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Improved Pervasive Sensing With RFID: An Ultra-Low Power Baseband Processor for UHF Tags

机译:使用RFID改进的普适感测:用于UHF标签的超低功耗基带处理器

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摘要

Recently, radio frequency identification (RFID) systems have gained popularity in manufacturing units, inventory, and logistics, as they represent an inexpensive and reliable solution for automatic identification. Moreover, RFID transponders are expected to become a key element in the ubiquitous computing scenario. Tags will likely be used to collect sensors data, enabling noninvasive environment monitoring. Low-cost passive UHF transponders are expected to play a major role in this context, due to extended read range capabilities. Within a passive tag, power harvested from the field irradiated by the reader during the communication should operate both digital control circuitry and potential sensing devices. Exploiting ultra-low power tag circuitry would provide sensing sections with higher energy, thus improving measurement performance. In this paper, the design of a novel circuit is presented, which implements the baseband processor of a UHF-RFID tag in compliance with the ISO 18000-6B protocol. Regardless of protocol selection issues, several power saving strategies are devised, both at the system and circuit levels, suitable for passive transponder implementation. Near-threshold operation has been exploited to attain ultra-low power consumption while keeping fair performance. A set of standard cells has been designed, suitable for the power-limited specific application. The proposed solution has been successfully checked by means of a physical implementation on CMOS 0.18 $ mu{hbox {m}}$ technology. Test chips have been characterized in terms of voltage and frequency operating range and power consumption figure has been extensively analyzed. Measurement results fully support the selected design approach: the baseband processor dissipates only 440 nW average power when operated at 800 kHz and 0.6 V. This extremely-low power consumption enables hi-ngh-performance ubiquitous computing.
机译:近年来,射频识别(RFID)系统在制造单位,库存和物流中得到了普及,因为它们代表了一种廉价且可靠的自动识别解决方案。此外,RFID应答器有望成为无处不在的计算场景中的关键要素。标签可能会用于收集传感器数据,从而实现无创环境监控。由于扩展的读取范围功能,低成本无源UHF应答器有望在这种情况下发挥重要作用。在无源标签内,在通信过程中从阅读器辐射的场中收集的功率应同时运行数字控制电路和电位感测设备。利用超低功耗标签电路将为传感部分提供更高的能量,从而提高测量性能。在本文中,提出了一种新颖的电路设计,该电路实现了符合ISO 18000-6B协议的UHF-RFID标签的基带处理器。无论协议选择问题如何,在系统和电路级别都设计了几种节能策略,适用于无源应答器的实现。已利用近阈值操作来实现超低功耗,同时保持合理的性能。设计了一组标准单元,适用于功率受限的特定应用。所提出的解决方案已通过在CMOS 0.18 $ mu {hbox {m}} $技术上的物理实现成功地进行了检查。测试芯片已根据电压和频率工作范围进行了表征,并且已对功耗数字进行了广泛分析。测量结果完全支持所选的设计方法:基带处理器在800 kHz和0.6 V下工作时,平均功耗仅为440 nW。这种极低的功耗实现了高性能的无处不在的计算。

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