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Dynamic RFID Anti-collision Algorithm with Multiple Interrogators

机译:具有多个询问器的动态RFID防碰撞算法

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摘要

In dense radio frequency identification (RFID) situations where the coverage of multiple interrogators overlaps, a key challenge is to mitigate interrogator-involved collisions. Among the solutions that have been proposed to reduce or avoid such collisions, Geometric Distribution Reader Anti-collision (GDRA) protocol achieves the highest throughput exploiting Geometric distribution to minimise contention among interrogators. This approach is compatible with current RFID protocols, such as EPC Gen2, ISO18000-6C and ETSI EN 302 208–1 without extra hardware support. In this paper, based on GDRA, we propose an enhanced protocol, called Dynamic GDRA (DGDRA), in which different interrogators dynamically and independently adapt their own Geometric distributions based on the experienced number of successful transmissions and collisions. Simulation results confirm that the proposed DGDRA provides higher throughput and enhances fairness performance compared to the original anti-collision scheme.
机译:在密集的射频识别(RFID)情况下,多个询问器的覆盖范围重叠,一个关键挑战是减轻涉及询问器涉及的冲突。在提出减少或避免这种碰撞的解决方案中,几何分布读取器防撞(GDRA)协议实现了利用几何分布的最高吞吐量,以最大限度地减少询问器之间的争用。这种方法与当前的RFID协议兼容,例如EPC Gen2,ISO18000-6C和ETSI EN 302 208-1,无需额外的硬件支持。本文基于GDRA,我们提出了一种增强的协议,称为动态GDRA(DGDRA),其中不同的询问器的动态和独立地适应自己的几何分布,基于所经历的成功传输和碰撞。仿真结果证实,与原始防碰撞方案相比,所提出的DGDRA提供更高的吞吐量并增强公平性能。

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