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Dynamic Frame Update Policy for UHF RFID Sensor Tag Collisions

机译:UHF RFID传感器标签碰撞的动态帧更新策略

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摘要

The current growing demand for low-cost edge devices to bridge the physical–digital divide has triggered the growing scope of Radio Frequency Identification (RFID) technology research. Besides object identification, researchers have also examined the possibility of using RFID tags for low-power wireless sensing, localisation and activity inference. This paper focuses on passive UHF RFID sensing. An RFID system consists of a reader and various numbers of tags, which can incorporate different kinds of sensors. These sensor tags require fast anti-collision protocols to minimise the number of collisions with the other tags sharing the reader’s interrogation zone. Therefore, RFID application developers must be mindful of anti-collision protocols. Dynamic Frame Slotted Aloha (DFSA) anti-collision protocols have been used extensively in the literature because EPCglobal Class 1 Generation 2 (EPC C1G2), which is the current communication protocol standard in RFID, employs this strategy. Protocols under this category are distinguished by their policy for updating the transmission frame size. This paper analyses the frame size update policy of DFSA strategies to survey and classify the main state-of-the-art of DFSA protocols according to their policy. Consequently, this paper proposes a novel policy to lower the time to read one sensor data packet compared to existing strategies. Next, the novel anti-collision protocol Fuzzy Frame Slotted Aloha (FFSA) is presented, which applies this novel DFSA policy. The results of our simulation confirm that FFSA significantly decreases the sensor tag read time for a wide range of tag populations when compared to earlier DFSA protocols thanks to the proposed frame size update policy.
机译:当前对弥补物理数字鸿沟的低成本边缘设备的需求不断增长,触发了射频识别(RFID)技术研究的范围不断扩大。除了物体识别,研究人员还研究了将RFID标签用于低功率无线传感,定位和活动推断的可能性。本文重点介绍无源UHF RFID感应。 RFID系统由阅读器和各种数量的标签组成,这些标签可以包含不同种类的传感器。这些传感器标签需要快速的防冲突协议,以最大程度减少与其他共享阅读器询问区域的标签的冲突次数。因此,RFID应用程序开发人员必须注意防冲突协议。动态帧时隙Aloha(DFSA)防冲突协议已在文献中广泛使用,因为EPCglobal Class 1 Generation 2(EPC C1G2)是RFID中的当前通信协议标准,采用了这种策略。此类别下的协议的区别在于其更新传输帧大小的策略。本文分析了DFSA策略的帧大小更新策略,以根据其策略对DFSA协议的主要最新技术进行调查和分类。因此,与现有策略相比,本文提出了一种新颖的策略来减少读取一个传感器数据包的时间。接下来,提出了一种新颖的防冲突协议模糊帧时隙Aloha(FFSA),它应用了这种新颖的DFSA策略。我们的仿真结果证实,与较早的DFSA协议相比,由于提出了帧大小更新策略,FFSA大大减少了大范围标签种群的传感器标签读取时间。

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