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Design considerations and tradeoffs for passive RFID tags

机译:无源RFID标签的设计注意事项和权衡

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Radio Frequency Identification (RFID) systems are widely used in a variety of tracking, security and tagging applications. Their operation in non line-of-sight environments makes them superior over similar devices such as barcode and infrared tags. RFID systems span a wide range of applications: medical history storage, dental prosthesis tracking, oil drilling pipe and concrete stress monitoring, toll ways services, animal tracking applications, etc. Passive RFID tags generate their power from the incoming signal; therefore, they do not require a power source. Accordingly, minimizing the power consumption and the implementation area are usually the main design considerations. This paper presents a complete analysis on designing a passive RFID tag. A system design methodology is introduced including the main issues and tradeoffs between different design parameters. The uplink modulation techniques used (ASK, PSK, FSK, and PWM) are illustrated showing how to choose the appropriate signaling scheme for a specific data rate, a certain distance of operation and a limited power consumption budget. An antenna system (transmitter and receiver) is proposed providing the maximum distance of operation with the transmitted power stated by FCC regulations. The backscatter modulation scheme used in the downlink is shown whether to be ASK-BM or PSK-BM and the differences between them are discussed. The key building blocks such as the charge pump, voltage reference, and the regulator used to generate the DC supply voltage from the incoming RF signal are discussed along with their design tradeoffs. A complete architecture for a passive RFID tag is provided as an example to illustrate the proposed RFID tag design methodology.
机译:射频识别(RFID)系统广泛用于各种跟踪,安全和标记应用程序。它们在非视距环境中的运行使它们优于条形码和红外标签等类似设备。 RFID系统的应用范围很广:病历存储,假牙跟踪,石油钻杆和混凝土应力监测,收费服务,动物跟踪应用等。无源RFID标签从输入信号中产生能量。因此,它们不需要电源。因此,最小化功耗和实现面积通常是主要的设计考虑因素。本文对无源RFID标签的设计进行了完整的分析。介绍了一种系统设计方法,包括主要问题和不同设计参数之间的权衡。所用的上行链路调制技术(ASK,PSK,FSK和PWM)说明了如何为特定的数据速率,一定的工作距离和有限的功耗预算选择合适的信令方案。提出了一种天线系统(发射器和接收器),以FCC法​​规规定的发射功率提供最大的工作距离。示出了下行链路中使用的反向散射调制方案是ASK-BM还是PSK-BM,并讨论了它们之间的区别。讨论了关键构建模块,例如电荷泵,参考电压和用于从输入RF信号生成DC电源电压的调节器,以及它们的设计折衷。以无源RFID标签的完整架构为例,以说明所提出的RFID标签设计方法。

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