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首页> 外文期刊>Journal of Computing in Civil Engineering >Tracking Components and Maintenance History within a Facility Utilizing Radio Frequency Identification Technology
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Tracking Components and Maintenance History within a Facility Utilizing Radio Frequency Identification Technology

机译:利用射频识别技术跟踪设施中的组件和维护历史记录

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摘要

Limitations in data transfer between maintenance workers and a central facility management (FM) system result in lower data quality, longer service process times, and ineffective capturing of component maintenance history. Radio frequency identification (RFID) technology provides an opportunity to meet the current needs for uniquely identifying facility components, storing some maintenance history information on the component, and accessing this information on-demand within a facility. There have not been any research studies that tested the performance of active ultrahigh frequency RFID technology on facility components during operations and maintenance phase repetitively over an extended period of time. The objectives of this study were to identify how RFID technology can improve current FM processes and to determine technological feasibility of using RFID within a facility repetitively on a daily basis. The writers tagged fire valves in a facility with RFID tags and conducted a longevity test for sixty consecutive days by simulating tag identification, data access, and entry in real-life conditions. The results demonstrate that current commercially available active RFID technology performs well in a building environment where metallic objects and different obstructions are present. The observed reading distances were approximately half of the reading range expected in open air provided that there are not any massive obstructions between the reader and the tag.
机译:维护人员与中央设施管理(FM)系统之间的数据传输受到限制,从而导致数据质量降低,服务处理时间延长以及组件维护历史记录的获取效率低下。射频识别(RFID)技术提供了一种机会,可以满足当前唯一标识设施组件,在组件上存储一些维护历史信息以及按需在设施内访问此信息的需求。尚无任何研究研究可以在运行和维护阶段的较长时间内重复测试有源超高频RFID技术在设施组件上的性能。这项研究的目的是确定RFID技术如何改善当前的FM流程,并确定每天在设施内重复使用RFID的技术可行性。编写者在工厂的消防阀上贴上了RFID标签,并通过模拟标签标识,数据访问和在现实生活中的输入来连续进行60天的寿命测试。结果表明,当前的商用有源RFID技术在存在金属物体和不同障碍物的建筑环境中表现良好。假设阅读器和标签之间没有任何大的障碍物,则观察到的阅读距离约为露天阅读范围的一半。

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