have a set of non-dominated solutions (i.e. the set of efficient solutions) which he/she can use to determine the most efficient production sequence which will minimize the total energy consumption while optimizing the total completion time.

Manufacturing Process and OptimizationScheduling and Optimization AlgorithmsAdvanced Manufacturing and Logistics OptimizationBottleneckEnergy consumptionProduction (economics)MinificationEnergy (signal processing)IdleComputer scienceSet (abstract data type)Total energyMathematical optimization
Citations
574
FWCI
5.09
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References
28
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References
Learning representations by back-propagating errors
Nature · 1986 · 30,045 citations
Product life cycle cost analysis: State of the art review
International Journal of Production Research · 1998 · 656 citations
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