A framework for real-time monitoring and early warning to scaffold safety at construction site

被引:0
作者
Xue, Xiaolong [1 ]
Shi, Ning [1 ]
Chen, Xiang [1 ]
Wang, Chengwu [2 ]
Zhao, Qi [2 ]
Luo, Yazhuo [3 ]
机构
[1] Department of Construction and Real Estate, School of Management, Harbin Institute of Technology, Harbin
[2] Guangdong Office, China Construction Fifth Engineering Division Corp., LTD
关键词
Real-time monitoring; RFID; Safety management; Scaffold;
D O I
10.4156/jcit.vol7.issue19.16
中图分类号
学科分类号
摘要
Scaffold accidents take a large proportion of construction accidents, thus safety management of scaffold was significant important. However, scaffold safety management involves several processes (build-up, check and accept, maintenance, dismantle, etc.) and massive factors (workers, working conditions, environment, etc.), which makes the situation very complicated. Existing methods mainly rely on artificial operation, which is inefficient and unreliable. The objectives of this study will testify how RFID technology could improve current safe management of scaffold. The writers analyzes the existed accidents and the management process of scaffold, identifies the key safety control points of scaffold, based on that, proposed a framework of real-time monitoring and early warning method of scaffold utilizing with RFID and wireless sensor network, mainly including two modules: one is realtime monitoring module, the other is safety analysis and early warning module.
引用
收藏
页码:140 / 146
页数:6
相关论文
共 17 条
[1]  
Wu C.H., Chan H.T., Dai S.T., Study of applying Modified Delphi Method (MDM) in constructing business adopting RFID assessment criteria, International Journal of Advancements in Computing Technology, 4, 1, pp. 187-198, (2012)
[2]  
Hiroki T., Katsutoshi O., Seiji T., Experimental study and evaluation method for the buckling strength of scaffold, Procedia Engineering, 14, pp. 297-303, (2011)
[3]  
Zhang H., Chandrangsu T., Rasmussen K.J.R., Probabilistic study of the strength of steel scaffold systems, Structural Safety, 32, pp. 393-401, (2010)
[4]  
Tayakorn C., Kim J.R.R., Structural modelling of support scaffold systems, Journal of Constructional Steel Research, 67, pp. 866-875, (2011)
[5]  
Sean M.W., Rod J.G., Malcolm J., Paul M., Safety with access scaffolds: Development of a prototype decision aid based on accident analysis, Journal of Safety Research, 34, pp. 249-261, (2003)
[6]  
Min S.N., Kim J.Y., Mohamad P., The effects of safety handrails and the heights of scaffolds on the subjective and objective evaluation of postural stability and cardiovascular stress in novice and expert construction workers, Applied Ergonomics, 7, pp. 1-8, (2011)
[7]  
Kopl M.H., Michael M., An evaluation of scaffold safety at construction sites, Journal of Safety Research, 35, pp. 141-150, (2004)
[8]  
Soungho C., Tomohiro Y., Application of RFID technology to prevention of collision accident with heavy equipment, Automation in Construction, 19, pp. 368-374, (2010)
[9]  
Ko C.H., RFID-based building maintenance system, Automation in Construction, 18, pp. 275-284, (2009)
[10]  
Huanjia Y., David A.S.C., Wu W.W., Zhou Z.P., Li Q.M., Design and implementation of an identification system in construction site safety for proactive accident prevention, Accident Analysis and Prevention, 11, pp. 1-11, (2011)