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A Novel Surface Acoustic Wave Sensor Array Based on Wireless Communication Network

机译:一种基于无线通信网络的新型曲面声波传感器阵列

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摘要

A novel surface acoustic wave (SAW) sensor array based on wireless communication network is prepared. The array is composed of four SAW sensors, a wireless communication network module, and a global positioning system (GPS) module. The four SAW sensors of the array are coated with triethanolamine, polyepichlorohydrin, fluoroalcoholpolysiloxane, and L-glutamic acid hydrochloride to detect hydrogen sulfide (H2S), 2-chloroethyl ethyl sulfide (CEES), dimethylmethylphosphonate (DMMP), and ammonia (NH3) at film thicknesses of 50–100 nm. The wireless communication network module consists of an acquisition unit, a wireless control unit, and a microcontroller unit. By means of Zigbee and Lora technologies, the module receives and transmits the collected data to a PC work station in real-time; moreover, the module can control the sensor array’s working mode and monitor the working status. Simultaneously, the testing location is determined by the GPS module integrated into the SAW sensor array. H2S, CEES, DMMP, and NH3 are detected in 300 m at different concentrations. Given the practical future application in environment in the future, the low, safe concentrations of 1.08, 0.59, 0.10, and 5.02 ppm for H2S, CEES, DMMP, and NH3, respectively, are detected at the lowest concentration, and the sensitivities of different sensors of the sensor array are 32.4, 14.9, 78.1 and 22.6 Hz/ppm, respectively. With the obtained fingerprints and pattern recognition technology, the detected gases can be recognized.
机译:准备了一种基于无线通信网络的新型表面声波(SAW)传感器阵列。该阵列由四个SAW传感器,无线通信网络模块和全球定位系统(GPS)模块组成。阵列的四个锯传感器涂有三乙醇胺,聚氯胺醇,氟醇醇硅氧烷和L-谷氨酸盐酸盐,以检测硫化氢(H 2 S),2-氯乙基硫醚(CEE),二甲基甲基膦酸盐(DMMP)和氨(NH3)薄膜厚度为50-100nm。无线通信网络模块包括获取单元,无线控制单元和微控制器单元。通过ZigBee和Lora技术,模块在实时接收并将收集的数据接收到PC工作站;此外,模块可以控制传感器阵列的工作模式并监控工作状态。同时,测试位置由集成到SAW传感器阵列中的GPS模块确定。在不同浓度的300μm中检测到H 2 S,CEVE,DMMP和NH3。鉴于未来环境中的实际应用,分别为H2S,CEES,DMMP和NH3的低,安全浓度为1.08,0.59,0.10和5.02ppm,以最低浓度检测,以及不同的敏感性传感器阵列的传感器分别为32.4,14.9,78.1和22.6Hz / ppm。利用所获得的指纹和模式识别技术,可以识别检测到的气体。

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