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References

  1. Aarseth, W., Ahola, T., Aaltonen, K., Økland, A., & Andersen, B. (2017). Project sustainability strategies: A systematic literature review. International Journal of Project Management, 35(6), pp. 1071–1083. doi: 10.1016/j.ijproman.2016.11.006.
  2. Abdel-Galil, R. E. S. (2012). Desert reclamation, a management system for sustainable urban expansion. Progress in Planning, 78(4), pp. 151–206. doi: 10.1016/j.progress.2012.04.003.
  3. Abdel-Wahab, M., & Vogl, B. (2011). Trends of productivity growth in the construction industry across Europe, US and Japan. Construction Management and Economics, 29(6), pp. 635–644. doi: 10.1080/01446193.2011.573568.
  4. Abdul Kadir, M. R., Lee, W. P., Jaafar, M. S., Sapuan, S. M., & Ali, A. A. A. (2005). Factors affecting construction labour productivity for Malaysian residential projects. Structural Survey, 23(1), pp. 42–54. doi: 10.1108/02630800510586907.
  5. Aithal, P. S. (2015). Internal quality assurance cell and its contribution to quality improvement in higher education institutions: A case of sims. Ge-International Journal of Management Research, 3(5), pp. 70–83.
  6. Aje, I. (2012). The impact of contractors’ prequalification on construction project delivery in Nigeria. Engineering, Construction and Architectural Management, 19(2), pp. 159–172. doi: 10.1108/09699981211206098.
  7. Alkaf, N., Karim, A., Rahman, I. A., Memmon, A. H., & Jamil, N. (2012). Significant risk factors in construction projects: Contractor’s perception. In: IEEE Colloqium on Humanities, Science and Engineering Research (CHUSER2012), Kota Kinabalu, Malaysia, pp. 351–354. doi: 10.1109/CHUSER.2012.6504337.
  8. Andrew, O. C., & Sofian, S. (2012). Individual factors and work outcomes of employee engagement. Procedia - Social and Behavioral Sciences, 40, pp. 498–508. doi: 10.1016/j.sbspro.2012.03.222.
  9. Anvari, B., Angeloudis, P., & Ochieng, W. Y. (2016). A multi-objective GA-based optimization for holistic manufacturing, transportation and assembly of precast construction. Automation in Construction, 71(2), pp. 226–241. doi: 10.1016/j.autcon.2016.08.007.
  10. Arashpour, M., Wakefield, R., Blismas, N., & Lee, E. W. M. (2014). Analysis of disruptions caused by construction field rework on productivity in residential projects. Journal of Construction Engineering and Management, 140(2), pp. 04013053. doi: 10.1061/(ASCE)CO.1943-7862.0000804.
  11. Aziz, R. F., & Hafez, S. M. (2013). Applying lean thinking in construction and performance improvement. Alexandria Engineering Journal, 52(4), pp. 679–695. doi: 10.1016/j.aej.2013.04.008.
  12. Backes-Gellner, U., & Veen, S. (2009). The impact of workforce age heterogeneity on company productivity. (No. 0078).
  13. Ballard, G., Tommelein, I., Koskela, L., & Howell, G. (2002). Lean construction tools and techniques. In: Design and Construction - Building in Value, p. 504.
  14. Banawi, A., & Bilec, M. M. (2014). A framework to improve construction processes: Integrating lean, green and six sigma. International Journal of Construction Management, 14(1), pp. 45–55. doi: 10.1080/15623599.2013.875266.
  15. Bardhan, I. R., Krishnan, V. V., & Lin, S. (2007). Project performance and the enabling role of information technology: An exploratory study on the role of alignment. Manufacturing and Service Operations Management, 9(4), pp. 579–595. doi: 10.1287/msom.1070.0163.
  16. Barlow, P. (2009). Cost of Quality in Construction Industry.
  17. Barrett, J., & Bourke, J. (2013). Managing for inclusion: Engagement with an ageing workforce. Employment Relations Record, 13(1), pp. 13–24.
  18. Batty, M., Axhausen, K. W., Giannotti, F., Pozdnoukhov, A., Bazzani, A., Wachowicz, M., & et al. (2012). Smart cities of the future. European Physical Journal: Special Topics, 214(1), pp. 481–518. doi: 10.1140/epjst/e2012-01703-3.
  19. Berke, J. D., & Satir, A. (2011). Sustainability in supply chain management: A literature review and a conceptual flow cycle. International Journal of Sustainable Strategic Management, 3(1), pp. 50–72. doi: 10.7433/1115.
  20. Bertelsen, S. (2004). Lean construction: Where are we and how to proceed? Lean Construction Journal, 1, pp. 46–69.
  21. Bröchner, J., & Olofsson, T. (2012). Construction productivity measures for innovation projects. Journal of Construction Engineering and Management, 138(5), pp. 670–677. doi: 10.1061/(ASCE)CO.1943-7862.0000481.
  22. Carvalho, M. M., & Rabechini, R. (2017). Can project sustainability management impact project success? An empirical study applying a contingent approach. International Journal of Project Management, 35(6), pp. 1120–1132. doi: 10.1016/j.ijproman.2017.02.018.
  23. Castillo, V. E., Mollenkopf, D. A., Bell, J. E., & Bozdogan, H. (2018). Supply chain integrity: A key to sustainable supply chain management. Journal of Business Logistics, 39(1), pp. 38–56
  24. Chalker, M., & Loosemore, M. (2016). Trust and productivity in Australian construction projects: A subcontractor perspective. Engineering, Construction and Architectural Management, 23(2), pp. 192–210. doi: 10.1108/ECAM-06-2015-0090.
  25. Chan, A. P. C., Scott, D., & Chan, A. P. L. (2004). Factors affecting the success of a construction project. Journal of Construction Engineering and Management, 130(1), pp. 153–155.
  26. Chancellor, W., & Lu, W. (2012). Case study a regional and provincial productivity analysis of the Chinese construction industry: 1995 to 2012. Journal of Construction Engineering and Management, 142(11). doi: 10.1061/(ASCE)CO.1943-7862.0001177.
  27. Cooper, M. C., Lambert, D. M., & Pagh, J. D. (1997). Supply chain management: More than a new name for logistics. The International Journal of Logistics Management, 8(1), pp. 1–14. doi: 10.1108/09574099710805556.
  28. Crosby, P. B. (1980). Quality is free: The art of making quality certain. Signet.
  29. Dabirian, S., Khanzadi, M., & Taheriattar, R. (2017). Qualitative modeling of sustainability performance in construction projects considering productivity approach. International Journal of Civil Engineering, 15(8), pp. 1143–1158. doi: 10.1007/s40999-017-0241-4.
  30. Dallasega, P., & Rauch, E. (2017). Sustainable construction supply chains through synchronized production planning and control in engineer-to-order enterprises. Sustainability, 9(10), pp. 1888. doi: 10.3390/su9101888.
  31. Dixit, S., & Saurabh, K. (2019). Impact of construction productivity attributes over construction project performance in Indian construction projects. Periodica Polytechnica Architecture, 50(1), pp. 89–96 doi: 10.3311/PPar.12711.
  32. Dixit, S., Mandal, S. N., Sawhney, A., & Singh, S. (2017). Area of linkage between lean construction and sustainability in Indian construction industry. International Journal of Civil Engineering and Technology, 8(8), pp. 623–636.
  33. Dixit, S., Mandal, S. N., Thanikal, J. V., & Saurabh, K. (2019). Evolution of studies in construction productivity: A systematic literature review (2006–2017). Ain Shams Engineering Journal, 10(3), pp. 555–564. doi: 10.1016/j.asej.2018.10.010.
  34. Dixit, S., Pandey, A. K., Mandal, S. N., & Bansal, S. (2017). A study of enabling factors affecting construction productivity: Indian scenario. International Journal of Civil Engineering and Technology, 8(6). pp. 741–758.
  35. Doloi, H., Sawhney, A., Iyer, K. C., & Rentala, S. (2012). Analyzing factors affecting delays in Indian construction projects. International Journal of Project Management, 30(4), pp. 479–489. doi: 10.1016/j.ijproman.2011.10.004.
  36. Durdyev, S., & Ismail, S. (2016). On-site construction productivity in Malaysian infrastructure projects. Structural Survey, 34(4/5), pp. 446–462. doi: 10.1108/SS-12-2015-0058.
  37. Durdyev, S., & Mbachu, J. (2011). On-site labour productivity of New Zealand construction industry: Key constraints and improvement measures. Australasian Journal of Construction Economics and Building, 11(3), pp. 18–33. doi: 10.5130/ajceb.v11i3.2120.
  38. El Refai, A., Abed, F., & Al-Rahmani, A. (2015). Structural performance and serviceability of concrete beams reinforced with hybrid (GFRP and steel) bars. Construction and Building Materials, 96, pp. 518–529. doi: 10.1016/j.conbuildmat.2015.08.063.
  39. Frödell, M., Josephson, P., & Lindahl, G. (2008). Swedish construction clients’ views on project success and measuring performance. Journal of Engineering, Design and Technology, 6(1), pp. 21–32. doi: 10.1108/17260530810863316.
  40. Ganesan, S. (1987). Construction productivity. Habitat International, 8(34), pp. 29–42.
  41. García-Onetti, J., Scherer, M. E. G., & Barragán, J. M. (2018). Integrated and ecosystemic approaches for bridging the gap between environmental management and port management. Journal of Environmental Management, 206, pp. 615–624. doi: 10.1016/j.jenvman.2017.11.004.
  42. Gatti, U. C., Migliaccio, G. C., Schneider, S., & Fierro, R. (2010). Assessing physical strain in construction workforce: A first step for improving safety and productivity management. In: Proceedings of the 27th International Symposium on Automation and Robotics in Construction (ISARC 2010), ISARC, Bratislava, Slovakia, pp. 255–264.
  43. Genovese, A., Acquaye, A. A., Figueroa, A., & Koh, S. C. L. (2017). Sustainable supply chain management and the transition towards a circular economy: Evidence and some applications. Omega, 66, pp. 344–357. doi: 10.1016/j.omega.2015.05.015.
  44. Gilbert Silvius, A. J., Kampinga, M., Paniagua, S., & Mooi, H. (2017). Considering sustainability in project management decision making; An investigation using Q-methodology. International Journal of Project Management, 35(6), pp. 1133–1150. doi: 10.1016/j.ijproman.2017.01.011.
  45. Glavan, M., Dumitru, M., & Dumitrana, Mihaela. (2009). Empirical survey regarding the quality costs in the Romanian services companies. Amfiteatru Economic, 11(26), pp. 393–401.
  46. Grau, D., Caldas, C. H., Haas, C. T., Goodrum, P. M., & Gong, J. (2009). Impact of fast automated tracking of construction components on labor productivity. International Symposium on Automation and Robotics in Construction, ISARC, Austin, USA, pp. 505–511.
  47. Greed, C. (2005). An investigation of the effectiveness of gender mainstreaming as a means of integrating the needs of women and men into spatial planning in the United Kingdom. Progress in Planning, 64(4), pp. 241–321. doi: 10.1016/j.progress.2005.08.003.
  48. Guntuk, C. R., & Koehn, E. (2010). Construction productivity and production rates: Developing countries. In: Challenges, Opportunities and Solutions in Structural Engineering and Construction. CRC Press, pp. 687–692.
  49. Howell, G., (1999). What is lean construction. In: 7th Proceedings International Group for Lean Construction, p. 104.
  50. Hughes, R., & Thorpe, D. (2014). A review of enabling factors in construction industry productivity in an Australian environment. Construction Innovation, 14(2), pp. 210–228. doi: 10.1108/CI-03-2013-0016.
  51. Ikediashi, D. I., & Ogwueleka, A. C. (2016). Assessing the use of ICT systems and their impact on construction project performance in the Nigerian construction industry. Journal of Engineering, Design and Technology, 14(2), pp. 252–276. doi: 10.1108/JEDT-08-2014-0047.
  52. ISO 31000. (2009). ISO 31000:2009 Risk management - Principles and guidelines. Risk Management, 31000, 24. doi: ISBN 978-1-86975-127-2.
  53. Iyer, K. C., & Jha, K. N. (2005a). Factors affecting cost performance: Evidence from Indian construction projects. International Journal of Project Management, 23(4), pp. 283–295. doi: 10.1016/j.ijproman.2004.10.003.
  54. Iyer, K. C., & Jha, K. N. (2005b). Factors affecting cost performance: Evidence from Indian construction projects. International Journal of Project Management, 23(4), pp. 283–295. doi: 10.1016/j.ijproman.2004.10.003.
  55. Jarkas, A. M. (2015). Factors influencing labour productivity in Bahrain’s construction industry. International Journal of Construction Management, 15(1), pp. 94–108. doi: 10.1080/15623599.2015.1012143.
  56. Kannan, V. R., & Tan, K. C. (2005). Just in time, total quality management, and supply chain management: Understanding their linkages and impact on business performance. Omega, 33(2), pp. 153–162. doi: 10.1016/j.omega.2004.03.012.
  57. Karimi, H., Taylor, T. R. B., & Goodrum, P. M. (2017). Analysis of the impact of craft labour availability on North American construction project productivity and schedule performance. Construction Management and Economics, 35(6), pp. 368–380. doi: 10.1080/01446193.2017.1294257.
  58. Kazaz, A., Ulubeyli, S., Er, B., Arslan, V., Arslan, A., & Atici, M. (2015). Fresh ready-mixed concrete waste in construction projects: A planning approach. Procedia Engineering, 123, pp. 268–275. doi: 10.1016/j.proeng.2015.10.088.
  59. Kuraksin, A., Shemyakin, A., & Borychev, S. (2017). Meso-DTA traffic model technology for evaluating effectiveness and quality of the organization of traffic in large cities. Transportation Research Procedia, 20, pp. 378–383. doi: 10.1016/j.trpro.2017.01.062.
  60. Kuykendall, C. J. O. (2007). Key factors affecting labor productivity in the construction. Master Thesis, University of Florida.
  61. Lim, E. C., & Alum, J. (1995). Construction productivity: Issues encountered by contractors in Singapore. International Journal of Project Management, 13(1), pp. 51–58. doi: 10.1016/0263-7863(95)95704-H.
  62. Ling, F. Y. Y., Ke, Y., Kumaraswamy, M. M., Asce, M., & Wang, S. (2013). Key relational contracting practices affecting performance of public construction projects in China. Journal of Construction Engineering and Management, 142, pp. 1–12. doi: 10.1061/(ASCE)CO.1943-7862.
  63. Ma, G., Gu, L., & Li, N. (2015). Scenario based proactive robust optimization for critical chain project scheduling. Journal of Construction Engineering and Management, 141(10), pp. 1–12. doi: 10.1061/(ASCE)CO.1943-7862.
  64. Mahmood, S., Ahmed, S. M., Panthi, K., & Ishaque Kureshi, N. (2014). Determining the cost of poor quality and its impact on productivity and profitability. Built Environment Project and Asset Management, 4(3), pp. 296–311. doi: 10.1108/BEPAM-09-2013-0034.
  65. Mallawaarachchi, H., & Senaratne, S. (2015). Importance of quality for construction project success. In: 6th International Conference on Structural Engineering and Construction Management 2015, p. 84.
  66. McGregor, K. (2016). Emotions and activism for former so-called “comfort women” of the Japanese occupation of the Netherlands East Indies. Women’s Studies International Forum, 54, pp. 67–78. doi: 10.1016/j.wsif.2015.11.002.
  67. Mehta, N., Verma, P., & Seth, N. (2014). Total quality management implementation in engineering education in India: An interpretive structural modelling approach. Total Quality Management and Business Excellence, 25(1-2), pp. 124–140. doi: 10.1080/14783363.2013.791113.
  68. Minde, P. (2012). Labour productivity in construction activity, 5(1), pp. 1–20, doi: 10.13140/RG.2.2.34671.02724.
  69. Mirahadi, F., & Zayed, T. (2015). Simulation-based construction productivity forecast using neural-network-driven fuzzy reasoning. Automation in Construction, 65, pp. 102–115. doi: 10.1016/j.autcon.2015.12.021.
  70. Mishra, S., Mishra, B., & Professor, A. (2016). A study on risk factors involved in the construction projects. International Journal of Innovative Research in Science, 5(2), pp. 1190–1196. doi: 10.15680/IJIRSET.2016.0502005.
  71. Molavi, J., & Barral, D. L. (2016). A construction procurement method to achieve sustainability in modular construction. Procedia Engineering, 145, pp. 1362–1369. doi: 10.1016/j.proeng.2016.04.201.
  72. Mostafa, S., Chileshe, N., & Abdelhamid, T. (2016). Lean and agile integration within offsite construction using discrete event simulation a systematic literature review. Construction Innovation, 16(4), pp. 483–525. doi: 10.1108/CI-09-2014-0043.
  73. Naganathan, S., Mohamed, A. Y. O., & Mustapha, K. N. (2015). Performance of bricks made using fly ash and bottom ash. Construction and Building Materials, 96, pp. 576–580. doi: 10.1016/j.conbuildmat.2015.08.068.
  74. Nasir, H., Ahmed, H., Haas, C., & Goodrum, P. M. (2014). An analysis of construction productivity differences between Canada and the United States. Construction Management and Economics, 32(6), pp. 595–607. doi: 10.1080/01446193.2013.848995.
  75. Nasir, H., Haas, C. T., Rankin, J. H., Fayek, A. R., Forgues, D., & Ruwanpura, J. (2012). Development and implementation of a benchmarking and metrics program for construction performance and productivity improvement. Canadian Journal of Civil Engineering, 39(9), pp. 957–967. doi: 10.1139/l2012-030.
  76. Nasirzadeh, F., & Nojedehi, P. (2013). Dynamic modeling of labor productivity in construction projects. International Journal of Project Management, 31(6), pp. 903–911. doi: 10.1016/j.ijproman.2012.11.003.
  77. Nguyen, L., & Watanabe, T. (2017). The impact of project organizational culture on the performance of construction projects. Sustainability, 9(5), p. 781. doi: 10.3390/su9050781.
  78. Nguyen, T. P., & Chileshe, N. (2015). Revisiting the construction project failure factors in Vietnam. Built Environment Project and Asset Management, 5(4), pp. 398–416. doi: 10.1108/BEPAM-10-2013-0042.
  79. Nima, G. S., & Robinson, F. A. (2019, January 1). Factors influencing multifactor productivity of equipment-intensive activities. International Journal of Productivity and Performance Management, 69(9), pp. 2021–2045. doi: 10.1108/IJPPM-07-2018-0250.
  80. Olaniran, O. J. (2015). The effects of cost-based contractor selection on construction project performance. Journal of Financial Management of Property and Construction, 20(3), pp. 235–251. doi: 10.1108/JFMPC-06-2014-0008.
  81. Oral, E. L., & Oral, M. (2010). Predicting construction crew productivity by using self organizing map. Automation in Construction, 19(6), pp. 791–797. doi: 10.1016/j.autcon.2010.05.001.
  82. Panas, A., & Pantouvakis, J.-P. (2017). On the use of learning curves for the estimation of construction productivity. International Journal of Construction Management, 18(4), pp. 1–9. doi: 10.1080/15623599.2017.1326302.
  83. Pandey, A. K., Dixit, S., Bansal, S., Saproo, S., & Mandal, S. N. (2017). Optimize the infrastructure design of hospital construction projects to manage hassle free services. International Journal of Civil Engineering and Technology, 8(10), pp. 87–98.
  84. Payne, G. (2005). Getting ahead of the game: A twin-track approach to improving existing slums and reducing the need for future slums. Environment and Urbanization, 17(1), pp. 135–144. doi: 10.1630/0956247053633854.
  85. Pheng, L. S., Shang, G., & Foong, W. K. (2016). Enhancing construction productivity through organizational learning in the Singapore construction industry. International Journal of Construction Project Management, 8(1), pp. 71–89.
  86. Pignanelli, A., & Csillag, J. M. (2008a). The impact of quality management on profitability: An empirical study. Journal of Operations and Supply Chain Management, 1(1), pp. 66–77.
  87. Pignanelli, A., & Csillag, J. M. (2008b). The impact of quality management on profitability: An empirical study. The Flagship Research Journal of International Conference of the Production and Operations Management Society, 1(1), pp. 66–76.
  88. Poirier, E. A., Staub-French, S., & Forgues, D. (2015). Measuring the impact of BIM on labor productivity in a small specialty contracting enterprise through action-research. Automation in Construction, 58, pp. 74–84. doi: 10.1016/j.autcon.2015.07.002.
  89. Powl, A., & Skitmore, M. (2005). Factors hindering the performance of construction project managers. Construction Innovation: Information, Process, Management, 5(1), pp. 41–51. doi: 10.1108/14714170510815168.
  90. Ruddock, L., & Ruddock, S. (2009). Reassessing productivity in the construction sector to reflect hidden innovation and the knowledge economy. Construction Management and Economics, 27(9), pp. 871–879. doi: 10.1080/01446190903131166.
  91. Sadeh, E., & Garkaz, M. (2015). Explaining the mediating role of service quality between quality management enablers and students’ satisfaction in higher education institutes: The perception of managers. Total Quality Management and Business Excellence, 26(11-12), pp. 1335–1356. doi: 10.1080/14783363.2014.931065.
  92. Sahney, S. (2016). Use of multiple methodologies for developing a customer-oriented model of total quality management in higher education. International Journal of Educational Management, 30(3), pp. 326–353. doi: 10.1108/IJEM-09-2014-0126.
  93. Salunkhe, A. A., & Patil, R. S. (2014). Effect of construction delays on project time overrun: Indian scenario. IJRET: International Journal of Research in Engineering and Technology, 3(1), pp. 2319–1163.
  94. Sao, A., Singh, S., Dixit, S., Pandey, A. K., & Singh, S. (2017). Quality, productivity and customer satisfaction in service operations: An empirical study. International Journal of Mechanical Engineering and Technology, 8(810), pp. 579–596.
  95. Saththasivam, G., & Fernando, Y. (2017). Integrated sustainable supply chain management. In: Green Supply Chain Management for Sustainable Business Practice, pp. 218–233. doi: 10.4018/978-1-5225-0635-5.ch008.
  96. Sen, R., Choudhury, S. P., Kumar, R., & Panda, A. (2018). A comprehensive review on the feasibility study of metal inert gas welding. Materials Today: Proceedings, 5(9), pp. 17792–17801. doi: 10.1016/j.matpr.2018.06.104.
  97. Sezer, A. A., & Bröchner, J. (2014). The construction productivity debate and the measurement of service qualities. Construction Management and Economics, 32(6), pp. 565–574. doi: 10.1080/01446193.2013.831464.
  98. Shah, M. N., Dixit, S., Kumar, R., Jain, R., & Anand, K. (2019). Causes of delays in slum reconstruction projects in India. International Journal of Construction Management, 21(5), pp. 452–467. doi: 10.1080/15623599.2018.1560546.
  99. Shan, Y., Goodrum, P. M., Zhai, D., Haas, C., & Caldas, C. H. (2011). The impact of management practices on mechanical construction productivity. Construction Management and Economics, 29(3), pp. 305–316. doi: 10.1080/01446193.2010.538070.
  100. Singh, S., Bala, A., Dixit, S., & Varshney, D. (2018). Critical analysis of causes of delay in residential construction projects in India. International Journal of Civil Engineering and Technology, 9(1), pp. 330–345.
  101. Sundaray, B. K. (2011). Employee engagement: A driver of organizational effectiveness. European Journal of Business and Management, 3(8), pp. 53–60.
  102. Sweis, G. J., Hiyassat, M., & Al-Hroub, F. F. (2016). Assessing lean conformance by first-grade contractors in the Jordanian construction industry. Construction Innovation, 16(4), pp. 446–459. doi: 10.1108/CI-04-2015-0024.
  103. Tatoglu, E., Bayraktar, E., Golgeci, I., Koh, S. C. L., Demirbag, M., & Zaim, S. (2016). How do supply chain management and information systems practices influence operational performance? Evidence from emerging country SMEs. International Journal of Logistics Research and Applications, 19(3), pp. 181–199. doi: 10.1080/13675567.2015.1065802.
  104. Tezel, A., & Aziz, Z. (2017). Benefits of visual management in construction: Cases from the transportation sector in England. Construction Innovation, 17, pp. 125–157. doi: 10.1108/CI-05-2016-0029.
  105. Tezel, A., Koskela, L. L., & Tzortzopoulos, P. (2010). Visual management in construction: Study report on Brazilian cases. SCRI Research Report, (March), p. 36.
  106. Thomas, A., & Lamouri, S. (1998). Industrial management in the process industry. IFAC Proceedings 31(15), pp. 841–846. doi: 10.1016/S1474-6670(17)40657-4.
  107. Touboulic, A., & Walker, H. (2015). Theories in sustainable supply chain management: A structured literature review. Journal of Service Management, 45(1-2), pp. 1–42. doi: 10.1108/MBE-09-2016-0047.
  108. Vereen, S. C., Asce, M., Rasdorf, W., Asce, F., & Hummer, J. E. (2016). Development and comparative analysis of construction industry labor productivity metrics. Journal of Construction Engineering and Management, 142(7), pp. 1–9. doi: 10.1061/(ASCE)CO.1943-7862.0001112.
  109. Vogl, B., & Abdel-Wahab, M. (2015). Measuring the construction industry’s productivity performance: Critique of international productivity comparisons at industry level. Journal of Construction Engineering and Management, 141(4), p. 04014085. doi: 10.1061/(ASCE)CO.1943-7862.0000944.
  110. Waldman, D. A. (1994). The contributions of total quality management to a theory of work performance. Academy of Management Review, 19(3), pp. 510–536.
  111. Xu, G., Li, M., Chen, C. H., & Wei, Y. (2018). Cloud asset-enabled integrated IoT platform for lean prefabricated construction. Automation in Construction, 93, pp. 123–134. doi: 10.1016/j.autcon.2018.05.012.
  112. Xue, X., Shen, Q., Wang, Y., & Lu, J. (2008). Measuring the productivity of the construction industry in China by using DEA-based Malmquist productivity indices. Journal of Construction Engineering and Management, 134(1), pp. 64–71. doi: 10.1061/(ASCE)0733-9364(2008)134:1(64).
  113. York Bigazzi, A., & Rouleau, M. (2017). Can traffic management strategies improve urban air quality? A review of the evidence. Journal of Transport and Health, 7(B), pp. 111–124. doi: 10.1016/j.jth.2017.08.001.
  114. Yuen, B. (2004). Safety and dwelling in Singapore. Cities, 21(1), pp. 19–28. doi: 10.1016/j.cities.2003.10.005.
  115. Zeithaml, V. A. (2000). Service quality, profitability, and the economic worth of customers: What we know and what we need to learn. Journal of the Academy of Marketing Science, 28(1), pp. 67–85. doi: 10.1177/0092070300281007.
  116. Zhang, L., & Chen, X. (2016). Role of lean tools in supporting knowledge creation and performance in lean construction. Procedia Engineering, 145, pp. 1267–1274. doi: 10.1016/j.proeng.2016.04.163.
  117. Zou, P. X. W., Zhang, G., & Wang, J. (2007). Understanding the key risks in construction projects in China. International Journal of Project Management, 25(6), pp. 601–614. doi: 10.1016/j.ijproman.2007.03.001.
  118. Zou, P. X. W., Zhang, G., & Wang, J. (2012). Identifying key risks in construction projects: Life cycle and stakeholder perspectives. University of New South Wales, Sydney, pp. 1–14. doi: 10.1080/15623599.2009.10773122.
DOI: https://doi.org/10.2478/otmcj-2024-0012 | Journal eISSN: 1847-6228 | Journal ISSN: 1847-5450
Language: English
Page range: 150 - 169
Submitted on: Sep 15, 2023
Accepted on: Jun 26, 2024
Published on: Aug 8, 2024
Published by: University of Zagreb
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Publication frequency: 1 issue per year

© 2024 Dhruva Choudhary, Priyanka Singh, Saurav Dixit, published by University of Zagreb
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