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Original Articles

Resource-Constrained Scheduling of Projects with Variable-Intensity Activities

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Pages 31-40 | Received 01 Jan 1988, Published online: 30 May 2007

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Roland Braune & Karl F. Doerner. (2017) Real-world flexible resource profile scheduling with multiple criteria: learning scalarization functions for MIP and heuristic approaches. Journal of the Operational Research Society 68:8, pages 952-972.
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Arianna Alfieri, Tullio Tolio & Marcello Urgo. (2011) A project scheduling approach to production planning with feeding precedence relations. International Journal of Production Research 49:4, pages 995-1020.
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KONSTANTIN KOGAN, TZVI RAZ & RAMY ELITZUR. (2002) Optimal control in homogeneous projects: analytically solvable deterministic cases. IIE Transactions 34:1, pages 63-75.
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LINET ÖZDAMAR. (1998) On scheduling project activities with variable expenditure rates. IIE Transactions 30:8, pages 695-704.
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LINET ÖZDAMAR & GÜNDÜZ ULUSOY. (1995) A survey on the resource-constrained project scheduling problem. IIE Transactions 27:5, pages 574-586.
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ANDREAS DREXL & JUERGEN GRUENEWALD. (1993) NONPREEMPTIVE MULTI-MODE RESOURCE-CONSTRAINED PROJECT SCHEDULING. IIE Transactions 25:5, pages 74-81.
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SOOYOUNG KIM, HYUN-IL KIM, WON-IL KANG & HEEKOOK LEE. (1992) CIM progress in a Korean heavy-industry company. International Journal of Computer Integrated Manufacturing 5:4-5, pages 201-209.
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Articles from other publishers (24)

Hanying Wei, Zhixiong Su & Yuan Zhang. (2020) Preprocessing the Discrete Time-Cost Tradeoff Problem with Generalized Precedence Relations. Mathematical Problems in Engineering 2020, pages 1-19.
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Carlos E. Andrade, Simon D. Byers, Vijay Gopalakrishnan, Emir Halepovic, David J. Poole, Lien K. Tran & Christopher T. Volinsky. (2019) Scheduling software updates for connected cars with limited availability. Applied Soft Computing 82, pages 105575.
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Michael Z. Zgurovsky & Alexander A. PavlovMichael Z. Zgurovsky & Alexander A. Pavlov. 2019. Combinatorial Optimization Problems in Planning and Decision Making. Combinatorial Optimization Problems in Planning and Decision Making 347 406 .
Rafał Różycki, Grzegorz Waligóra & Jan Węglarz. (2016) Scheduling preemptable jobs on identical processors under varying availability of an additional continuous resource. International Journal of Applied Mathematics and Computer Science 26:3, pages 693-706.
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José Luis Ponz-Tienda, Eugenio Pellicer, Javier Benlloch-Marco & Carlos Andrés-Romano. (2015) The Fuzzy Project Scheduling Problem with Minimal Generalized Precedence Relations. Computer-Aided Civil and Infrastructure Engineering 30:11, pages 872-891.
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Fabrice Talla Nobibon, Roel Leus, Kameng Nip & Zhenbo Wang. (2015) Resource loading with time windows. European Journal of Operational Research 244:2, pages 404-416.
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Arianna Alfieri & Marcello Urgo. 2015. Handbook on Project Management and Scheduling Vol. 2. Handbook on Project Management and Scheduling Vol. 2 1249 1266 .
Arianna Alfieri, Tullio Tolio & Marcello Urgo. (2010) A project scheduling approach to production and material requirement planning in Manufacturing-to-Order environments. Journal of Intelligent Manufacturing 23:3, pages 575-585.
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Sacramento Quintanilla, Ángeles Pérez, Pilar Lino & Vicente Valls. (2012) Time and work generalised precedence relationships in project scheduling with pre-emption: An application to the management of Service Centres. European Journal of Operational Research 219:1, pages 59-72.
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Jan Węglarz, Joanna Józefowska, Marek Mika & Grzegorz Waligóra. (2011) Project scheduling with finite or infinite number of activity processing modes – A survey. European Journal of Operational Research 208:3, pages 177-205.
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L. Monostori, G. Erdős, B. Kádár, T. Kis, A. Kovács, A. Pfeiffer & J. Váncza. (2010) Digital enterprise solution for integrated production planning and control. Computers in Industry 61:2, pages 112-126.
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E.W. Hans, W. Herroelen, R. Leus & G. Wullink. (2007) A hierarchical approach to multi-project planning under uncertainty. Omega 35:5, pages 563-577.
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Hsing-Pei Kao, Brian Wang, James Dong & Kuo-Cheng Ku. (2006) An event-driven approach with makespan/cost tradeoff analysis for project portfolio scheduling. Computers in Industry 57:5, pages 379-397.
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Tamás Kis. (2005) A branch-and-cut algorithm for scheduling of projects with variable-intensity activities. Mathematical Programming 103:3, pages 515-539.
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Hong-Sen Yan, Zheng Wang & Min Jiang. (2016) A Quantitative Approach to the Process Modeling and Planning in Concurrent Engineering. Concurrent Engineering 10:2, pages 97-111.
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Trond Jørgensen & Stein W. Wallace. (2000) Improving project cost estimation by taking into account managerial flexibility. European Journal of Operational Research 127:2, pages 239-251.
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Konstantin Kogan & Avraham Shtub. (1999) Scheduling projects with variable-intensity activities: The case of dynamic earliness and tardiness costs. European Journal of Operational Research 118:1, pages 65-80.
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Willy Herroelen, Erik Demeulemeester & Bert De Reyck. 1999. Project Scheduling. Project Scheduling 1 26 .
A. Kumar & L.S. Ganesh. (1998) Use of Petri nets for resource allocation in projects. IEEE Transactions on Engineering Management 45:1, pages 49-56.
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Linet Özdamar & Hakan Dündar. (1997) A flexible heuristic for a multi-mode capital constrained project scheduling problem with probabilistic cash inflows. Computers & Operations Research 24:12, pages 1187-1200.
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Oya Icmeli & S.Selcuk Erenguc. (1996) The resource constrained time/cost tradeoff project scheduling problem with discounted cash flows. Journal of Operations Management 14:3, pages 255-275.
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Robert C. Leachman & Sooyoung Kim. (1993) A revised critical path method for networks including both overlap relationships and variable-duration activities. European Journal of Operational Research 64:2, pages 229-248.
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W. Domschke & A. Drexl. (1991) Kapazitätsplanung in Netzwerken. Operations-Research-Spektrum 13:2, pages 63-76.
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Fabrice Nobibon Talla, R. Leus, Kameng Nip & Zhenbo Wang. (2014) Resource Loading with Time Windows. SSRN Electronic Journal.
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