Reduction of carbon emissions and project makespan by a Pareto-based estimation of distribution algorithm

Due to the increasing concerns about global warming, low-carbon production has been a hot topic around the world. In this paper, carbon emissions reduction and project makespan minimization are considered simultaneously. To formulate the problem, a multi-objective multi-mode resource-constrained pro...

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Veröffentlicht in:International journal of production economics 2015-06, Vol.164, p.421-432
Hauptverfasser: Zheng, Huan-yu, Wang, Ling
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description Due to the increasing concerns about global warming, low-carbon production has been a hot topic around the world. In this paper, carbon emissions reduction and project makespan minimization are considered simultaneously. To formulate the problem, a multi-objective multi-mode resource-constrained project scheduling model with makespan and carbon emissions criteria is given. To solve the problem, a Pareto-based estimation of distribution algorithm (PBEDA) is proposed. Specifically, an activity-mode list is used to encode the individual of the population; a hybrid probability model is built to describe the probability distribution of the solution space; and two Pareto archives are adopted to store the explored non-dominated solutions and the solutions for updating the probability model, respectively. New individuals are generated in the promising search areas by sampling and updating the hybrid probability model. Besides, Taguchi method of design of experiments is adopted to study the effect of parameter setting. Finally, numerical results and the comparisons to other algorithms are provided to show the effectiveness of the PBEDA in terms of quantity and quality of the obtained solutions. The Pareto set derived by the PBEDA can be helpful for project manager to recognize the relationship between carbon emissions and makespan so as to properly trade-off the two criteria according to certain preference. •Project scheduling model for multi-objective low-carbon production scheduling.•Pareto-based estimation of distribution algorithm (PBEDA) to derive Pareto sets.•Effect of parameter setting is investigated.•PBEDA is more effective than NSGA2 and random search.
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In this paper, carbon emissions reduction and project makespan minimization are considered simultaneously. To formulate the problem, a multi-objective multi-mode resource-constrained project scheduling model with makespan and carbon emissions criteria is given. To solve the problem, a Pareto-based estimation of distribution algorithm (PBEDA) is proposed. Specifically, an activity-mode list is used to encode the individual of the population; a hybrid probability model is built to describe the probability distribution of the solution space; and two Pareto archives are adopted to store the explored non-dominated solutions and the solutions for updating the probability model, respectively. New individuals are generated in the promising search areas by sampling and updating the hybrid probability model. Besides, Taguchi method of design of experiments is adopted to study the effect of parameter setting. 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The Pareto set derived by the PBEDA can be helpful for project manager to recognize the relationship between carbon emissions and makespan so as to properly trade-off the two criteria according to certain preference. •Project scheduling model for multi-objective low-carbon production scheduling.•Pareto-based estimation of distribution algorithm (PBEDA) to derive Pareto sets.•Effect of parameter setting is investigated.•PBEDA is more effective than NSGA2 and random search.</description><identifier>ISSN: 0925-5273</identifier><identifier>EISSN: 1873-7579</identifier><identifier>DOI: 10.1016/j.ijpe.2014.12.010</identifier><identifier>CODEN: IJPCEY</identifier><language>eng</language><publisher>Amsterdam: Elsevier B.V</publisher><subject>Algorithms ; Carbon ; Design of experiments ; Emissions control ; Estimation of distribution algorithm ; Global warming ; Low-carbon production ; Multi-objective optimization ; Pareto optimum ; Probability distribution ; Probability model ; Project scheduling ; Studies ; Taguchi methods</subject><ispartof>International journal of production economics, 2015-06, Vol.164, p.421-432</ispartof><rights>2014 Elsevier B.V.</rights><rights>Copyright Elsevier Sequoia S.A. 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subjects Algorithms
Carbon
Design of experiments
Emissions control
Estimation of distribution algorithm
Global warming
Low-carbon production
Multi-objective optimization
Pareto optimum
Probability distribution
Probability model
Project scheduling
Studies
Taguchi methods
title Reduction of carbon emissions and project makespan by a Pareto-based estimation of distribution algorithm
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