An enhanced dynamic framed slotted ALOHA algorithm for RFID tag identification

Su-Ryun Lee, Sung-Don Joo, Chaewoo Lee
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引用次数: 510

Abstract

In RFID system, one of the problems that we must solve is the collision between tags which lowers the efficiency of the RFID system. One of the popular anti-collision algorithms is ALOHA-type algorithms, which are simple and shows good performance when the number of tags to read is small. However, they generally require exponentially increasing number of slots to identify the tags as the number of tag increases. In the paper, we propose a new anti-collision algorithm called enhanced dynamic framed slotted ALOHA (EDFSA) which estimates the number of unread tags first and adjusts the number of responding tags or the frame size to give the optimal system efficiency. As a result, in the proposed method, the number of slots to read the tags increases linearly as the the number of tags does. Simulation results show that the proposed algorithm improves the slot efficiency by 85/spl sim/100% compared to the conventional algorithms when the number of tags is 1000.
一种用于RFID标签识别的增强动态框架开槽ALOHA算法
在RFID系统中,标签之间的碰撞是一个必须解决的问题,它降低了RFID系统的效率。目前流行的抗碰撞算法之一是aloha型算法,该算法简单,在标签读取数量较少的情况下表现出良好的性能。然而,随着标签数量的增加,它们通常需要以指数方式增加插槽来识别标签。在本文中,我们提出了一种新的抗碰撞算法,称为增强动态帧槽ALOHA (EDFSA),该算法首先估计未读标签的数量,然后调整响应标签的数量或帧大小以获得最佳的系统效率。因此,在所提出的方法中,读取标签的插槽数量随着标签数量的增加而线性增加。仿真结果表明,当标签数为1000时,与传统算法相比,该算法的插槽效率提高了85/spl sim/100%。
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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