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声表面波射频标签码容量的最大化 被引量:3

The maximization of code capability of surface acoustic wave radio frequency identification
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摘要 声表面波标签是一种不使用集成电路芯片的射频识别技术。由于其与半导体射频标签在原理上的本质区别,在若于特殊场合下具有独特的优势。声表面波标签的码容量通常很难满足实际应用的需求,成为限制其广泛应用的主要原因。提出了一种设计声表面波射频标签系统的新方法,从以下两方面增大码容量:(1)根据实际系统的误差概率和所要求的可靠性,最佳地决定系统设计的分辨精度;(2)采用反射脉冲的时延间隔代替反射脉冲的绝对时延位置来表述该脉冲代表的码片值,从而避免了人为分组,在一定空间内最大可能地增大了码容量。以中心频率922.5 MHz、带宽5 MHz的射频标签为例,在8 mm长的128°YX-LiNbO_3压电基片上,制作了码容量超过三下万的系统。该系统包括温度校准,在识别标签的同时并能测出温度,精度为0.5℃。 Surface Acoustic Wave(SAW) Radio Frequency Identification(RFID) has its advantages over IC based RFID,but it has difficulties to possess the code capacity large enough for most practical usage.Especially,in the frequency band of 922.5 MHz,the permitted bandwidth is only 5 MHz,which restricts the reflectors separated each other distantly,as the results,the code capacity becomes much less in the same dimension of the chip.In order to break through it,in the paper,we report a new system,which enables one to fabricate a tag with code capacity 3.5×10~7 within a chip length of 8 mm.The result demonstrates a bright prospect of SAW RFID for wide applications.
出处 《声学学报》 EI CSCD 北大核心 2011年第2期207-210,共4页 Acta Acustica
基金 国家自然科学基金资助项目(10774073)
关键词 射频标签 声表面波 容量 最大化 射频识别技术 标签系统 集成电路芯片 温度校准 Acoustic surface wave devices Acoustic waves Acoustics Acoustoelectric effects Cryptography Frequency bands Radio waves
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参考文献6

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同被引文献43

  • 1陈昆,李跃华,陈思思.步进频率雷达回波采样数据处理[J].微波学报,2012,28(S1):267-270. 被引量:6
  • 2邓晔,李庆亮,韩韬,施文康.声表面波无线标签系统接收机的设计[J].传感技术学报,2006,19(3):839-842. 被引量:6
  • 3王玉林,曹金荣,前锋,朱建华,王保卫,王祥邦,陈培.声表面波射频识别无源电子标签[J].固体电子学研究与进展,2007,27(1):109-114. 被引量:13
  • 4周恮,李庆亮,韩韬,吉小军,施文康.基于频率步进原理的声表面波射频标签的辨识[J].压电与声光,2007,29(2):132-134. 被引量:3
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