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Interim CRC: A Novel Method to Read Large-Size Data from Tags in RFID Systems

机译:临时CRC:一种从RFID系统中的标签读取大数据的新颖方法

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Large capacity tags are becoming available to meet the demands of industry, but the UHF RFID protocol is unable to reliably and efficiently read large data sets from tags. First of all, large data sets are not well protected. The tag merely relies on 16-bit CRC for ensuring the validity of up to 4,096-bit user-specific data in EPCglobalClG2 protocol. Furthermore, the reliability will be even worse if large capacity tags are implemented using semi-active technology which is likely to prevail among sensor-integrated RFID tags. Since semi-active tags greatly alleviate the performance limitation imposed by the turn-on power of the tag chip, backscattering signal of semi-active tags could be a serious challenge for most readers because it is much weaker than signals emitted by passive tags due to longer reading distance. In this paper, Interim CRC is presented to enhance transmission reliability and efficiency when the tag is backscattering a large data set. By taking advantage of Interim CRC, the large data set can be divided into several blocks, and 16-bit checksum is calculated over each block. The tag backscatters all blocks at the first time and only retransmits certain blocks if CRC error occurs in those blocks. The result of simulation shows that the reading error rate can be confined to a preset threshold and the accumulative total of transmitted data are greatly reduced if optimal block size and transmission times are complied with. The simulation also conclusively proves that semi-active tags derive even longer reading range from Interim CRC. In addition, Interim CRC is totally compliant with the EPCglobalClG2 protocol. It fully makes use of CRC-16 encoder and does not involve any other data encoding schematics and hardware modifications.
机译:大容量标签正变得可以满足工业需求,但是UHF RFID协议无法可靠,有效地从标签读取大数据集。首先,大型数据集没有得到很好的保护。该标签仅依靠16位CRC来确保EPCglobalClG2协议中最多4,096位用户特定数据的有效性。此外,如果使用半主动技术实现大容量标签,可靠性甚至会更差,这在集成传感器的RFID标签中很可能占主导地位。由于半有源标签极大地减轻了标签芯片开启电源带来的性能限制,因此半有源标签的反向散射信号对于大多数阅读器而言可能是一个严峻的挑战,因为它比无源标签发出的信号弱得多,这是由于更长的阅读距离。在本文中,提出了临时CRC来增强当标签反向散射大数据集时的传输可靠性和效率。通过使用临时CRC,可以将大数据集划分为几个块,并在每个块上计算16位校验和。标签第一次将所有块反向散射,并且仅在某些块中发生CRC错误时才重新传输某些块。仿真结果表明,如果遵循最佳的块大小和传输时间,则可以将读取错误率限制在预设的阈值内,并且可以大大减少传输数据的累积总数。该模拟还最终证明了半主动标签从临时CRC得出的读取范围更长。此外,临时CRC完全符合EPCglobalClG2协议。它完全利用CRC-16编码器,并且不涉及任何其他数据编码原理图和硬件修改。

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