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首页> 外文期刊>IEEE Journal of Radio Frequency Identification >Design, Analysis, and Performance Evaluation of a UHF RFID Forward-Link Repeater
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Design, Analysis, and Performance Evaluation of a UHF RFID Forward-Link Repeater

机译:UHF RFID前导中继器的设计,分析和性能评估

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摘要

The range of UHF-RFID systems, involving passive tags, is typically limited by the tag's RF harvesting circuitry. In this paper a forward-link UHF RFID repeater is proposed. The repeater amplifies the reader-to-tag carrier signal. Then, a passive RFID tag can be successfully identified from a much larger distance, compared to current technology, by exploiting the sensitivity of the reader. The proposed repeater consists of low-cost components; namely a pair of antennas, a low-noise amplifier and passive electronics. The proposed design also accounts for out-of-band emissions and the limitations posed by the maximum effective isotropic radiated power of the EPC UHF Gen2 standard. In contrast to prior-art, it can be deployed with any commercial RFID reader. Link-budget analysis reveals i) that the location of the repeater is of great importance to the system, ii) the range depends on the reverse link and not on the forward, as in typical RFID technology and iii) optimum performance can be achieved with bistatic RFID readers and RFID tags, capable of harvesting RF power at higher input power-levels. It is shown that with common, commercial, monostatic RFID technology, a maximum range of 80m can be achieved. By deploying bistatic configurations, which allow for improved reader's sensitivity, the read-range could be extended to 350m. By “tuning” the tag's front-end to achieve good matching for increased incident power levels, the expected range could be increased to 2km. Experimental results validate the performance of the proposed repeater and reveal how the link budget is affected by the tag's front-end. 73m measured range is experimentally achieved with commercial monostatic RFID equipment.
机译:涉及被动标签的UHF-RFID系统的范围通常由标签的RF收集电路限制。在本文中,提出了一种前进链接UHF RFID中继器。中继器放大读取器到标签载波信号。然后,通过利用读取器的灵敏度,与当前技术相比,可以从更大的距离成功地识别被动RFID标签。拟议的中继器由低成本组成部分组成;即一对天线,低噪声放大器和被动电子器件。所提出的设计还考虑了带外排放和EPC UHF Gen2标准的最大有效各向同性辐射功率的限制。与现有技术相比,它可以与任何商业RFID读取器部署。链接预算分析显示I)中继器的位置对系统非常重要,ii)该范围取决于反向链路而不是前进,如典型的RFID技术和III)可以实现最佳性能双面RFID读卡器和RFID标签,能够在更高的输入功率级别收集RF功率。结果表明,由于普遍,商业,单声道RFID技术,可以实现最大范围的80米。通过部署允许改进的读者灵敏度的Bistatic配置,读取范围可以扩展到350米。通过“调整”标签的前端实现良好的入射功率水平匹配,预期范围可以增加到2km。实验结果验证了拟议的中继器的性能,并揭示了链路预算如何受标记前端的影响。通过商业单体RFID设备实验达到73M测量范围。

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