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D(2)ART: Direct Data Accessing from Passive RFID Tag for infra-less, contact-less, and battery-less pervasive computing

机译:D(2)ART:从无源RFID标签直接进行数据访问,实现无红外线,无接触和无电池的普适计算

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摘要

A wireless IoT device is getting more and more popular. The device may communicate with other devices without any communication infrastructure whenever these devices are sufficiently close. In view of energy consumption, this approach, i.e., infra-less communication is considerably cheaper and more efficient since energy dissipation grows with at least the square of the distance. With this "energy wise" approach, batteryless and contact-less communication nodes are becoming increasingly attractive for future pervasive computing. In this paper, we study important design considerations and technical limitations for realizing such a device, and then we propose D(2)ART (Direct Data Accessing from Passive RFID Tag) that not only performs as a normal passive RFID tag for identification, but also provides rich information such as multimedia to a reader with extreme low power consumption. Our fabricated D(2)ART IC is operational within 7-8 cm at data transmission rate of 5 Mbps by interfacing with a conventional flash memory according to the measurement and post-layout simulation results with reasonable assumptions. (C) 2015 Elsevier ay. All rights reserved.
机译:无线物联网设备越来越受欢迎。只要这些设备足够靠近,该设备就可以与其他设备通信,而无需任何通信基础结构。考虑到能量消耗,这种方法,即红外线通信相当便宜并且更有效,因为能量消耗至少以距离的平方增长。通过这种“能源明智”的方法,无电池和无触点通信节点对于未来的普及计算变得越来越有吸引力。在本文中,我们研究了实现此类设备的重要设计注意事项和技术局限性,然后提出了D(2)ART(从无源RFID标签进行直接数据访问),该技术不仅可以用作普通的无源RFID标签进行识别,而且它还以极低的功耗为阅读器提供了丰富的信息,例如多媒体。根据合理的假设,根据测量结果和布局后仿真结果,通过与常规闪存接口,我们制造的D(2)ART IC在5 Mbps的数据传输速率下可在7-8厘米范围内工作。 (C)2015 Elsevier。版权所有。

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