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16-Sensor passive wireless SAW humidity sensor system

机译:16传感器无源无线SAW湿度传感器系统

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This paper describes the development, operating principles, and experimental performance of sixteen uniquely identifiable, wirelessly interrogable, passive surface acoustic wave (SAW) humidity sensors, and a prototype wireless transceiver capable of reading the set of sensors and interpreting individual sensor responses. The set of sensors was produced using a combination of discrete frequency coding and time diversity, and can operate simultaneously in groups of 8 or more while retaining the ability to individually identify and read each sensor. Nanostructured polyvinyl pyrrolidone/lithium chloride doped titanium dioxide sensing layers developed in collaboration with researchers from Temple University were utilized on the SAW die to produce sensors that demonstrate large, rapid, reversible quantitative responses to humidity exposure in laboratory conditions. The transceiver implemented a differential time integrating correlator based system architecture. The system operates in a manual mode for sensor selection, and utilizes a PC-based LabView user interface for data acquisition and system control. This system was shown to be capable of reading the humidity sensors wired and wirelessly over short range (up to 10 feet) under laboratory conditions. Toggling of transmit (Tx) and receive (Rx) antenna operation was required to eliminate high Tx to Rx crosstalk levels caused by continuous transmission and reception, which otherwise would prevent wireless reading of passive sensors. The wireless sensor system was successfully demonstrated at NASA Kennedy Space Center in November, 2011.
机译:本文介绍了16种独特可识别的,可无线询问的无源表面声波(SAW)湿度传感器的开发,工作原理和实验性能,以及能够读取传感器组并解释各个传感器响应的原型无线收发器。这组传感器是使用离散频率编码和时间分集的组合生产的,可以同时以8个或更多的组工作,同时保留了分别识别和读取每个传感器的能力。与天普大学的研究人员合作开发的纳米结构的聚乙烯吡咯烷酮/氯化锂掺杂的二氧化钛传感层在SAW压模上用于制造传感器,这些传感器在实验室条件下表现出对湿度暴露的大,快速,可逆的定量响应。收发器实现了基于差分时间积分相关器的系统架构。该系统以手动模式操作以选择传感器,并利用基于PC的LabView用户界面进行数据采集和系统控制。事实证明,该系统能够在实验室条件下以短距离(最多10英尺)有线和无线方式读取湿度传感器。需要切换发射(Tx)和接收(Rx)天线操作,以消除由连续发射和接收引起的高Tx到Rx串扰水平,否则将阻止无线读取无源传感器。该无线传感器系统于2011年11月在NASA肯尼迪航天中心成功演示。

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