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Optimization of tag reading performance in generation-2 RFID protocol

机译:第二代RFID协议中标签读取性能的优化

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Radio frequency identification (RFID) provides a non-line-of-sight (NLOS) and contactless approach for object identification. But if there are multiple tags in the range of an RFID reader, tag collision can take place due to radio signal interference and therefore an anti-collision algorithm is required to resolve collisions. Recently, EPCglobal RFID generation-2 (Gen-2) protocol [EPCglobal Specification, EPCTM radio-frequency identity protocols class-1 generation-2 UHF RFID protocol for communications at 860 MHz-960 MHz, version 1.0.9, January 2005. Available] is proposed for ultra-high frequency (UHF) passive tags and is being deployed. Gen-2 designs a slotted random anti-collision algorithm, especially, an adaptive slot-counter (Q) selection algorithm. The integer-valued parameter Q in Gen-2 plays a critical role in tag collision resolution. This adaptive algorithm dynamically adjusts the value of Qbased on the type of replies from tags. In this paper, we propose an optimal Q algorithm that determines the optimal values of Q according to the number of remaining tags and in turn to optimize tag identification speed (TIS) and query success rate (QSR), respectively. It's been demonstrated through extensive simulations that the proposed algorithm achieves higher TIS than Gen-2 adaptive Q algorithm.
机译:射频识别(RFID)为物体识别提供了一种非视距(NLOS)和非接触式方法。但是,如果在RFID读取器的范围内有多个标签,则由于无线电信号的干扰会发生标签冲突,因此需要一种防冲突算法来解决冲突。最近,EPCglobal RFID第2代(Gen-2)协议[EPCglobal规范,EPCTM射频识别协议,用于在860 MHz-960 MHz进行通信的1类第2代UHF RFID协议,版本1.0.9,2005年1月。 ]被提议用于超高频(UHF)无源标签,并且正在被部署。 Gen-2设计了时隙随机防冲突算法,尤其是自适应时隙计数器(Q)选择算法。 Gen-2中的整数参数Q在标签冲突解决中起着至关重要的作用。这种自适应算法根据标签的回复类型动态调整Q值。在本文中,我们提出了一种最佳Q算法,该算法根据剩余标签的数量确定Q的最佳值,进而分别优化标签识别速度(TIS)和查询成功率(QSR)。通过广泛的仿真表明,与Gen-2自适应Q算法相比,该算法可实现更高的TIS。

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