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An RFID Based Smartphone Proximity Absence Alert System

机译:基于RFID的智能手机接近度缺失警报系统

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We present the design, implementation, and evaluation of an RFID-based cellphone anti-lost and anti-theft measure. The cellphone owner is given an audio-visual alert at the very instant of the lost event, and the cellphone deduces the fact that it is away from its owner and executes the safety measures. This is realized by equipping the cellphone with a low-power RFID Reader and tagging the owner with a passive RFID token to determine a private space around him, which spans within 2-10 feet. We prototype an RFID Reader from discrete components under 60whichcantransmit30dBmwith-$ 78 dBm sensitivity, and can also serve as an educational tool for academic learning. Our system works on automatic, timed, or accelerometer based thresholds. We interface our system with Samsung Galaxy Note2 and develop an Android User Interface. We carry out extensive indoor and outdoor experiments under static and dynamic scenarios to ascertain the Frontal and Angular ranges, energy and power consumption, and memory and computational overheads. Our salient contribution is a twofold probing scheme—a duty cycle approach that economizes battery overhead, mitigates false alarms and scans the tag for multiple times by leveraging the interrogation time and power. We argue that though our design is costly in power budget, it is highly economical on battery energy because of short interrogation cycles. We show that for 17 tag interrogations from 20-24 dBm, our scheme consumes 72.1 to 52.4 percent lower energy than a single Bluetooth device scan. For a fully embedded design, we propose System-on-Chip RFID solutions. We foresee our endeavor as a viable proximity absence detection scheme for short range applications and scenarios.
机译:我们介绍基于RFID的手机防丢和防盗措施的设计,实施和评估。在丢失事件发生的那一瞬间,手机所有者就会收到视听警报,手机会推断出它远离所有者的事实并执行安全措施。这是通过为手机配备低功耗RFID读取器并为所有者标记无源RFID令牌来确定他周围的私人空间来实现的,该私人空间跨越2-10英尺。我们从60岁以下的分立组件原型制作了一个RFID读取器原型,它可以以30 dBm的灵敏度传输30 dBm,也可以用作学术学习的教育工具。我们的系统适用于基于自动,定时或加速度计的阈值。我们将系统与Samsung Galaxy Note2界面连接,并开发一个Android用户界面。我们在静态和动态场景下进行了广泛的室内和室外实验,以确定正面和角度范围,能量和功耗以及内存和计算开销。我们的显着贡献是双重探测方案-一种占空比方法,可通过利用讯问时间和功率来节省电池开销,减轻虚假警报并多次扫描标签。我们认为,尽管我们的设计在功率预算上成本很高,但由于查询周期短,因此在电池能量方面非常经济。我们显示,对于20至24 dBm的17个标签询问,我们的方案比单次蓝牙设备扫描的能耗低72.1%至52.4%。对于全嵌入式设计,我们提出了片上系统RFID解决方案。我们预见,我们的努力将是针对短距离应用程序和场景的可行的邻近缺失检测方案。

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