An Overview of Approaches for Utilizing RFID in Construction Industry

E. Ergen, B. Akinci
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引用次数: 50

Abstract

Construction industry has dynamic and uncontrolled environments, where tracking components/materials and accessing related information are challenging tasks. Failure in effectively tracking components/materials and in accessing the related information on demand results in schedule delays and additional labor costs. Due to long read ranges, radio frequency identification (RFID) technology holds the potential for enabling automated tracking of components/materials in dynamic and uncontrolled environments. Also, on-board storage capacity of RFID allows for making information related to a component of a bulk of material readily available to the persons who are handling components and materials. This paper provides an overview of possible applications for RFID use and describes the field tests conducted in several research studies on utilization of RFID in construction industry. The field tests described were performed for tracking pipe spools and precast components during delivery and receipt, tracking precast components in a manufacturer's storage yard, tracking tools, locating materials and transferring material information to construction site. The results of those tests demonstrated that despite some limitations of the current technology, active UHF RFID meets the needs for the selected cases provided that some reasoning mechanisms are developed and implemented for data cleaning and processing purposes.
RFID在建筑行业应用的方法综述
建筑行业具有动态和不受控制的环境,其中跟踪组件/材料和访问相关信息是具有挑战性的任务。未能有效地跟踪部件/材料,并根据需求访问相关信息,导致进度延迟和额外的人工成本。由于读取范围长,射频识别(RFID)技术具有在动态和不受控制的环境中实现组件/材料自动跟踪的潜力。此外,RFID的车载存储容量允许将与大量材料的组件相关的信息随时提供给处理组件和材料的人员。本文概述了RFID使用的可能应用,并描述了在建筑行业使用RFID的几项研究中进行的现场测试。所描述的现场试验包括:在交货和收货过程中跟踪管道线轴和预制件,在制造商的堆场中跟踪预制件,跟踪工具,定位材料和将材料信息传递到施工现场。这些测试的结果表明,尽管当前技术存在一些局限性,但只要为数据清理和处理目的开发和实施一些推理机制,有源超高频RFID就能满足选定情况的需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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