Publication Cover
Production Planning & Control
The Management of Operations
Volume 34, 2023 - Issue 7
945
Views
8
CrossRef citations to date
0
Altmetric
Original Articles

A fuzzy synthetic evaluation of capabilities for improving supply chain resilience of industrialised construction: a Hong Kong case study

ORCID Icon, &
Pages 623-640 | Received 12 Apr 2020, Accepted 14 Jun 2021, Published online: 19 Jul 2021

References

  • Adabre, M. A., and A. P. Chan. 2019. “Critical Success Factors (CSFs) for Sustainable Affordable Housing.” Building and Environment 156: 203–214. doi:10.1016/j.buildenv.2019.04.030.
  • Ali, I., S. Nagalingam, and B. Gurd. 2017. “Building Resilience in SMEs of Perishable Product Supply Chains: enablers, Barriers and Risks.” Production Planning & Control 28 (15): 1236–1250. doi:10.1080/09537287.2017.1362487.
  • Ameyaw, E. E., A. P. Chan, D. G. Owusu, and E. Coleman. 2015. “A Fuzzy Model for Evaluating Risk Impacts on Variability between Contract Sum and Final Account in Government-Funded Construction Projects.” Journal of Facilities Management 13 (1): 45–69. doi:10.1108/JFM-11-2013-0055.
  • Barlow, J., P. Childerhouse, D. Gann, S. Hong-Minh, M. Naim, and R. Ozaki. 2003. “Choice and Delivery in Housebuilding: Lessons from Japan for UK Housebuilders.” Building Research & Information 31 (2): 134–145. doi:10.1080/09613210302003.
  • Bataglin, F. S., D. D. Viana, C. T. Formoso, and I. R. Bulhões. 2017. “Application of Bim for Supporting Decisionmaking Related to Logistics in Prefabricated Building Systems.” Proceedings of the 25th Annual Conference of the International Group for Lean Construction, 9–12 July 2017. Heraklion, Greece, 71–78.
  • BCI. 2019. “Supply Chain Resilience Report 2019.” 11th Annual Survey. Accessed 29 January 2020. Available at: https://insider.zurich.co.uk/app/uploads/2019/11/BCISupplyChainResilienceReportOctober2019SingleLow1.pdf.
  • Birkinshaw, J. 2020. “The New Boardroom Imperative: From Agility to Resilience.” Forbes, 28, 2020. Accessed 29 January 2020.
  • Chan, A. P. C., A. Darko, A. O. Olanipekun, and E. E. Ameyaw. 2018. “Critical Barriers to Green Building Technologies Adoption in Developing Countries: The Case of Ghana.” Journal of Cleaner Production 172: 1067–1079. doi:10.1016/j.jclepro.2017.10.235.
  • Chen, Q., B. T. Adey, C. Haas, and D. M. Hall. 2020. “Using Look-ahead Plans to Improve Material Flow Processes on Construction Projects When Using BIM and RFID Technologies.” Construction Innovation 20 (3): 471–508. doi:10.1108/CI-11-2019-0133.
  • Choi, J. O., X. B. Chen, and T. W. Kim. 2019. “Opportunities and Challenges of Modular Methods in Dense Urban Environment.” International Journal of Construction Management 19 (2): 93–105. doi:10.1080/15623599.2017.1382093.
  • Chowdhury, M. M. H., and M. Quaddus. 2016. “Supply Chain Readiness, Response and Recovery for Resilience. Supply Chain Management 21 (6): 709–731.
  • Chowdhury, M. M. H., and M. Quaddus. 2017. “Supply Chain Resilience: Conceptualization and Scale Development Using Dynamic Capability Theory.” International Journal of Production Economics 188: 185–204. doi:10.1016/j.ijpe.2017.03.020.
  • Chowdhury, M. M. H., M. A. Quaddus, and R. Agarwal. 2019. “Supply Chain Resilience for Performance: role of Relational Practices and Network Complexities.” Supply Chain Management 24 (5): 659–676.
  • Christopher, M., and H. Peck. 2004. “Building the Resilient Supply Chain.” The International Journal of Logistics Management 15 (2): 1–13. doi:10.1108/09574090410700275.
  • Comes, T., and B. Van de Walle. 2014. “Measuring Disaster Resilience: The Impact of Hurricane Sandy on Critical Infrastructure Systems.” ISCRAM 11: 195–204.
  • Construction Industry Council. 2019. “A Comprehensive Productivity Appraisal of the Hong Kong Construction Industry.” Accessed 2 July 2019. Available at: http://www.cic.hk/files/page/56/CIC-HKU_CPA%20Summary.pdf.
  • Cutter, S. L., C. G. Burton, and C. T. Emrich. 2010. “Disaster Resilience Indicators for Benchmarking Baseline Conditions.” Journal of Homeland Security and Emergency Management 7 (1): 51. doi:10.2202/1547-7355.1732.
  • Darko, A., and A. P. C. Chan. 2018. “Strategies to Promote Green Building Technologies Adoption in Developing Countries: The Case of Ghana.” Building and Environment 130: 74–84. doi:10.1016/j.buildenv.2017.12.022.
  • Ekanayake, E. M. A. C., G. Q. P. Shen, and M. Kumaraswamy. 2019. “Managing Vulnerabilities and Capabilities for Supply Chain Resilience in Industrialized Construction.” proceedings of the ARCOM2019 Conference. 02-04 September 2019 at Leeds Beckett University, Leeds, United Kingdom, 811–820.
  • Ekanayake, E. M. A. C., G. Q. P. Shen, and M. Kumaraswamy. 2020. “Critical Capabilities of Improving Supply Chain Resilience in Industrialized Construction in Hong Kong.” Engineering, Construction and Architectural Management. doi:10.1108/ECAM-05-2020-0295.
  • Ekanayake, E. M. A. C., G. Q. P. Shen, and M. Kumaraswamy. 2021. “Identifying Supply Chain Capabilities of Construction Firms in Industrialized Construction.” Production Planning & Control 32 (4): 303–321. doi:10.1080/09537287.2020.1732494.
  • Fakoor, A. M., L. Olfat, K. Feizi, and M. Amiri. 2013. “A Method for Measuring Supply Chain Resilience in the Automobile Industry.” Journal of Basic and Applied Scientific Research 3 (2): 537–544.
  • Fateh, M. A. M., and M. F. Mohammad. 2018. “Industrialized Building System (IBS) Provision in Local and International Standard Form of Contracts.” Journal of Construction in Developing Countries 22 (2): 67–80. doi:10.21315/jcdc2017.22.2.5.
  • Fiksel, J. 2015. “From Risk to Resilience.” In Resilient by Design, edited by J. Fiksel, 19–34. New York: Springer.
  • Gel, Y. R., W. Miao, and J. L. Gastwirth. 2007. “Robust Directed Tests of Normality against Heavy-Tailed Alternatives.” Computational Statistics & Data Analysis 51 (5): 2734–2746. doi:10.1016/j.csda.2006.08.022.
  • Gölgeci, I., and O. Kuivalainen. 2020. “Does Social Capital Matter for Supply Chain Resilience? The Role of Absorptive Capacity and Marketing-Supply Chain Management Alignment.” Industrial Marketing Management 84: 63–74. doi:10.1016/j.indmarman.2019.05.006.
  • Han, Y., M. Skibniewski, and L. Wang. 2017. “A Market Equilibrium Supply Chain Model for Supporting Self-Manufacturing or Outsourcing Decisions in Prefabricated Construction.” Sustainability 9 (11): 2018–2069. doi:10.3390/su9112069.
  • Hwang, B. G., M. Shan, and K. Y. Looi. 2018. “Key Constraints and Mitigation Strategies for Prefabricated Prefinished Volumetric Construction.” Journal of Cleaner Production 183 (May): 183–193. doi:10.1016/j.jclepro.2018.02.136.
  • Irizarry, J., E. P. Karan, and F. Jalaei. 2013. “Integrating BIM and GIS to Improve the Visual Monitoring of Construction Supply Chain Management.” Automation in Construction 31: 241–254. doi:10.1016/j.autcon.2012.12.005.
  • Jafarnejad, A., M. Momeni, S. H. R. Hajiagha, and M. F. Khorshidi. 2019. “A Dynamic Supply Chain Resilience Model for Medical Equipment’s Industry.” Journal of Modelling in Management 14 (3): 816–840. doi:10.1108/JM2-11-2018-0195.
  • Jaillon, L., C. S. Poon, and Y. Chiang. 2009. “Quantifying the Waste Reduction Potential of Using Prefabrication in Building Construction in Hong Kong.” Waste Management 29 (1): 309–320. doi:10.1016/j.wasman.2008.02.015.
  • Jain, V., S. Kumar, U. Soni, and C. Chandra. 2017. “Supply Chain Resilience: model Development and Empirical Analysis.” International Journal of Production Research 55 (22): 6779–6800. doi:10.1080/00207543.2017.1349947.
  • Kadir, M. A., W. P. Lee, M. S. Jaafar, S. M. Sapuan, and A. A. A. Ali. 2006. “Construction Performance Comparison between Conventional and Industrialized Building Systems in Malaysia.” Structural Survey 24 (5): 412–424. doi:10.1108/02630800610712004.
  • Kaiser, H. F. 1974. “An Index of Factorial Simplicity.” Psychometrika 39 (1): 31–36. doi:10.1007/BF02291575.
  • Kamalahmadi, M., and M. M. Parast. 2016. “A Review of the Literature on the Principles of Enterprise and Supply Chain Resilience: Major Findings and Directions for Future Research.” International Journal of Production Economics 171: 116–133. doi:10.1016/j.ijpe.2015.10.023.
  • Lee, A. H., W. C. Chen, and C. J. Chang. 2008. “A Fuzzy AHP and BSC Approach for Evaluating Performance of IT Department in the Manufacturing Industry in Taiwan.” Expert Systems with Applications 34 (1): 96–107. doi:10.1016/j.eswa.2006.08.022.
  • Li, C. Z., X. Xu, G. Q. Shen, C. Fan, X. Li, and J. Hong. 2018. “A Model for Simulating Schedule Risks in Prefabrication Housing Production: A Case Study of Six-Day Cycle Assembly Activities in Hong Kong.” Journal of Cleaner Production 185: 366–381. doi:10.1016/j.jclepro.2018.02.308.
  • Li, C. Z., F. Xue, X. Li, J. Hong, and G. Q. Shen. 2018. “An Internet of Things-Enabled BIM Platform for Onsite Assembly Services in Prefabricated Construction.” Automation in Construction 89: 146–161. doi:10.1016/j.autcon.2018.01.001.
  • Li, H., H. Guo, M. Skitmore, T. Huang, K. Chan, and G. Chan. 2011. “Rethinking Prefabricated Construction Management Using the VP‐Based IKEA Model in Hong Kong.” Construction Management and Economics 29 (3): 233–245. doi:10.1080/01446193.2010.545994.
  • Li, T. H., S. T. Ng, and M. Skitmore. 2013. “Evaluating Stakeholder Satisfaction during Public Participation in Major Infrastructure and Construction Projects: A Fuzzy Approach.” Automation in Construction 29: 123–135. doi:10.1016/j.autcon.2012.09.007.
  • Lo, S. M. 1999. “A Fire Safety Assessment System for Existing Buildings.” Fire Technology 35 (2): 131–152. doi:10.1023/A:1015463821818.
  • Mandal, S. 2020. “A Social-Exchange Perspective on Supply Chain Innovation.” In Supply Chain and Logistics Management: Concepts, Methodologies, Tools, and Applications, edited by Information Resources Management Association, 1655–1680. Hershey, PA: IGI Global.
  • Mooi, E., M. Sarstedt, and I. Mooi. 2018. Principal Component and Factor Analysis. Market Research. New York: Springer.
  • Morash, E. A. 2001. “Supply Chain Strategies, Capabilities, and Performance.” Transportation Journal 41 (1): 37–54.
  • Osei-Kyei, R., and A. P. C. Chan. 2015. “Review of Studies on the Critical Success Factors for Public–Private Partnership (PPP) Projects from 1990 to 2013.” International Journal of Project Management 33 (6): 1335–1346. doi:10.1016/j.ijproman.2015.02.008.
  • Osei-Kyei, R., A. P. Chan, and A. Dansoh. 2020. “Project Selection Index for Unsolicited Public–Private Partnership Proposals.” International Journal of Construction Management 20 (6): 555–566. doi:10.1080/15623599.2019.1573480.
  • Ott, R. L., and M. T. Longnecker. 2015. An Introduction to Statistical Methods and Data Analysis. Toronto: Nelson Education.
  • Owusu, E. K., A. P. Chan, M. R. Hosseini, and B. Nikmehr. 2020. “Assessing Procurement Irregularities in the Supply-Chain of Ghanaian Construction Projects: A Soft-Computing Approach.” Journal of Civil Engineering and MANAGEMENT 26 (1): 66–82. doi:10.3846/jcem.2020.11659.
  • Pavlov, A., D. Ivanov, A. Dolgui, and B. Sokolov. 2018. “Hybrid Fuzzy-Probabilistic Approach to Supply Chain Resilience Assessment.” IEEE Transactions on Engineering Management 65 (2): 303–315. doi:10.1109/TEM.2017.2773574.
  • Peck, H. 2005. “Drivers of Supply Chain Vulnerability: An Integrated Framework.” International Journal of Physical Distribution & Logistics Management 35 (4): 210–232. doi:10.1108/09600030510599904.
  • Pettit, T. J., K. L. Croxton, and J. Fiksel. 2013. “Ensuring Supply Chain Resilience: Development and Implementation of an Assessment Tool.” Journal of Business Logistics 34 (1): 46–76. doi:10.1111/jbl.12009.
  • Pettit, T. J., K. L. Croxton, and J. Fiksel. 2019. “The Evolution of Resilience in Supply Chain Management: A Retrospective on Ensuring Supply Chain Resilience.” Journal of Business Logistics 40 (1): 56–65. doi:10.1111/jbl.12202.
  • Ponis, S. T., and E. Koronis. 2012. “Supply Chain Resilience: Definition of Concept and Its Formative Elements.” Journal of Applied Business Research 28 (5): 921–930. doi:10.19030/jabr.v28i5.7234.
  • Reeves, M., and R. Varadarajan. 2020. “When Resilience Is More Important than Efficiency.” BCG Henderson Institute. Accessed 7 September 2020. Available at: https://www.bcg.com/publications/2020/resilience-more-important-than-efficiency.aspx.
  • Sahu, A. K., S. Datta, and S. S. Mahapatra. 2017. “Evaluation of Performance Index in Resilient Supply Chain: A Fuzzy-Based Approach.” Benchmarking 24 (1): 118–142. doi:10.1108/BIJ-07-2015-0068.
  • Santos, J. R. A. 1999. “Cronbach’s Alpha: A Tool for Assessing the Reliability of Scales.” Journal of Extension 37 (2): 1–5.
  • Tan, J., P. Zhang, K. Lo, J. Li, and S. Liu. 2017. “Conceptualizing and Measuring Economic Resilience of Resource-Based Cities: Case Study of Northeast China.” Chinese Geographical Science 27 (3): 471–481. doi:10.1007/s11769-017-0878-6.
  • Tan, W. J. 2020. “Modelling and Simulation of Supply Chain Resilience Using Complex System Approaches.” A thesis, Nanyang Technological University.
  • Van Der Vegt, G. S., P. Essens, M. Wahlström, and G. George. 2015. Managing Risk and Resilience. New York: Academy of Management Briarcliff Manor.
  • Wang, Z., T. Wang, H. Hu, J. Gong, X. Ren, and Q. Xiao. 2020. “Blockchain-Based Framework for Improving Supply Chain Traceability and Information Sharing in Precast Construction.” Automation in Construction 111: 103063. doi:10.1016/j.autcon.2019.103063.
  • Wieland, A., and C. M. Wallenburg. 2013. “The Influence of Relational Competencies on Supply Chain Resilience: A Relational View.” International Journal of Physical Distribution & Logistics Management 43 (4): 300–320. doi:10.1108/IJPDLM-08-2012-0243.
  • Xu, Y., J. F. Yeung, A. P. Chan, D. W. Chan, S. Q. Wang, and Y. Ke. 2010. “Developing a Risk Assessment Model for PPP Projects in China—A Fuzzy Synthetic Evaluation Approach.” Automation in Construction 19 (7): 929–943. doi:10.1016/j.autcon.2010.06.006.
  • Zainal, N. A., and B. Ingirige. 2018. “The Dynamics of Vulnerabilities and Capabilities in Improving Resilience within Malaysian Construction Supply Chain.” Construction Innovation 18 (4): 412–432. doi:10.1108/CI-09-2017-0079.
  • Zavala, A., D. Nowicki, and J. E. Ramirez-Marquez. 2018. “Quantitative Metrics to Analyze Supply Chain Resilience and Associated Costs.” Proceedings of the Institution of Mechanical Engineers, Part O: Journal of Risk and Reliability 233 (2): 186–199.
  • Zhai, Y., K. Chen, J. X. Zhou, J. Cao, Z. Lyu, X. Jin, G. Q. Shen, W. Lu, and G. Q. Huang. 2019. “An Internet of Things-Enabled BIM Platform for Modular Integrated Construction: A Case Study in Hong Kong.” Advanced Engineering Informatics 42: 100997. doi:10.1016/j.aei.2019.100997.
  • Zhang, X., L. Shen, and Y. Wu. 2011. “Green Strategy for Gaining Competitive Advantage in Housing Development: A China Study.” Journal of Cleaner Production 19 (2–3): 157–167. doi:10.1016/j.jclepro.2010.08.005.
  • Zhao, X., B. G. Hwang, S. P. Pheng Low, and P. Wu. 2015. “Reducing Hindrances to Enterprise Risk Management Implementation in Construction Firms.” Journal of Construction Engineering and Management 141 (3): 04014083. doi:10.1061/(ASCE)CO.1943-7862.0000945.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.