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Efficient Framed Slotted Aloha Protocol for RFID Tag Anticollision

机译:用于RFID标签防撞的高效成帧开槽Aloha协议

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In this paper, we propose a novel efficient frame slotted aloha (EFSA) protocol for radio frequency identification (RFID) tag anticollision in this paper. After successfully identifying each tag, the EFSA protocol will allocate the tag a slot number, which signifies when the tag could be identified during a read cycle. When no tags arrive and leave, idle slots and collision slots will not be produced in subsequent read cycles. In addition, if there is a collision slot in the EFSA protocol, colliding tags in the collision slot will be resolved by $Q$ -ary splitting where $Q$ is equal to the estimated number of colliding tags, while the other unidentified tags is in a waiting state until the colliding tags are successfully resolved. Since allocation of tags to slots is not random in the EFSA protocol, conventional tag quantity estimates are not suitable. Therefore, we also propose a novel tag quantity estimate for the EFSA protocol. Simulation results show that the EFSA protocol outperforms conventional protocols, in term of time slots of reidentifying tags, and the proposed estimate error is less than the conventional estimates in the EFSA protocol.
机译:在本文中,我们提出了一种新颖的高效帧时隙协议(EFSA),用于射频识别(RFID)标签防撞。成功识别每个标签后,EFSA协议将为标签分配一个插槽号,该编号表示何时可以在读取周期中识别该标签。当没有标签到达和离开时,在随后的读取周期中将不会产生空闲时隙和冲突时隙。此外,如果EFSA协议中有冲突插槽,则冲突插槽中的冲突标签将通过 $ Q $ -ary拆分,其中 $ Q $ 等于冲突标签的估计数量,而其他未识别标签位于等待状态,直到成功解决冲突标签。由于在EFSA协议中,将标签分配到插槽不是随机的,因此常规的标签数量估计不适合。因此,我们还为EFSA协议提出了一种新颖的标签数量估计。仿真结果表明,在重新识别标签的时隙方面,EFSA协议优于常规协议,并且所提出的估计误差小于EFSA协议中的常规估计。

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