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A CIRCUIT MODEL FOR PASSIVE RF AUTONOMOUS DEVICES WITH PROTOCOL CONSIDERATIONS

机译:带有协议考虑的无源射频自治设备的电路模型

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This paper focuses on a lumped circuit model for autonomous untethered wireless devices powered by remote radio frequency (RF) sources including radio frequency identification (RFID) tags. The technology presents major challenges for these passive (no on-board power) devices, including the ability to provide maximum power for data transmission and data rates under powering constraints due primarily to governmental regulations. This paper presents the electronic circuit model of a remote temperature-sensing device less than 0.5 cubic inches in volume. The RF energy is first converted to a DC voltage that is then used to power circuitry to measure temperature and transmit the reading to a remote receiver. These devices are typically deployed in large groups functioning as sensors or RFID tags that communicate with a single receiver. The typical rate at which energy can be harvested, converted, and used to power circuitry and transmitter is about 0.025% of the rate at which the power is used. Thus, careful consideration must be given to the circuit model, including parameters and communication protocols. Included in the paper are a logically derived circuit topology and the methodology by which the parameters can be determined. The protocol can then be analyzed with respect to power using the resulting circuit model.
机译:本文重点介绍了由包括射频识别(RFID)标签在内的远程射频(RF)源供电的自主式不受束缚无线设备的集总电路模型。对于这些无源(无车载电源)设备,该技术提出了重大挑战,包括在主要由于政府法规而受到供电限制的情况下,为数据传输和数据速率提供最大功率的能力。本文介绍了一种体积小于0.5立方英寸的远程温度传感设备的电子电路模型。首先将RF能量转换为DC电压,然后将其用于为电路供电以测量温度并将读数传输到远程接收器。这些设备通常以大组部署,用作与单个接收器通信的传感器或RFID标签。可以收集,转换并用于为电路和发射器供电的能量的典型速率约为功率使用速率的0.025%。因此,必须仔细考虑电路模型,包括参数和通信协议。本文包括逻辑上得出的电路拓扑和确定参数的方法。然后可以使用生成的电路模型对协议进行功耗分析。

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