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Managing the Number of Tag Bits Transmitted in a Bit-Tracking RFID Collision Resolution Protocol

机译:管理在位跟踪RFID冲突解决协议中传输的标记位的数量

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摘要

Radio Frequency Identification (RFID) technology faces the problem of message collisions. The coexistence of tags sharing the communication channel degrades bandwidth, and increases the number of bits transmitted. The window methodology, which controls the number of bits transmitted by the tags, is applied to the collision tree (CT) protocol to solve the tag collision problem. The combination of this methodology with the bit-tracking technology, used in CT, improves the performance of the window and produces a new protocol which decreases the number of bits transmitted. The aim of this paper is to show how the CT bit-tracking protocol is influenced by the proposed window, and how the performance of the novel protocol improves under different conditions of the scenario. Therefore, we have performed a fair comparison of the CT protocol, which uses bit-tracking to identify the first collided bit, and the new proposed protocol with the window methodology. Simulations results show that the proposed window positively decreases the total number of bits that are transmitted by the tags, and outperforms the CT protocol latency in slow tag data rate scenarios.
机译:射频识别(RFID)技术面临着消息冲突的问题。共享通信信道的标签的共存会降低带宽,并增加发送的位数。将控制标签传输的位数的窗口方法应用于冲突树(CT)协议,以解决标签冲突问题。这种方法与CT中使用的位跟踪技术的结合,提高了窗口的性能,并产生了一种新协议,该协议减少了传输的位数。本文的目的是说明所提出的窗口如何影响CT比特跟踪协议,以及在不同情况下如何提高新协议的性能。因此,我们对CT协议进行了公平的比较,该协议使用位跟踪来识别第一个冲突位,并使用窗口方法对新提议的协议进行了比较。仿真结果表明,在慢速标签数据速率的情况下,所提出的窗口可积极减少标签传输的比特总数,并优于CT协议延迟。

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