Zhang Hong

Designation:
Professor
Department:
Civil Engineering
University:
Zhejiang University
Country:
China
Email: Journal Associated: Trends in Computer Science and Information Technology Biography:

Professor of the College of Civil Engineering and Architecture of Zhejiang University, PhD student supervisor. Head of the Institute of Construction Management. Obtained PhD from City University of Hong Kong, Master Degree from Central South University, Bachelor Degree from Chongqing University. Used to work at City University of Hong Kong, Hong Kong Polytechnic University, University of Alberta (Canada) and China Academy of Railway Sciences.

Research Interest:  

Information & Digital- Based Construction Management; Simulation & Modelling for Construction Process. Deep Learning and Big Data for Dynamic Management of Construction Process

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List of Publications:

1.         Yan, X. Z. and Zhang, H. (2021) Computer Vision–Based Disruption Management for Prefabricated Building Construction Schedule. Journal of Computing in Civil Engineering, 35(6): 04021027. SCI

2.     Zhang, H. and Yu, L. (2021) Site Layout Planning for Prefabricated Components Subject to Dynamic and Interactive Constraints. Automation in Construction, 126.103693. SCI

3.     Zhang, H. and Yu, L. (2021) Resilience-Cost Tradeoff Supply Chain Planning for the Prefabricated Construction Project. Journal of Civil Engineering and Management, 27(1):45-59. SCI

4.         Zhang, H. and Yu, L. (2020) Dynamic Transportation Planning for Prefabricated Component Supply Chain. Engineering, Construction and Architectural Management, 27(9):2553-2576. (DOI: 10.1108/ECAM-12-2019-0674). SCI

5.         Jin, R., Zhang, H., Liu., D. H. and Yan, X. Z. (2020) IoT-Based Detecting, Locating and Alarming of Unauthorized Intrusion on Construction Sites. Automation in Construction, https://doi.org/10.1016/j.autcon.2020.103278. SCI

6.         Zhang, H. and Yu, L. (2020) Dynamic Performance Incentive Mechanism with Supervisory Capability for PPP Projects. Engineering, Construction and Architectural Management. 24 April 2020 (DOI 10.1108/ECAM-09-2019-0472). SCI

7.         Zhang, H., Yu, L. and Zhang W. Y. (2020) Dynamic Performance Incentive Mechanism with Supervisory Capability for PPP Projects. Engineering, Construction and Architectural Management. 24 April 2020 (DOI: 10.1108/ECAM-09-2019-0472). SCI

8.         Yan, X. Z., Zhang, H. and Li, H. (2020) Computer vision-based recognition of 3D relationship between construction entities for monitoring struck-by accidents. Computer-Aided Civil and Infrastructure Engineering, DOI: 10.1111/mice.12536, 1–16. SCI

9.         Yan, X. Z , Zhang, H. and Li, H. (2019) Estimating Worker-Centric 3D Spatial Crowdedness for Construction Safety Management Using a Single 2D Camera. Journal of Computing in Civil Engineering, ASCE, 33(5):1-13. SCIEI

10.      Zhang, H., Yan, X. Z., Li, H. and Jin R. (2019) Real-Time Alarming, Monitoring, and Locating for Non-Hard-Hat Use in Construction. Journal of Construction Engineering and Management, ASCE, 04019006-1-13. SCI, EI

11.      Zhang, H., Yan, X. Z. and Li, H.  (2018) Ergonomic Posture Recognition Using 3D View-Invariant Features from Single Ordinary Camera. 94-1:10. SCI, EI

12.      Zhang, H. Zhao, J. B., Tam, V. W. Y. (2017) System Dynamics Based Stakeholders' Impact Analysis of Highway Maintenance Systems, Proceedings of the Institution of Civil Engineers- Transport, 11, 28, SCI,

13.      Zhang, H., Jin, R., Li, H. and Skibniewski, M. J. (2017) Pavement Maintenance–Focused Decision Analysis on Concession Periods of PPP Highway Projects. Journal of Management in Engineering, 34(1): 04017047. SCI.

14.      Zhang, H. 2015). Simulation-Based Estimation of Fuel Consumption and Emissions of Asphalt Paving Operations. Journal of Computing in Civil Engineering, 29(2):  04014039. SCIEI

15.      Zhang, H. 2015). Discrete-Event Simulation for Estimating Emissions from Construction Processes. Journal of Management in Engineering31(2):: 04014034. SCI

16.      Zhang, H., Zhai, D. and Yang, Y. N.2014) Simulation-Based Estimation of Environmental Pollutions from Construction Processes. Journal of Cleaner Production, 76:85-94. SCI

17.     Li, H and Zhang, H.*2013Ant colony Optimization-Based Multi-Mode Scheduling Under Renewable and Nonrenewable Resource Constraints. Automation in Construction. 35:431-438. SCI, EI

18.     Zhang, H. 2012Ant Colony Optimization for Multimode Resource-Constrained Project Scheduling. Journal of Management in EngineeringASCE28(2): 150-159. SCI

19.     ZhangH.XingF.LiuJ. (2011) Rehabilitation Decision-Making for Buildings in the Wenchuan Area. Construction Management and Economics. 29(6): 569-578. EI

20.     ZhangH., XingF. (2010) Fuzzy-Multi-Objective Particle Swarm Optimization for Time–Cost–Quality Tradeoff in Construction. Automation in Construction, 19:1067–1075. SCIEI

21.     Zhang, H., and Li, H. (2010) Multi-Objective Particle Swarm Optimization for Construction Time–Cost Tradeoff Problems. Construction Management and Economics. 28 (1), 75-88. EI

22.     Zhang, H.2008Multi-Objective Simulation-Optimization for Earthmoving Operations. Automation in Construction, 18:79-85. SCI, EI

23.     Zhang, H., TamC. M., WangJ. Y. 2008An Object-Oriented Approach for Modelling and Simulation of Construction Operations. International Journal of Simulation and Process Modelling, 4(1):31-42. EI

24.     ZhangH., LiH., LuM. 2008Modeling Time-Constrains in Construction Operations through Simulation. Journal of Construction Engineering and Management, ASCE, 1347, 545-554. SCIEI

25.     ZhangH., Wang, J. Y.2008Particle Swarm Optimization for Construction Site Unequal-Area Layout. Journal of Construction Engineering and Management, ASCE, 134(9):739-748. SCIEI

26.     Zhang, H., Tam, C. M., Li, H. and Shi, J., (2006) Particle Swarm Optimization-Supported Simulation for Constructions. Journal of Construction Engineering and Management, ASCE.132 (12), 1267-1274. SCIEI

27.     Zhang, H., Li, H. and Tam, C. M. (2006) Particle Swarm Optimization for Preemptive Scheduling under Break and Resource-Constraints. Journal of Construction Engineering and Management, ASCE. 132 (3), 259-267. SCIEI

28.     Zhang, H., Li, H. and Tam, C. M. (2006) Permutation-Based Particle Swarm Optimization for Resource-Constrained Project Scheduling. Journal of Computing in Civil Engineering, ASCE. 20 (2), 141-149. SCIEI

29.     Zhang, H., Li, H. and Tam, C. M. (2006) Heuristic Scheduling of Resource-Constrained, Multiple-Mode and Repetitive Projects. Construction Management and Economics. 24 (2), 159-169. EI

30.     Zhang, H., Li, H. and Tam, C. M. (2006) Particle Swarm Optimization for Resource-Constrained Project Scheduling. International Journal of Project Management. 24(1), 83-92. SSCIEI

31.     Zhang, H., Tam, C. M. and Li, H. (2006) Multimode Project Scheduling Based on Particle Swarm Optimization. Computer-Aided Civil and Infrastructure Engineering. 21 (2), 93-103. SCI

32.     Zhang, H. and Tam, C. M. (2005) Consideration of Break in Modeling of Construction Processes. Engineering Construction and Architectural Management. 12 (4), 373-390. EI

33.     Zhang, H., Tam, C. M. and Li, H. (2005) Activity Object-Oriented Simulation Strategy for Modeling Construction Operations. Journal of Computing in Civil Engineering, ASCE. 19 (3), 313-322. SCIEI

34.     Zhang, H., Tam, C. M. and Li, H. (2005) Modeling Uncertain Activity Duration by Fuzzy Number and Discrete Event-Simulation. European Journal of Operational Research. 164 (3), 715-729. SCIEI

35.     Zhang, H. and Li, H. (2005) Particle Swarm Optimization-Based Schemes for Resource-Constrained Project Scheduling. Automation in Construction. 14(3), 393-404. SCIEI

36.     Shi, J., Li, H. and Zhang, H. (2005) Two Resource Dispatching Rules for Modeling Human Decisions in Simulation. International Journal of Project Management. 23, 97-107. EI

37.     Zhang, H., Li, H. and Tam, C. M. (2004) Fuzzy Discrete-Event Simulation for Modeling Uncertain Activity Duration. Engineering Construction and Architectural Management. 11(6), 426-437. EI

38.     Zhang, H. and Li, H. (2004) Simulation-based Optimization for Dynamic Resource Allocation. Automation in Construction. 13(3), 407-418. SCIEI

39.     Zhang, H. and Tam, C. M. (2004) Fuzzy Simulation of Flexible Construction Processes. International Journal of Computer Applications in Technology, 20(1/2/3), 15-25. EI

40.     Zhang, H. and Tam, C. M. (2003) Object Oriented Approach in Construction Simulation. International Journal of Engineering Simulation, 4(1), 17-25.

41.     Zhang, H. and Tam, C. M. (2003) Fuzzy Decision-Making for Dynamical Resource Allocation. Construction Management and Economics, 21(1), 31-41. EI

42.     Zhang, H., Tam, C. M. and Shi, J. (2003) Application of Fuzzy Logic to Construction Simulation. Journal of Computing in Civil Engineering, ASCE, 17(1), 38-45. SCIEI

43.     Zhang, H. and Tam, C. M. and Shi, J. (2002) Simulation-Based Methodology for Project Scheduling. Construction Management and Economics, 20(8), 667-678. EI

44.     Zhang, H., Shi, J. and Tam, C. M. (2002) Application of Simulation Related Techniques to Construction Operations. Engineering Construction and Architectural Management, 9(5/6), 433-445.

45.     Zhang, H., Shi, J. and Tam, C. M. (2002) Iconic Animation for Activity-Based Construction Simulation. Journal of Computing in Civil Engineering, ASCE, 16(3), 157-164. SCIEI

46.     Zhang, H. and Tam, C. M. (2002) Fuzzy Decision Making for Resource Allocation Implemented by Simulation. International Journal of Engineering Simulation, 3 (1), 8-14.

47.     Zhang, H., Shi, J. and Tam, C. M. (2002) Visual Modeling and Simulation for Construction Operation. Automation in Construction, 11(1), 47-57. SCIEI

48.     Zhang, H., Tam, C. M. and Shi, J. (2001) Resource Allocation Heuristic in Construction Simulation. Construction Management and Economics, 19(6), 643-651. EI

49.     Zhang, H., Tam, C. M. and Shi, J. (2001) Activity Object-Oriented Simulation on a Visual Environment. International Journal of Computer Integrated Design and Construction, 3(2), 88-96.

50.     Zhang, H., Tam, C. M. and Shi, J. (2000) Activity Object-Oriented Simulation Strategy for Construction Simulation. Proceedings of the Third European Conference on Product and Process Modeling in the Building and Related Industries. September 2000, 391-398. SCI

51.     Zhang, H., Tam, C. M. and Shi, J. (2000) Easy-Use Animation for Activity-Based Construction Simulation. Proceedings of the IASTED International Conference on Modelling and Simulation. Pittsburgh, Pennsylvania, May 2000, 36-42.

52.     Shi, J. and Zhang, H. (1999) Iconic Animation of Construction Simulation. Proceedings of the 1999 Winter Simulation Conference, December 1999, 992-997. EI



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