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Optimal Frame Length Analysis and an Efficient Anti-Collision Algorithm With Early Adjustment of Frame Length for RFID Systems

机译:RFID系统的最优帧长分析和有效的防冲突算法,并通过帧长的早期调整

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This paper proposes an efficient anti-collision algorithm to improve the read performance of the EPCglobal ultra-high frequency (UHF) Class-1 Generation-2 radio-frequency identification (RFID) standard. Optimal frame length is one of the most important parameters to be adjusted in RFID anti-collision algorithms. Hence, we first derive the optimal frame length by analyzing the maximum of normalized throughput and by taking into account the unequal time intervals of successful, collision, and empty slots. We find that the optimal frame length should be set to 1.89 times of the number of tags when the ratio between collision-slot duration and empty-slot duration is 5. The proposed anti-collision algorithm is based on the mechanism of early adjustment of frame length and examines the fitness of frame length only at an optimal time slot in each read round. The primary advantage of our algorithm is the ability to achieve a good compromise between computation complexity and throughput performance. The results show that the proposed method provides up to 400 tags/s read speed and can obtain 5%–10% time-saving efficiency, as compared with typical dynamic framed-slotted ALOHA.
机译:本文提出一种有效的防冲突算法,以提高EPCglobal超高频(UHF)1类第2代射频识别(RFID)标准的读取性能。最佳帧长是RFID防冲突算法中要调整的最重要参数之一。因此,我们首先通过分析归一化吞吐量的最大值并考虑成功时隙,冲突时隙和空时隙的不相等时间间隔来得出最佳帧长度。我们发现,当冲突时隙持续时间与空时隙持续时间之比为5时,最佳帧长度应设置为标签数量的1.89倍。提出的防冲突算法基于帧的早期调整机制长度,并仅在每个读回合中的最佳时隙检查帧长度的适合性。我们算法的主要优点是能够在计算复杂度和吞吐量性能之间取得良好的折衷。结果表明,与典型的动态成帧时隙ALOHA相比,该方法可提供高达400个标签/秒的读取速度,并可以节省5%–10%的时间。

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