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RCSMA: Receiver-Based Carrier Sense Multiple Access in UHF RFID Systems

机译:RCSMA:UHF RFID系统中基于接收器的载波侦听多路访问

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RFID tag identification is a crucial problem in UHF RFID systems. Traditional tag identification algorithms can be classified into two categories, ALOHA-based and tree-based. Both of them are inefficient due to the incidental high coordination cost. In this paper, we bring CSMA into UHF RFID systems to enhance tag read rate by reducing coordination cost. However, it is not straightforward due to the simple hardware design of passive RFID tags, which is unable to sense the transmissions or collisions of other tags. To tackle this challenge, we propose receiver-based CSMA (RCSMA) in this paper. In RCSMA, the reader notifies the tags channel condition. According to different sensing results of reader's notifications, the tags take corresponding actions, e.g., random back off. RCSMA does not require special RFID tag hardware design. An absorbing Markov chain model is presented to analyze the performance of RCSMA and shown to be consistent with the simulation results. Compared with optimized ALOHA-based algorithms and optimized tree-based algorithms, RCSMA can enhance the tag read rate by 30-70 percent under different reader and tag data rates.
机译:RFID标签识别是UHF RFID系统中的关键问题。传统的标签识别算法可以分为两类:基于ALOHA和基于树。由于附带的高昂协调成本,它们两者均效率低下。在本文中,我们将CSMA引入UHF RFID系统中,以通过降低协调成本来提高标签读取率。但是,由于无源RFID标签的简单硬件设计,这种方法并不简单,因为它无法感知其他标签的传输或碰撞。为了应对这一挑战,我们在本文中提出了基于接收器的CSMA(RCSMA)。在RCSMA中,读取器通知标签通道状态。根据读者通知的不同感测结果,标签采取相应的动作,例如随机退避。 RCSMA不需要特殊的RFID标签硬件设计。提出了吸收马尔可夫链模型来分析RCSMA的性能,并与仿真结果相吻合。与基于优化的基于ALOHA的算法和基于优化的基于树的算法相比,在不同的读取器和标签数据速率下,RCSMA可以将标签读取率提高30-70%。

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