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An improved fuzzy critical chain approach in order to face uncertainty in project scheduling

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Shakib Zohrehvandi, Mario Vanhoucke, Mohammad Khalilzadeh, Maghsoud Amiri & Shahram Shadrokh. (2023) A fuzzy project buffer management algorithm: a case study in the construction of a renewable project. International Journal of Construction Management 23:12, pages 2134-2143.
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Daisuke Morita & Haruhiko Suwa. (2023) Proactive project scheduling using GPU-accelerated simulations under uncertainty environment. International Journal of Computer Integrated Manufacturing 0:0, pages 1-18.
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Pejman Rezakhani. (2022) Hybrid fuzzy-Bayesian decision support tool for dynamic project scheduling and control under uncertainty. International Journal of Construction Management 22:15, pages 2864-2876.
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Gul Polat & Hasan Gokberk Bayhan. (2022) Selection of HVAC-AHU system supplier with environmental considerations using Fuzzy EDAS method. International Journal of Construction Management 22:10, pages 1863-1871.
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Min Tian, Ren Jing Liu & Guang Jun Zhang. (2020) Solving the resource-constrained multi-project scheduling problem with an improved critical chain method. Journal of the Operational Research Society 71:8, pages 1243-1258.
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Yagub Alipouri, Mohammad Hassan Sebt, Abdollah Ardeshir & Weng Tat Chan. (2019) Solving the FS-RCPSP with hyper-heuristics: A policy-driven approach. Journal of the Operational Research Society 70:3, pages 403-419.
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Articles from other publishers (21)

Marilia Medeiros Schocair, Rodrigo Oliveira da Silva, Marcelo Gonçalves do Amaral, Geraldo Magela Jardim Barra & Rebecca Impelizieri Moura da Silveira. (2023) Risk management in civil construction: the contractor's perceptions. Revista de Administração da UFSM 16:3, pages e9.
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Jian Sun, Arash Apornak & Guanghua Ma. (2023) Presenting a Mathematical Model for Reduction of Delays in Construction Projects Considering Quality Management Criteria in Uncertainty Conditions. Journal of Engineering Research.
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Jun-long Peng & Chao Peng. (2022) Buffer Sizing in Critical Chain Project Management by Brittle Risk Entropy. Buildings 12:9, pages 1390.
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Fatemeh Dalouchei, Seyed Meysam Mousavi, Jurgita Antucheviciene & Ahmad Minaei. (2022) A Bi-Objective Model for Scheduling Construction Projects Using Critical Chain Method and Interval-Valued Fuzzy Sets. Buildings 12:7, pages 904.
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Ramin Ansari, Mohammad Khalilzadeh & M. Reza Hosseini. (2021) A Multi-objective Dynamic Optimization Approach to Project Schedule Management: A Case Study of a Gas Field Construction. KSCE Journal of Civil Engineering 26:3, pages 1005-1013.
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Mohammad Reza Afshar & Hamed Asadzadeh Zenozi. (2021) Introducing a fuzzy MCDM model for financial management in multiple project environments. Construction Innovation 22:2, pages 305-319.
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Taynara Takami Narita, Caio Henrique Alberconi, Fernando Bernardi de Souza & Lucas Ikeziri. (2021) Comparison of PERT/CPM and CCPM Methods in Project Time Management. Revista Gestão da Produção Operações e Sistemas 16:3, pages 01.
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Seyed Ali Mirnezami, Seyed Meysam Mousavi & Vahid Mohagheghi. (2020) An innovative interval type-2 fuzzy approach for multi-scenario multi-project cash flow evaluation considering TODIM and critical chain with an application to energy sector. Neural Computing and Applications 33:7, pages 2263-2284.
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Guofeng Ma, Ming Wu, Keke Hao & Shanshan Shang. (2021) A DSM-Based CCPM-MPL Representation Method for Project Scheduling under Rework Scenarios. Advances in Civil Engineering 2021, pages 1-16.
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Mohammad Shariatmadari & Nasim Nahavandi. (2020) A new resource buffer insertion approach for proactive resource investment problem. Computers & Industrial Engineering 146, pages 106582.
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N Sembiring & A Putra. (2020) Scheduling evaluation in construction projects using the critical chain project management method. IOP Conference Series: Materials Science and Engineering 830:3, pages 032091.
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Yan Zhao, Nanfang Cui & Wendi Tian. (2019) A two-stage approach for the critical chain project rescheduling. Annals of Operations Research 285:1-2, pages 67-95.
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Slawomir Biruk, Piotr Jaskowski & Agata Czarnigowska. (2019) Assessing the Efficiency of Variance Reduction Methods in the Construction Project Network Simulation. IOP Conference Series: Materials Science and Engineering 603:3, pages 032094.
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N. Ibadov & J. Kulejewski. (2019) Construction projects planning using network model with the fuzzy decision node. International Journal of Environmental Science and Technology 16:8, pages 4347-4354.
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Octaviano Rojas Luiz, Fernando Bernardi de Souza, João Victor Rojas Luiz & Daniel Jugend. (2019) Linking the Critical Chain Project Management literature. International Journal of Managing Projects in Business 12:2, pages 423-443.
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Xuejun Hu, Jianjiang Wang & Kaijun Leng. (2019) The Interaction Between Critical Chain Sequencing, Buffer Sizing, and Reactive Actions in a CC/BM Framework. Asia-Pacific Journal of Operational Research 36:03, pages 1950010.
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Oluseun Olubajo, Will Hughes & Libby Schweber. 2019. 10th Nordic Conference on Construction Economics and Organization. 10th Nordic Conference on Construction Economics and Organization 189 194 .
Guofeng Ma, Keke Hao, Yu Xiao & Tiancheng Zhu. (2019) Critical Chain Design Structure Matrix Method for Construction Project Scheduling under Rework Scenarios. Mathematical Problems in Engineering 2019, pages 1-14.
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Wan-An Cui. (2018) Critical Sequences and Resource Links Optimization in Resource-Constrained Project Scheduling. Asia-Pacific Journal of Operational Research 35:05, pages 1850032.
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Shih-Ming Yang, Yu-Chuan Liu & Ting-Yu Yen. (2018) Integration of Fuzzy Logic and QFD for Critical Chain in Project Scheduling with Uncertainties. Integration of Fuzzy Logic and QFD for Critical Chain in Project Scheduling with Uncertainties.
Katarzyna Marek-Kolodziej & Iwona Łapunka. (2022) A Fuzzy Method Determination of Time Buffer Size in Critical Chain Project Management. SSRN Electronic Journal.
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