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Optimization of RFID-Based Tunnel Access Monitoring System Antenna Reading Areas

机译:基于RFID的隧道访问监控系统天线读取区域的优化

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This work focuses on a nuclear waste storage facility’s RFID (Radio Frequency Identification)-based access monitoring system and especially on antenna reading area mapping results. The objective of this research is to find out the effects of sprayed concrete bedrock caverns and height of reader antennas on RFID antenna reading areas. First, we will shortly introduce the access monitoring system, equipment, and program that have been developed for the tunnel system. Next, we describe the research area, the locations of the antennas, and the study protocol. Finally, we discuss the effects of sprayed concrete and antenna height on the antenna reading areas. Further, we introduce other noted factors that affect the reading area sizes, for example bedrock fractures and fillings. Based on the results, a sprayed concrete surface improves the reflectiveness of the radio signal and thus the reading capabilities of the ID (Identification)-cards. Another clear result was that the higher the antenna or ID-card was placed, the longer the MRRR (Maximum Reliable Read Range) range was.
机译:这项工作的重点是基于核废料存储设施的RFID(射频识别)访问监控系统,尤其是天线读取区域的映射结果。这项研究的目的是找出喷射混凝土基岩洞穴和读取器天线高度对RFID天线读取区域的影响。首先,我们将简要介绍为隧道系统开发的访问监控系统,设备和程序。接下来,我们描述研究领域,天线的位置以及研究方案。最后,我们讨论了喷射混凝土和天线高度对天线读取区域的影响。此外,我们介绍了影响读数区域大小的其他值得注意的因素,例如基岩裂缝和填充物。根据结果​​,喷涂的混凝土表面可改善无线电信号的反射率,从而改善ID(识别)卡的读取能力。另一个明显的结果是,天线或ID卡放置的越高,MRRR(最大可靠读取范围)的范围就越长。

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