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首页> 外文期刊>IEEE Journal of Radio Frequency Identification >Theoretical Performance Evaluation of UHF-RFID Systems With Multi-Antenna Maximum-Likelihood Decoding
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Theoretical Performance Evaluation of UHF-RFID Systems With Multi-Antenna Maximum-Likelihood Decoding

机译:具有多天线最大似然解码的UHF-RFID系统的理论性能评估

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Radio frequency identification (RFID) is a technique that enables autonomous identification of objects using tiny and cheap transponders (tags). Therefore, its use increases, especially in the area of logistics. However, in dense applications scenarios with many tags multiple tags may transmit their data at the same time, leading to collisions. These collisions, especially in case of UHF RFID, significantly reduce the system throughput. The use of multiple input-multiple output (MIMO) is one candidate to achieve a high throughput even in case of tag collisions. Within this paper, we therefore analyze the performance of maximum-likelihood decoding for UHF RFID with multiple reception antennas. We especially take into account the impact of the FM0 channel encoding used by the EPCglobal Class-1 Gen-2 standard, the most common UHF RFID standard in the area of logistics. The channel characteristics of passive RFID systems follow the so-called double or backscatter Rayleigh distribution, which makes the performance analysis a challenging task. We use two methodologies to analyze the performance in this. First, we derive an upper bound symbol error probability (SEP) based on the pairwise error probability (PEP). The second technique depends on the exact evaluation of the SEP by taking into account all probabilities of errors between symbols. We finally compare the accuracy of both methodologies with simulation results. These results show that the PEP analysis converges with increasing number of antennas, and the exact analysis gives accurate results even with only two receive antennas.
机译:射频识别(RFID)是一种使用微小且便宜的应答器(标签)实现自主识别对象的技术。因此,它的使用增加了,特别是在物流领域。但是,在具有许多标签的密集应用场景中,多个标签可能同时传输其数据,从而导致冲突。这些冲突,特别是在UHF RFID的情况下,会大大降低系统吞吐量。即使在标签冲突的情况下,使用多输入多输出(MIMO)也是实现高吞吐量的一种候选方法。因此,在本文中,我们将分析具有多个接收天线的UHF RFID的最大似然解码性能。我们特别考虑到EPCglobal Class-1 Gen-2标准(物流领域最常见的UHF RFID标准)所使用的FM0通道编码的影响。无源RFID系统的通道特性遵循所谓的双重或反向散射瑞利分布,这使性能分析成为一项艰巨的任务。我们使用两种方法来分析性能。首先,我们基于成对错误概率(PEP)得出上限符号错误概率(SEP)。第二种技术取决于SEP的准确评估,其中考虑到了符号之间的所有错误概率。最后,我们将两种方法的准确性与仿真结果进行了比较。这些结果表明,PEP分析随着天线数量的增加而收敛,即使只有两个接收天线,精确的分析也可以得出准确的结果。

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