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dc.contributor.authorGarcía Nieves, Juan Diego
dc.contributor.authorPonz Tienda, José Luis
dc.contributor.authorOspina Alvarado, Angélica María
dc.contributor.authorBonilla Palacios, Mateo
dc.date.accessioned2021-01-31T18:20:01Z
dc.date.available2021-01-31T18:20:01Z
dc.date.issued2019
dc.identifier.citationGarcía Nieves, J. D., Ponz Tienda, J. L., Ospina Alvarado, A. M., y Bonilla Palacios, M. (2019). Multipurpose linear programming optimization model for repetitive activities scheduling in construction projects. Automation in Construction, 105.es
dc.identifier.issn9265805
dc.identifier.urihttp://hdl.handle.net/20.500.12251/1600
dc.description.abstractRepetitiveness in project's activities has gained an important role in the construction industry. Multiple linear scheduling methods have been proposed in order to fully take advantage of the spatial and temporal information these type of project can provide to practitioners. Besides the advances in the optimization models in these fields, to the extent of the authors knowledge, there is still pending a complete and flexible mathematical linear programming formulation that allow practitioners to easily and jointly solve the Resource allocation, Resource-Constrained Project Scheduling and Time-Cost Tradeoff problem, taking into account as many scheduling properties, benefits and challenges that linear scheduling of repetitive activities imply. This paper shows a complete guide and computational experimentation, of a novel mathematical model that can be easily used by practitioners to optimize construction schedules considering to the largest extent the time and space conditions repetitive projects offer. Particularly, it contributes to the repetitive activities scheduling body of knowledge by successfully implementing a robust linear programing optimization model in a real construction project, while considering as much linear scheduling characteristics as possible. It proves that relationships in the sub-activity level, continuity conditions, multiple modes of execution, controlled acceleration routines and execution mode shifts, and multiple crews can be easily and jointly integrated to a linear optimization model by adding simple linear restrictions to the model. © 2019 Elsevier B.V.en
dc.language.isoeng
dc.publisherElsevier B.V.es
dc.titleMultipurpose linear programming optimization model for repetitive activities scheduling in construction projectsen
dc.typearticle
dc.identifier.doi10.1016/j.autcon.2019.03.020
dc.journal.titleAutomation in Constructiones
dc.subject.keywordEstudio de actividadeses
dc.subject.keywordProgramación de obraes
dc.subject.keywordRecursos de personales
dc.subject.keywordActividades repetitivases
dc.subject.keywordGestión de la ejecuciónes
dc.subject.keywordTime Cost Trade-Off Problem (TCTP)es
dc.subject.keywordIndustria de la construcciónes
dc.subject.keywordGestión de la producciónes
dc.subject.unesco1207.09 Programación Lineales
dc.subject.unesco5311.04 Organización de Recursos Humanoses
dc.subject.unesco5311.09 Organización de la Producciónes
dc.subject.unesco5312.03 Construcciónes
dc.subject.unesco6109.03 Planificación y Evaluación Puestos de Trabajoes
dc.volume.number105


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