Sensing technologies in construction engineering education: industry experiences and expectations

IF 3.6 Q1 ENGINEERING, CIVIL Journal of Information Technology in Construction Pub Date : 2023-08-28 DOI:10.36680/j.itcon.2023.024
O. Ogunseiju, Nihar J. Gonsalves, A. Akanmu, D. Bairaktarova, P. Agee, Kereshmeh Asfari
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Abstract

As the construction industry continues to advance technologically, the adoption of sensing technologies is gradually gaining momentum. Sensing technologies (such as radio frequency identification systems, laser scanners, cameras, and global position systems) play a significant role in reducing costs, improving project productivity, and enhancing workers' health and safety. This has prompted the need for a workforce with the required skills and knowledge for deploying sensing technologies in the industry. Since construction-related education is aimed at preparing students for the future of the industry, it is important to investigate the industry’s expectations for equipping the future workforce with the required skills. This study adopts a mixed-method research approach. Data are collected from surveys, case studies, and a focus group discussion with industry practitioners. The data elucidate participants’ perceptions, attitudes, and beliefs regarding: the skills required, and level of knowledge transfer required to advance sensing technologies on construction projects, and the value and anticipated demand for these skills. The findings also revealed the extent to which sensing technologies are deployed in the industry and the benefits driving the adoption of these technologies. The results reveal a high rate of adoption of sensing technologies amongst industry practitioners and inform construction applications and skills to be taught in construction engineering education. This study contributes to the existing scarce literature on the knowledge and skill demands of the industry to implement sensing technologies. The findings provide critical feedback for expanding the construction education curriculum to meet up the industry’s demand and adequately prepare the future workforce.
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建筑工程教育中的传感技术:行业经验与期望
随着建筑行业技术的不断进步,传感技术的采用也逐渐获得动力。传感技术(如射频识别系统、激光扫描仪、摄像机和全球定位系统)在降低成本、提高项目生产率和加强工人的健康和安全方面发挥着重要作用。这促使了对具有在行业中部署传感技术所需技能和知识的劳动力的需求。由于建筑相关教育的目的是让学生为未来的行业做好准备,因此调查行业对未来劳动力所需技能的期望是很重要的。本研究采用混合方法研究方法。数据收集自调查、案例研究和与行业从业者的焦点小组讨论。这些数据阐明了参与者对以下方面的看法、态度和信念:所需的技能、推进建筑项目中传感技术所需的知识转移水平,以及这些技能的价值和预期需求。调查结果还揭示了传感技术在行业中的部署程度以及推动这些技术采用的好处。研究结果揭示了传感技术在行业从业者中的高采用率,并为建筑工程教育中要教授的建筑应用和技能提供了信息。本研究有助于弥补现有文献中关于产业实施传感技术所需的知识和技能需求的不足。研究结果为扩大建筑教育课程提供了重要的反馈,以满足行业需求,并为未来的劳动力做好充分准备。
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来源期刊
CiteScore
6.90
自引率
8.60%
发文量
44
审稿时长
26 weeks
期刊最新文献
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