采用AES密码原语的2 μW RFID基带处理器的设计

A. Ricci, Matteo Grisanti, I. D. Munari, P. Ciampolini
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引用次数: 34

摘要

超高频(UHF)频段运行的廉价无源射频识别(RFID)标签正在促进建筑门禁控制、货物跟踪和供应链管理等多个领域的创新。RFID转发器也可以与微型传感器耦合,实现对环境和个人参数的非侵入性监测。为了确保高度敏感数据的隐私性,应该在RFID设备中嵌入加密和身份验证功能,以一种与无线设备的紧张功率预算兼容的方式。本文介绍了一种基带处理器,它符合ISO 18000-6C (EPC Class1 Gen2)协议,并集成了旨在安全数据传输的AES原语。无源射频识别设备的性能受到可用功率的限制,可用功率来自入射辐射。在系统和电路两级设计了节能策略。设计了一套适用于近阈值电压操作的标准电池。在CMOS 0.18 mum技术上进行了物理实现,芯片已经制作完成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of a 2 μW RFID baseband processor featuring an AES cryptography primitive
Cheap passive radio frequency identification (RFID) tags operating in ultra high frequency (UHF) bands are fostering innovation in several field such as building access control, goods tracking and supply chains management. RFID transponders can also be coupled to tiny sensors, enabling non invasive monitoring of environmental and personal parameters. To ensure the privacy of highly sensitive data, encryption and authentication capabilities should be embedded in RFID devices, in a fashion compatible with tight power budgets of wireless devices. In this contribution, a baseband-processor is introduced, which complies with ISO 18000-6C (EPC Class1 Gen2) protocol and integrates AES primitives aimed at secure data transmission. Performance of passive RFID devices is limited by the available power, harvested from the incoming radiation. Power-saving strategies are devised, both at the system and the circuit levels. A set of standard cells has been designed, suitable for near-threshold voltage operations. Physical implementation on CMOS 0.18 mum technology has been carried out and the chip has being fabricated.
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