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Flexible and Time-Efficient Tag Scanning with Handheld Readers

机译:使用手持式阅读器进行灵活,高效的标签扫描

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Tag scanning is an important issue to dynamically manage tag IDs in radio frequency identification (RFID) systems. Different from tag identification that collects IDs of all the tags, tag scanning first verifies whether or not a responding tag has already been identified and retrieves its ID when the answer is yes, and collects the tag's ID only when it is unidentified. In this paper, we present the first study on with a handheld reader, which aims to scan tags in the reader's interrogation range at an arbitrarily specified position in the system. Existing studies mainly focus on , and they are highly time inefficient in performing spot scanning. The inefficiency stems from the small overlap between tag populations in different spot scanning operations, in which case existing solutions cannot efficiently recognize unidentified tags. We develop a novel technique called LOCK to efficiently recognize unidentified tags even when the overlapped tags are few. LOCK does not simply use a tag's reply slot index but also compact short responses from tags to efficiently distinguish unidentified tags from identified ones. The valuable compact short responses are firstly investigated, which are the keys for efficient tag identification in the paper. Based on LOCK, three tag scanning protocols are proposed to solve the spot scanning problem. Simulation results show that, for spot scanning, our best protocol reduces per tag scanning time by up to 70 percent when compared with the state-of-the-art solution. Moreover, the proposed protocols can also be employed to perform continuous scanning with better time efficiency than the best existing solutions.
机译:标签扫描是动态管理射频识别(RFID)系统中标签ID的重要问题。与收集所有标签ID的标签标识不同,标签扫描首先验证是否已识别出响应标签,并在回答为是时检索其ID,仅在未识别时才收集标签ID。在本文中,我们提出了关于手持阅读器的第一项研究,其目的是在系统中任意指定的位置扫描阅读器询问范围内的标签。现有研究主要集中在,并且它们在执行点扫描方面时间效率很高。效率低下是由于在不同的点扫描操作中标签种群之间的重叠很小,在这种情况下,现有解决方案无法有效地识别未识别的标签。我们开发了一种称为LOCK的新颖技术,即使重叠的标签很少,也可以有效地识别未识别的标签。 LOCK不仅使用标签的应答槽索引,还压缩来自标签的简短响应,以有效地区分未识别的标签和已识别的标签。首先研究了有价值的紧凑型短响应,这是有效识别标签的关键。基于LOCK,提出了三种标签扫描协议来解决点扫描问题。仿真结果表明,对于点扫描,与最新解决方案相比,我们最好的协议将每个标签的扫描时间减少了多达70%。此外,与现有最佳解决方案相比,所提出的协议还可以用于以更好的时间效率执行连续扫描。

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