Outdoor localization technique using active RFID technology aimed for security and disaster management applications

L. Vojtech, Marek Nerada, J. Hrad, R. Bortel
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引用次数: 13

Abstract

With the implementation of the principle of the Internet of Things raises demands for new services as well as technical requirements that enable their implementation. One of the fields is the localization of wounded in mass disasters. Currently, the identification is performed by paper / plastic triage tags, which are used to label wounded victim at first contact with rescue unit based on the state of the causality. Automatic identification using active RFID technology is in such a case a solution which permits remote technically sophisticated surveillance of the situation. It is advantageous to use active RFID tags as a low-power transmitter, which is an immense advantage comparison with GPS technology. Lifetime of such tag can be several months. Managed active RFID tags can localize wounded objects within the range of a few hundred meters in free space and indicate the degree of severity of the injury of individual causalities. RFID readers, i.e. locators placed in that area, evaluate the direction of arrival of each tag and transmit obtained information to the computer system, which calculates the position of each RFID tag using sophisticated signal processing methods. This information can be displayed in a specific map including classification of tags, their movement or history. This paper focuses on the testing and experimental verification of such a system. The results of the experiment verify the concept of an RFID locator with achieved accuracy of 2.1 m in the area of 100 × 100 m.
使用有源RFID技术的户外定位技术,旨在安全和灾害管理应用
随着物联网原理的实施,提出了对新服务的需求,以及使其实现的技术要求。其中一个领域是大规模灾害中伤员的定位。目前,识别是通过纸质/塑料分类标签进行的,这些标签用于根据因果关系的状态在第一次与救援单位接触时标记受伤的受害者。在这种情况下,使用有源射频识别技术的自动识别是一种解决方案,它允许对情况进行远程技术复杂的监视。使用有源RFID标签作为低功耗发射器是有利的,与GPS技术相比,这是一个巨大的优势。这种标签的使用寿命可以是几个月。管理有源RFID标签可以在自由空间几百米范围内定位受伤物体,并指示个体伤亡人员受伤的严重程度。RFID阅读器,即放置在该区域的定位器,评估每个标签的到达方向,并将获得的信息传输给计算机系统,计算机系统使用复杂的信号处理方法计算每个RFID标签的位置。这些信息可以显示在一个特定的地图上,包括标签的分类、它们的运动或历史。本文重点对该系统进行了测试和实验验证。实验结果验证了RFID定位器的概念,在100 × 100 m的区域内实现了2.1 m的精度。
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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