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Using volatile state storage for substantial improvement in RFID throughput

机译:使用易失性状态存储来大幅提高RFID吞吐量

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One of the major problems facing RFID systems today is that of tags not being read, resulting in reduced tag identification rates. This is more likely to happen as large number of tags is present in a small enclosure. We examine one of the causes for missed tags, namely coupling between adjacent tags. We present a theoretical explanation for the cause of coupling between tags and the mechanism by which it causes tags not to be identified. The concept of using a volatile state storage cell is examined. We study how state storage helps to eliminate missed tags, using the ISO 18000-6B protocol as an illustrative example. Experimental results using chips that have state storage capability are presented and we compare identification rates with and without using state storage. It is seen that when state storage is used, all tags are identified and is vastly superior to tag identification without state storage. For the first time, we present results showing how indispensable the concept of state storage is for passive RFID operation. The concept is readily extended to any protocol for passive RFID operation.
机译:如今,RFID系统面临的主要问题之一是标签无法读取,从而降低了标签识别率。由于较小的外壳中存在大量标签,因此更有可能发生这种情况。我们研究了丢失标签的原因之一,即相邻标签之间的耦合。我们对标签之间的耦合原因以及导致标签无法识别的机制进行了理论上的解释。研究了使用易失性状态存储单元的概念。我们以ISO 18000-6B协议为例,研究状态存储如何帮助消除丢失的标签。提出了使用具有状态存储功能的芯片的实验结果,我们比较了使用状态存储和不使用状态存储的识别率。可以看出,当使用状态存储时,所有标签都可以识别,并且大大优于没有状态存储的标签识别。首次,我们提供的结果表明状态存储的概念对于无源RFID操作是多么不可或缺。该概念很容易扩展到用于无源RFID操作的任何协议。

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