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首页> 外文期刊>Wireless personal communications: An Internaional Journal >A Novel RFID Tag Identification Protocol: Adaptive n-Resolution and k-Collision Arbitration
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A Novel RFID Tag Identification Protocol: Adaptive n-Resolution and k-Collision Arbitration

机译:一种新颖的RFID标签识别协议:自适应n分辨率和k冲突仲裁

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摘要

Since radio frequency identification (RFID) technology has become increasingly common in numerous applications, including large-scale supply chain management, improving the efficiency of RFID tag identification is an important task. In practical settings, the identification of RFID tags often occurs in a dynamic environment, in which tags move through a specific interrogation range. However, the literature contains few studies on the design of efficient identification protocols in dynamic environments. This study proposes a novel tag identification protocol that is particularly efficient in dynamic environments, the proposed protocol involves two anti-collision techniques: adaptive n-Resolution (AnR) and k-Collision Arbitration (kCA). These two techniques significantly improve the tag identification delay and communication overhead. This improvement is primarily due to the use of a newly designed challenge-response bit sequence mechanism and the information obtained from the previous tag identification procedure. As a result, AnR requires only a constant number of interrogation times regardless of the number of target tags, while kCA further improves the efficiency of tag identification with k-splitting collision arbitration. Rigorous analysis and simulation experiments show that this tag identification protocol significantly outperforms related methods (by at least 48.85% identification delay and 23.87% communication overhead can).
机译:由于射频识别(RFID)技术已在包括大规模供应链管理在内的众多应用中变得越来越普遍,因此提高RFID标签识别的效率是一项重要的任务。在实际环境中,RFID标签的识别通常发生在动态环境中,在这种环境中,标签会移动特定的询问范围。但是,有关动态环境中有效识别协议设计的文献很少。这项研究提出了一种新颖的标签识别协议,该协议在动态环境中特别有效,该协议涉及两种防冲突技术:自适应n分辨率(AnR)和k冲突仲裁(kCA)。这两种技术显着改善了标签识别延迟和通信开销。这种改进主要是由于使用了新设计的质询-响应位序列机制以及从先前的标签标识过程中获得的信息。结果,AnR仅需要恒定数量的询问时间,而与目标标签的数量无关,而kCA进一步提高了通过k拆分冲突仲裁进行标签识别的效率。严格的分析和仿真实验表明,该标签识别协议明显优于相关方法(至少可以延迟48.85%的识别延迟和23.87%的通信开销)。

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