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Master-slave dual readers enhanced aloha anti-collision mechanism for dense active RFID

机译:主从双读卡器增强了密集活动RFID的防撞机制

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摘要

Active RFID is a popular technology in online measurement, remote monitoring, wireless tracking, fleet management etc. The communication algorithms widely used are based on a random access algorithm ALOHA, with which the data packets are transmitted in a random delay when collisions happen. However, collisions in ALOHA based algorithms are severe in dense active systems. In this paper, we propose a Master-Salve Dual Readers (MSDR) anti-collision mechanism. Multiple experiments were performed to identify multiple active tags within a reader's interrogation range. Compared with the parallel dual readers (PPDR) mechanism and the single reader mechanism, the proposed MSDR reduces the rate of packets loss significantly.
机译:有源RFID在在线测量,远程监控,无线跟踪,车队管理等方面是一种流行的技术。广泛使用的通信算法是基于随机访问算法ALOHA的,当发生冲突时,该数据包将以随机延迟的方式传输。但是,基于ALOHA的算法中的冲突在密集活动系统中非常严重。在本文中,我们提出了一种Master-Salve Dual Readers(MSDR)防冲突机制。进行了多次实验,以识别阅读器询问范围内的多个活动标签。与并行双读取器(PPDR)机制和单读取器机制相比,建议的MSDR显着降低了数据包丢失率。

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