Role of RFID technologies in transportation projects: A review

被引:10
作者
Sharma D.K. [1 ]
Mahto R.V. [2 ]
Harper C. [3 ]
Alqattan S. [1 ]
机构
[1] Department of Civil and Environmental Engineering, California State University Fullerton, 800 State College Blvd., Fullerton, 92831, CA
[2] Computer Engineering Program, California State University Fullerton, 800 State College Blvd., Fullerton, 92831, CA
[3] Department of Construction Management, Colorado State University, 224A Guggenheim Hall, 217 L.L. Gibbons Building, 850 Oval Drive, Fort Collins, 80523, CO
关键词
Automation; Construction; Internet of things; IoT; Maintenance; Operations; Radio frequency identification; RFID; Sensor; Tracking technology; Traffic; Transportation;
D O I
10.1504/IJTIP.2020.109772
中图分类号
学科分类号
摘要
Advancement in sensing and transmitting technologies has significantly reduced their cost and increased their use in various industries, including the architectural, engineering, and construction industry. These advancements in sensor and systemisation technologies are revolutionising the information generation process in the industries they are applied. Radio frequency identification (RFID) is one such wireless transmission technology that enables sensing, counting, measuring, documenting, identifying, locating, and transmitting information in real-time. These features can help managers to manage projects more effectively. However, there exists a significant gap between RFID technologies' current acceptance versus the expected acceptance in the transportation industry. This paper presents the findings from an extensive literature review, aimed to investigate the application of RFID systems to various phases of transportation projects. This research enabled identifying the advantages and barriers to RFID adoption. Lastly, action-items are recommended for transportation agencies that will help them in adopting RFID systems in the transportation industry. Copyright © 2020 Inderscience Enterprises Ltd.
引用
收藏
页码:349 / 377
页数:28
相关论文
共 136 条
  • [11] Chae S., Yoshida T., Application of RFID technology to prevention of collision accident with heavy equipment, Automation in Construction, 19, 3, pp. 368-374, (2010)
  • [12] Chen Q., Zhang S., Developing an RFID-based man-tool safety management system on a construction site, ICCREM, pp. 238-247, (2015)
  • [13] Collins J., Automotive RFID gets rolling, RFID Journal, (2004)
  • [14] Costin A., Pradhananga N., Teizer J., Leveraging passive RFID technology for construction resource field mobility and status monitoring in a high-rise renovation project, Automation in Construction, 24, pp. 1-15, (2012)
  • [15] Costin A., Pradhananga N., Teizer J., Passive RFID and BIM for real-time visualization and location tracking, Construction Research Congress 2014, pp. 169-178, (2014)
  • [16] Costin A.M., Teizer J., Schoner B., RFID and BIM-enabled worker location tracking to support real-time building protocol control and data visualization, Journal of Information Technology in Construction, 20, pp. 495-517, (2015)
  • [17] Crabb G.I., Cook A., Trial of the Use of RFID Tags in Highway Pavement Maintenance, (2012)
  • [18] Deng F., Et al., A CMOS humidity sensor for passive RFID sensing applications, Sensors, 14, 5, pp. 8728-8739, (2014)
  • [19] Deng F., Et al., Design of a slotted chipless RFID humidity sensor tag, Sensors and Actuators B: Chemical, 264, pp. 255-262, (2018)
  • [20] Devadas S., Et al., Design and implementation of PUF-based 'unclonable' RFID ICs for anti-counterfeiting and security applications, 2008 IEEE International Conference on RFID (Frequency Identification), IEEE RFID 2008, pp. 58-64, (2008)