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A Reusable Battery-Free RFID Temperature Sensor

机译:可重复使用的无电池RFID温度传感器

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A new passive radio frequency identification (RFID) temperature sensor is presented for monitoring the temperature of the surrounding environment of perishable goods, such as foods and medicines, in the cold supply chain. Specifically, this sensor self-tunes between 902 and 928 MHz, operating in the RFID UHF band, as the temperature rises or falls beyond a certain threshold. The novelty of this passive sensor is its ability to operate through multiple high-/low-temperature cycles. The design consists of a planar dipole antenna with a customized integrated T-match network (ITMN) that is actuated above a ground plane. The actuation shifts the operating frequency and is controlled by liquid crystal elastomers (LCEs), which are programmable and reversible temperature-dependent polymers. As a result, our design can be reconfigured to operate at various temperature ranges for which the LCE is designed to operate. The analysis is performed to examine the performance of the proposed sensor near practical items and when it is in close-proximity to an additional sensor with varying orientation. Finally, the sensor's performance was validated through full-wave simulations using ANSYS HFSS and measurements. Both the simulation and measurements agreed well with theory.
机译:提出了一种新的无源射频识别(RFID)温度传感器,用于监控冷供应链中易腐物品(例如食品和药品)的周围环境温度。具体来说,当温度上升或下降超过特定阈值时,此传感器在RFID UHF频段内工作,在902 MHz至928 MHz之间自调谐。这种无源传感器的新颖之处在于它可以通过多个高温/低温循环进行操作。该设计包括一个平面偶极子天线,该天线具有一个定制的集成T匹配网络(ITMN),该网络在接地平面上方驱动。致动改变了工作频率,并受液晶弹性体(LCE)的控制,液晶弹性体是可编程且可逆的温度依赖性聚合物。因此,我们的设计可以重新配置为在LCE设计运行的各种温度范围内运行。进行分析以检查拟议传感器在实际项目附近的性能以及何时接近具有变化方向的其他传感器。最后,通过使用ANSYS HFSS和测量的全波仿真,验证了传感器的性能。模拟和测量都与理论相吻合。

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