A multi-objective approach for supporting wine grape harvest operations

•We present a multi-objective MIP to support wine grape harvest.•We propose a negotiation protocol to ease an agreement between two decision-makers.•Our approach draws from the augmented e-constraint method.•We suggest a substitution rate criteria to chose which solution to present.•The protocol mig...

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Vydané v:Computers & industrial engineering Ročník 145; s. 106497
Hlavní autori: Varas, Mauricio, Basso, Franco, Maturana, Sergio, Osorio, David, Pezoa, Raúl
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: Elsevier Ltd 01.07.2020
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ISSN:0360-8352, 1879-0550
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Abstract •We present a multi-objective MIP to support wine grape harvest.•We propose a negotiation protocol to ease an agreement between two decision-makers.•Our approach draws from the augmented e-constraint method.•We suggest a substitution rate criteria to chose which solution to present.•The protocol might be extended to other contexts with two decision-makers. In this paper, we present a novel multi-objective mixed-integer linear programming model to support wine grape harvesting. The proposed model considers the opposing nature of operational cost minimization and grape quality maximization, subject to several constraints, such as grape requirements and routing decisions. Based on the operations of a winery we worked with, we develop a negotiation protocol that can lead to an agreed final harvest schedule. The protocol includes an initial Pareto optimal solution obtained through the augmented weighted Tchebycheff method. Then, the solutions are presented to the two decision-makers and, if no agreement is reached, we conduct an iterative process, which includes finding Pareto optimal solutions in a neighborhood using the augmented ∊-constraint method. Finally, we choose, within this set, the solution following a substitution rate criteria. We illustrate our procedure using an educational example.
AbstractList •We present a multi-objective MIP to support wine grape harvest.•We propose a negotiation protocol to ease an agreement between two decision-makers.•Our approach draws from the augmented e-constraint method.•We suggest a substitution rate criteria to chose which solution to present.•The protocol might be extended to other contexts with two decision-makers. In this paper, we present a novel multi-objective mixed-integer linear programming model to support wine grape harvesting. The proposed model considers the opposing nature of operational cost minimization and grape quality maximization, subject to several constraints, such as grape requirements and routing decisions. Based on the operations of a winery we worked with, we develop a negotiation protocol that can lead to an agreed final harvest schedule. The protocol includes an initial Pareto optimal solution obtained through the augmented weighted Tchebycheff method. Then, the solutions are presented to the two decision-makers and, if no agreement is reached, we conduct an iterative process, which includes finding Pareto optimal solutions in a neighborhood using the augmented ∊-constraint method. Finally, we choose, within this set, the solution following a substitution rate criteria. We illustrate our procedure using an educational example.
ArticleNumber 106497
Author Pezoa, Raúl
Varas, Mauricio
Basso, Franco
Osorio, David
Maturana, Sergio
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  surname: Varas
  fullname: Varas, Mauricio
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  givenname: Franco
  surname: Basso
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  givenname: Sergio
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  surname: Maturana
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  organization: Industrial and Systems Engineering Department, Pontificia Universidad Católica de Chile, Santiago, Chile
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  givenname: David
  surname: Osorio
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  givenname: Raúl
  surname: Pezoa
  fullname: Pezoa, Raúl
  email: raul.pezoa@udp.cl
  organization: Escuela de Ingeniería Industrial, Universidad Diego Portales, Santiago, Chile
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Keywords Interactive methods
Grape harvest
Wine industry
Multi-objective optimization
Language English
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  ident: 10.1016/j.cie.2020.106497_b0175
  article-title: A green supply chain network design framework for the processed food industry: Application to the orange juice agrofood cluster
  publication-title: Computers & Industrial Engineering
  doi: 10.1016/j.cie.2017.04.031
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Snippet •We present a multi-objective MIP to support wine grape harvest.•We propose a negotiation protocol to ease an agreement between two decision-makers.•Our...
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StartPage 106497
SubjectTerms Grape harvest
Interactive methods
Multi-objective optimization
Wine industry
Title A multi-objective approach for supporting wine grape harvest operations
URI https://dx.doi.org/10.1016/j.cie.2020.106497
Volume 145
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