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首页> 外文期刊>IEEE Journal of Radio Frequency Identification >Experimental Validation of a New Measurement Metric for Radio-Frequency Identification-Based Shock-Sensor Systems
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Experimental Validation of a New Measurement Metric for Radio-Frequency Identification-Based Shock-Sensor Systems

机译:基于射频识别的冲击传感器系统新测量指标的实验验证

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摘要

This paper presents a radio-frequency identification (RFID)-based shock-sensor system. The impedance characteristics of tilt/vibration sensors incorporated in the RFID tag change when the electrodes and the internal conducting bolls inside the tilt/vibration sensors change between the short-circuit and open-circuit states. Thus, the antenna input impedance characteristics are also changed. Software was developed for the proposed system to measure the read-interval times between consecutive reads by the RFID reader, and to visualize the measurement metric in graphs. The validity of the proposed shock-sensor system was demonstrated experimentally using a cart and an obstacle placed on the floor. The shocks caused by the front and rear tires of the cart crossing the obstacle were clearly observed, confirming the validity of the proposed measurement metric.
机译:本文提出了一种基于射频识别(RFID)的震动传感器系统。当倾斜/振动传感器内的电极和内部导电棉铃在短路状态和开路状态之间变化时,并入RFID标签的倾斜/振动传感器的阻抗特性发生变化。因此,天线输入阻抗特性也改变。为所提出的系统开发了软件,以测量RFID读取器连续读取之间的读取间隔时间,并以图形形式显示测量指标。提出的震动传感器系统的有效性通过使用推车和放置在地板上的障碍物进行了实验验证。清楚地观察到小车的前后轮胎越过障碍物而引起的震动,证实了所提出的测量指标的有效性。

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