836
Views
0
CrossRef citations to date
0
Altmetric
Review Article

Key influences to cost modelling and analysis in off-site construction: research trends and GAP analysis

ORCID Icon, , , &
Received 23 Feb 2023, Accepted 06 Nov 2023, Published online: 14 Nov 2023

References

  • Adnan, H., Einur Azrin Baharuddin, H., Arzlee Hassan, A., Mahat, N. A. A., & Kaharuddin, S. K. (2019). Success factors among industrialised building system (IBS) contractors in Malaysia. IOP Conference Series. Earth and environmental science 233.
  • Ahiaga-Dagbui, D., Smith, S. D., Love, P. E., & Ackermann, F. (2015). Spotlight on construction cost overrun research: Superficial, replicative and stagnated.
  • Akbarieh, A., Jayasinghe, L. B., Waldmann, D., & Teferle, F. N. (2020). BIM-based end-of-lifecycle decision making and digital deconstruction: Literature review. Sustainability, 12, 2670. doi:10.3390/su12072670
  • Alfieri, E., Seghezzi, E., Sauchelli, M., Di Giuda, G. M., & Masera, G. (2020). A BIM-based approach for DfMA in building construction: Framework and first results on an Italian case study. Architectural Engineering and Design Management, 16, 247–269. doi:10.1080/17452007.2020.1726725
  • Alshamrani, O. S. (2021). Integrated LCA-LCC assessment model of offsite, onsite, and conventional construction systems. Journal of Asian Architecture and Building Engineering, 21(5), 2058–2080.
  • Alwisy, A., Bouferguene, A., & Al-Hussein, M. (2020). Framework for target cost modelling in construction projects. International Journal of Construction Management, 20, 89–104. doi:10.1080/15623599.2018.1462446
  • Al-Zwainy, F. M. S., & Neran Taher Hadal, T,N. (2016). Application artificial forecasting techniques in cost management. Journal of Engineering, 22, 1–15. doi:10.31026/j.eng.2016.08.01
  • Arashpour, M., Wakefield, R., Abbasi, B., & Hosseini, R. (2018). Optimal process integration architectures in off-site construction: Theorizing the use of multi-skilled resources. Architectural Engineering and Design Management, 14, 46–59. doi:10.1080/17452007.2017.1302406
  • Arashpour, M., Wakefield, R., Blismas, N., & Maqsood, T. (2015). Autonomous production tracking for augmenting output in off-site construction. Automation in Construction, 53, 13–21. doi:10.1016/j.autcon.2015.03.013
  • Ashworth, S., & Ramsay, K. W. (2010). Should audiences cost? Optimal domestic constraints in international crises. Manuscript. Princeton, New Jersey: Princeton University.
  • Balasbaneh, A. T., & Ramli, M. Z. (2020). A comparative life cycle assessment (LCA) of concrete and steel-prefabricated prefinished volumetric construction structures in Malaysia. Environmental Science and Pollution Research, 27(34), 43186–43201.
  • Benjaoran, V. (2009). A cost control system development: A collaborative approach for small and medium-sized contractors. International Journal of Project Management, 27, 270–277. doi:10.1016/j.ijproman.2008.02.004
  • Blismas, N. G., Pendlebury, M., Gibb, A., & Pasquire, C. (2005). Constraints to the use of off-site production on construction projects. Architectural Engineering and Design Management, 1, 153–162. doi:10.1080/17452007.2005.9684590
  • Bogenstätter, U. (2000). Prediction and optimization of life-cycle costs in early design. Building Research & Information, 28, 376–386. doi:10.1080/096132100418528
  • Borrero, M., & Deffler, J. (1997). Development of a Standard Test Program Set Cost Model. 1997 IEEE Autotestcon Proceedings AUTOTESTCON'97. IEEE Systems Readiness Technology Conference. Systems Readiness Supporting Global Needs and Awareness in the 21st Century. IEEE, 278–284.
  • Daget, Y. T., & Zhang, H. (2019). Decision-making model for the evaluation of industrialized housing systems in Ethiopia. Engineering, Construction and Architectural Management, 27(1), 296–320.
  • Dong, L., Wang, Y., Li, H. X., Jiang, B., & Al-Hussein, M. (2018). Carbon reduction measures-based LCA of prefabricated temporary housing with renewable energy systems. Sustainability, 10, 718. doi:10.3390/su10030718
  • Du, J., Jing, H., Castro-Lacouture, D., & Sugumaran, V. (2019). Multi-agent simulation for managing design changes in prefabricated construction projects. Engineering, Construction, and Architectural Management, 27, 270–295. doi:10.1108/ECAM-11-2018-0524
  • Edwards, D. J., Harris, F. C., & McCaffer, R. (2003). Management of off-highway plant and equipment. CRC Press.
  • Gbadamosi, A. Q., Oyedele, L., Mahamadu, A. M., Kusimo, H., Bilal, M., Delgado, J. M. D., & Muhammed-Yakubu, N. (2020). Big data for Design Options Repository: Towards a DFMA approach for offsite construction. Automation in Construction, 120, 103388.
  • Görög, M. (2009). A comprehensive model for planning and controlling contractor cash-flow. International Journal of Project Management, 27, 481–492. doi:10.1016/j.ijproman.2008.08.001
  • Gusmao Brissi, S., Debs, L., & Elwakil, E. (2021). A review on the factors affecting the use of offsite construction in multifamily housing in the United States. Buildings, 11, 5. doi:10.3390/buildings11010005
  • Haas, C. T., O’Connor, J. T., & Tucker, R. L. (2000). Prefabrication and preassembly trends and effects on the construction workforce. Center for Construction Industry Studies, 14.
  • Hatamleh, M. T., Hiyassat, M., Sweis, G. J., & Sweis, R. J. (2018). Factors affecting the accuracy of cost estimate: Case of Jordan. Engineering, Construction and Architectural Management, 25(1), 113–131.
  • Heesbeen, C., & Prieto, A. (2020). Archetypical CBMs in construction and a translation to industrialized manufacture. Sustainability, 12(4), 1572.
  • Hong, J., Shen, G. Q., Li, Z., Zhang, B., & Zhang, W. (2018). Barriers to promoting prefabricated construction in China: A cost–benefit analysis. Journal of Cleaner Production, 172, 649–660. doi:10.1016/j.jclepro.2017.10.171
  • Hosseini, M. R., Rameezdeen, R., Chileshe, N., & Lehmann, S. (2015). Reverse logistics in the construction industry. Waste Management & Research: The Journal for a Sustainable Circular Economy, 33, 499–514. doi:10.1177/0734242X15584842
  • Hou, L., & Tan, Y. (2019). Challenges of off-site construction: A critical review. In K. Papadikis, C. Chin, I. Galobardes, G. Gong, & F. Guo (Eds.), Sustainable buildings and structures: Building a sustainable tomorrow (pp. 307–312). CRC Press eBooks.
  • Hsu, P.-Y., Aurisicchio, M., & Angeloudis, P. (2019). Risk-averse supply chain for modular construction projects. Automation in Construction, 106, 102898. doi:10.1016/j.autcon.2019.102898
  • Hussein, M., & Zayed, T. (2021). Critical factors for successful implementation of just-in-time concept in modular integrated construction: A systematic review and meta-analysis. Journal of Cleaner Production, 284, 124716. doi:10.1016/j.jclepro.2020.124716
  • Hyun, H., Kim, H., Lee, H.-S., & Park, M. (2020). Integrated design process for modular construction projects to reduce rework. Sustainability, 12, 530. doi:10.3390/su12020530
  • Inayat, I., Salim, S. S., Marczak, S., Daneva, M., & Shamshirband, S. (2015). A systematic literature review on agile requirements engineering practices and challenges. Computers in Human Behavior, 51, 915–929. doi:10.1016/j.chb.2014.10.046
  • Jiang, W., Huang, Z., & Peng, Y. (2020). Factors affecting prefabricated construction promotion in China: A structural equation modeling approach. PloS one, 15, e0227787.
  • Jin, R., Hong, J., & Zuo, J. (2020). Environmental performance of off-site constructed facilities: A critical review. Energy and Buildings, 207, 109567. doi:10.1016/j.enbuild.2019.109567
  • Jonsson, H., & Rudberg, M. (2014). Classification of production systems for industrialized building: A production strategy perspective. Construction Management and Economics, 32(1-2), 53–69.
  • Kamali, M., & Hewage, K. (2016). Life cycle performance of modular buildings: A critical review. Renewable and Sustainable Energy Reviews, 62, 1171–1183.
  • Kamali, M., & Hewage, K. (2017). Development of performance criteria for sustainability evaluation of modular versus conventional construction methods. Journal of Cleaner Production, 142, 3592–3606.
  • Kamali, M., Hewage, K., & Sadiq, R. (2019). Conventional versus modular construction methods: A comparative cradle-to-gate LCA for residential buildings. Energy and Buildings, 204, 109479.
  • Kedir, F., & Hall, D. M. (2021). Resource efficiency in industrialized housing construction–A systematic review of current performance and future opportunities. Journal of Cleaner Production, 286, 125443.
  • Kern, A. P., & Formoso, C. T. (2006). A model for integrating cost management and production planning and control in construction. Journal of Financial Management of Property and Construction, 11(2), 75–90.
  • Lawrence, SR., & Morton, T. E. (1993). Resource-constrained multi-project scheduling with tardy costs: Comparing myopic, bottleneck, and resource pricing heuristics. European Journal of Operational Research, 64, 168–187. doi:10.1016/0377-2217(93)90175-M
  • Lee, J., & Kim, J. (2017). BIM-based 4D simulation to improve module manufacturing productivity for sustainable building projects. Sustainability, 9, 426. doi:10.3390/su9030426
  • Li, C. Z., Hong, J., Fan, C., Xu, X., & Shen, G. Q. (2018). Schedule delay analysis of prefabricated housing production: A hybrid dynamic approach. Journal of Cleaner Production, 195, 1533–1545. doi:10.1016/j.jclepro.2017.09.066
  • Li, X., Shen, G. Q., Wu, P., & Yue, T. (2019). Integrating building information modeling and prefabrication housing production. Automation in Construction, 100, 46–60. doi:10.1016/j.autcon.2018.12.024
  • Li, Z., Shen, G. Q., & Alshawi, M. (2014). Measuring the impact of prefabrication on construction waste reduction: An empirical study in China. Resources, Conservation and Recycling, 91, 27–39. doi:10.1016/j.resconrec.2014.07.013
  • Lu, W., Tan, T., Xu, J., Wang, J., Chen, K., Gao, S., & Xue, F. (2021). Design for manufacture and assembly (DfMA) in construction: The old and the new. Architectural Engineering and Design Management, 17, 77–91. doi:10.1080/17452007.2020.1768505
  • Macke, J., & Genari, D. (2019). Systematic literature review on sustainable human resource management. Journal of Cleaner Production, 208, 806–815. doi:10.1016/j.jclepro.2018.10.091
  • Mao, C., Xie, F., Hou, L., Wu, P., Wang, J., & Wang, X. (2016). Cost analysis for sustainable off-site construction based on a multiple-case study in China. Habitat International, 57, 215–222. doi:10.1016/j.habitatint.2016.08.002
  • Morad, M., & El-Sayegh, S. M. (2016). Use of earned value management in the UAE construction industry. 2016 International Conference on Industrial Engineering, Management Science and Application (ICIMSA). IEEE, 1–5.
  • Nahmens, I., & Ikuma, L. H. (2012). Effects of lean construction on sustainability of modular homebuilding. Journal of Architectural Engineering, 18(2), 155–163.
  • Newman, C., Edwards, D., Martek, I., Lai, J., Thwala, W. D., & Rillie, I. (2021). Industry 4.0 deployment in the construction industry: A bibliometric literature review and UK-based case study. Smart and Sustainable Built Environment, 10(4), 557–580. doi:10.1108/SASBE-02-2020-0016
  • Obi, L., Arif, M., & Goulding, J. (2020). Low-cost housing: A cost management model for process integration and evaluation. Architectural Engineering and Design Management, 16, 411–425. doi:10.1080/17452007.2020.1738993
  • Obi, L. I., Arif, M., Awuzie, B., Islam, R., Gupta, A. D., & Walton, R. (2021). Critical success factors for cost management in public-housing projects. Construction Innovation, 21(4), 625–647.
  • Olawale, Y., & Sun, M. (2013). PCIM: Project control and inhibiting-factors management model. Journal of Management in Engineering, 29, 60–70. doi:10.1061/(ASCE)ME.1943-5479.0000125
  • Omotayo, T., & Kulatunga, U. (2017). The research methodology for the development of a kaizen costing framework suitable for indigenous construction firms in. Lagos, Nigeria.
  • Pan, W., Gibb, A. G., & Dainty, A. R. (2007). Perspectives of UK housebuilders on the use of offsite modern methods of construction. Construction Management and Economics, 25, 183–194. doi:10.1080/01446190600827058
  • Pan, W., & Sidwell, R. (2011). Demystifying the cost barriers to offsite construction in the UK. Construction Management and Economics, 29, 1081–1099. doi:10.1080/01446193.2011.637938
  • Papadonikolaki, E., Vrijhoef, R., & Wamelink, H. (2016). The interdependences of BIM and supply chain partnering: Empirical explorations. Architectural Engineering and Design Management, 12, 476–494. doi:10.1080/17452007.2016.1212693
  • Paré, G., Trudel, M.-C., Jaana, M., & Kitsiou, S. (2015). Synthesizing information systems knowledge: A typology of literature reviews. Information & Management, 52, 183–199. doi:10.1016/j.im.2014.08.008
  • Potts, K., & Ankrah, N. (2008). Construction cost management: Learning from case studies. Abingdon, Oxon: Routledge.
  • Qi, B., Razkenari, M., Costin, A., Kibert, C., & Fu, M. (2021). A systematic review of emerging technologies in industrialized construction. Journal of Building Engineering, 39, 102265. doi:10.1016/j.jobe.2021.102265.
  • Reim, W., Parida, V., & Örtqvist, D. (2015). Product–service systems (PSS) business models and tactics – a systematic literature review. Journal of Cleaner Production, 97, 61–75. doi:10.1016/j.jclepro.2014.07.003
  • RMB-Council. (2013). Whole plan viability assessment. Rotherham: Rotherham Metropolitan Borough Council.
  • Said, H. M., Chalasani, T., & Logan, S. (2017). Exterior prefabricated panelized walls platform optimization. Automation in Construction, 76, 1–13. doi:10.1016/j.autcon.2017.01.002
  • Salama, T., Moselhi, O., & Al-Hussein, M. (2021). Overview of the characteristics of the modular industry and barriers to its increased market share. International Journal of Industrialized Construction, 2, 30–53. doi:10.29173/ijic249
  • Salama, T., Salah, A., & Moselhi, O. (2017). Integration of offsite and onsite schedules in modular construction. ISARC. Proceedings of the International Symposium on Automation and Robotics in Construction. IAARC Publications.
  • Sebastian, R. (2010). Integrated design and engineering using building information modelling: A pilot project of small-scale housing development in The Netherlands. Architectural Engineering and Design Management, 6, 103–110. doi:10.3763/aedm.2010.0116
  • Serugga, J., Kagioglou, M., & Tzortzopoulos, P. (2020). Value generation in front-end design of social housing with qfd and multiattribute utility theory. Journal of Construction Engineering and Management, 146, 04020019. doi:10.1061/(ASCE)CO.1943-7862.0001787
  • Shahtaheri, Y., Rausch, C., West, J., Haas, C., & Nahangi, M. (2017). Managing risk in modular construction using dimensional and geometric tolerance strategies. Automation in Construction, 83, 303–315.
  • Smith, C. T., Hammeran, J. H., & Lockwood, C. (2012). Module fabrication strategy for today’s nuclear industry. International Conference on Nuclear Engineering. American Society of Mechanical Engineers, 125–137.
  • Stephenson, T. (2014). Understanding construction drawings for housing and small buildings.
  • Sutrisna, M., Cooper-Cooke, B., Goulding, J., & Ezcan, V. (2019). Investigating the cost of offsite construction housing in Western Australia. International Journal of Housing Markets and Analysis, 12(1), 5–24.
  • Sutrisna, M., & Goulding, J. (2019). Managing information flow and design processes to reduce design risks in offsite construction projects.
  • Sutrisna, M., Ramnauth, V., & Zaman, A. (2022). Towards adopting off-site construction in housing sectors as a potential source of competitive advantage for builders. Architectural Engineering and Design Management, 18, 165–183. doi:10.1080/17452007.2020.1807306
  • Tan, T., Mills, G., Papadonikolaki, E., Li, B., & Huang, J. (2023). Digital-enabled design for manufacture and assembly (DfMA) in offsite construction: A modularity perspective for the product and process integration. Architectural Engineering and Design Management, 19, 267–282. doi:10.1080/17452007.2022.2104208
  • Toor, S.-u.-R., & Ogunlana, S. O. (2010). Beyond the ‘iron triangle’: Stakeholder perception of key performance indicators (KPIs) for large-scale public sector development projects. International Journal of Project Management, 28, 228–236. doi:10.1016/j.ijproman.2009.05.005
  • Trost, S. M., & Oberlender, G. D. (2003). Predicting accuracy of early cost estimates using factor analysis and multivariate regression. Journal of Construction Engineering and Management, 129, 198–204. doi:10.1061/(ASCE)0733-9364(2003)129:2(198)
  • Turner, C., Oyekan, J., & Stergioulas, L. K. (2021). Distributed manufacturing: A new digital framework for sustainable modular construction. Sustainability, 13, 1515. doi:10.3390/su13031515
  • Tzourmakliotou, D. (2021). Modular disruption in construction industry – The environmental benefits. Journal of Civil Engineering and Architecture, 15, 1934–7359.
  • Vaz-Serra, P., Wasim, M., & Egglestone, S. (2021). Design for manufacture and assembly: A case study for a prefabricated bathroom wet wall panel. Journal of Building Engineering, 102849.
  • Vernikos, V., Goodier, C., Nelson, R., & Goodier, C. I. (2013). Implementing an offsite construction strategy: A UK contracting organisation case study.
  • Vigneault, M.-A., Boton, C., Chong, H.-Y., & Cooper-Cooke, B. (2020). An innovative framework of 5D BIM solutions for construction cost management: A systematic review. Archives of Computational Methods in Engineering, 27, 1013–1030. doi:10.1007/s11831-019-09341-z
  • Wang, Z., Hu, H., & Gong, J. (2018). Framework for modeling operational uncertainty to optimize offsite production scheduling of precast components. Automation in Construction, 86, 69–80. doi:10.1016/j.autcon.2017.10.026
  • Whitlock, K., Abanda, F., Manjia, M., Pettang, C., & Nkeng, G. E. (2018). BIM for construction site logistics management. Journal of Engineering, Project, and Production Management, 8, 47. doi:10.32738/JEPPM.201801.0006
  • Xiao, Y., & Watson, M. (2019). Guidance on conducting a systematic literature review. Journal of Planning Education and Research, 39, 93–112. doi:10.1177/0739456X17723971
  • Xu, Z., Wang, S., & Wang, E. (2019). Integration of BIM and energy consumption modelling for manufacturing prefabricated components: A case study in China. Advances in Civil Engineering, 2019, 1–18.
  • Xue, H., Zhang, S., Su, Y., Wu, Z., & Yang, R. J. (2018). Effect of stakeholder collaborative management on off-site construction cost performance. Journal of Cleaner Production, 184, 490–502. doi:10.1016/j.jclepro.2018.02.258
  • Yin, X., Liu, H., Chen, Y., & Al-Hussein, M. (2019). Building information modelling for off-site construction: Review and future directions. Automation in Construction, 101, 72–91. doi:10.1016/j.autcon.2019.01.010
  • Yuan, Z., Sun, C., & Wang, Y. (2018). Design for manufacture and assembly-oriented parametric design of prefabricated buildings. Automation in Construction, 88, 13–22. doi:10.1016/j.autcon.2017.12.021
  • Yunus, R., & Yang, J. (2012). Critical sustainability factors in industrialised building systems. Construction Innovation, 12(4), 447–463.
  • Zaki, T., Magdy, A., & Nassar, K. (2020). BIM-based bill of quantities generator following POMI and NRM2 methods of measurement. EG-ICE’20-27th International Workshop on Computing in Engineering.
  • Zhai, X., Reed, R., & Mills, A. (2014). Factors impeding the offsite production of housing construction in China: An investigation of current practice. Construction Management and Economics, 32, 40–52. doi:10.1080/01446193.2013.787491
  • Zhai, Y., Zhong, R. Y., Li, Z., & Huang, G. (2017). Production lead-time hedging and coordination in prefabricated construction supply chain management. International Journal of Production Research, 55, 3984–4002. doi:10.1080/00207543.2016.1231432
  • Zhang, X., & Skitmore, M. (2012). Industrialized housing in China: A coin with two sides. International Journal of Strategic Property Management, 16, 143–157. doi:10.3846/1648715X.2011.638945
  • Zimina, D., Ballard, G., & Pasquire, C. (2012). Target value design: Using collaboration and a lean approach to reduce construction cost. Construction Management and Economics, 30, 383–398. doi:10.1080/01446193.2012.676658