扩频编码低功耗RFID标签基带处理器的VLSI设计

Zhu Qiu-ling, Zhang Chun, Wang Xiaohui, W. Ziqiang, Li Fule, W. Zhihua
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引用次数: 0

摘要

由于后向散射链路的信号能量较弱,传统的RFID通信容易受到环境噪声、干扰和拦截的影响。为了解决这一问题,本文提出了一种采用扩频技术增强的新型无源超高频RFID标签基带处理器。此外,还提出了降低标签功耗的节能策略。仿真结果表明,扩频方法大大降低了误码率,提高了系统的可靠性和安全性。最后,采用0.18um 1P6M CMOS技术,设计并制作了一个完整的RFID标签,该标签具有所提出的基带处理器。从测量结果来看,在最低电压为1.04V时,基带处理器的总功耗约为8.8uW。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
VLSI design of spread spectrum encoding low power RFID tag baseband processor
Due to the weak signal energy of the backscatter link, traditional RFID communication is easily affected by noises, interferences, and interceptions from the environment. To solve the problem, a novel passive UHF RFID tag baseband processor enhanced with spread spectrum technique is presented in this paper. In addition, power-saving strategies are proposed to reduce the power consumption of the tag. Simulated results show that spread spectrum approach largely reduces the Bit Error Rate and improves system's reliability and security. Finally, a complete RFID tag with the proposed baseband processor was designed and fabricated using 0.18um 1P6M CMOS technology. From the measurement result, the overall power consumption of the baseband processor is about 8.8uW at the minimum voltage of 1.04V.
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