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Mixed orthogonal frequency coded SAW RFID tags

机译:混合正交频率编码SAW RFID标签

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Orthogonal frequency coded (OFC) SAW radio-frequency identification (RFID) tags are currently being explored as a multi-sensor platform because of their passive spread-spectrum operation, low loss, and resilience in harsh environments. Ongoing research continues to search for robust device embodiments that increase the number of identifiable codes, in the presence of intersymbol interference, while maintaining reasonable device lengths. This paper presents a technique that shortens the SAW response length while preserving code diversity and bandwidth by utilizing a multi-track SAW configuration. These new devices allow the time response of multiple OFC chips to overlap and yield a mixed-frequency chip having the sum of the chip bandwidths but shorter overall time response. The theoretical development is presented and examples are discussed for these new mixed orthogonal frequency coded (MOFC) SAW devices. Experimental results for MOFC sensors, fabricated on YZ-LiNbO3, with a 7% fractional bandwidth and five chip frequencies in three cells, provide a good contrast to similar OFC designs. Experimental results are presented for the simultaneous operation of eight wireless temperature sensors—four OFC and four MOFC—in a 915-MHz wireless correlator receiver system, highlighting the ability of these devices to operate in the same system.
机译:正交频率编码(OFC)SAW射频识别(RFID)标签由于其无源扩频操作,低损耗和在恶劣环境下的弹性而正在被探索为一种多传感器平台。正在进行的研究继续寻找健壮的设备实施例,该设备实施例在存在符号间干扰的同时增加可识别代码的数量,同时保持合理的设备长度。本文提出了一种通过利用多磁道SAW配置在保留代码多样性和带宽的同时缩短SAW响应长度的技术。这些新设备允许多个OFC芯片的时间响应重叠,并产生具有芯片带宽总和但总时间响应更短的混频芯片。介绍了这些新型混合正交频率编码(MOFC)SAW器件的理论发展并讨论了示例。在YZ-LiNbO 3 上制造的MOFC传感器的实验结果,分数带宽为7%,在三个单元中具有五个芯片频率,与相似的OFC设计形成了很好的对比。给出了在915 MHz无线相关器接收器系统中同时运行八个无线温度传感器(四个OFC和四个MOFC)的实验结果,突出了这些设备在同一系统中运行的能力。

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