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Noise Squeezing Controlled Parametric Bifurcation Tracking of MIP-Coated Microbeam MEMS Sensor for TNT Explosive Gas Sensing

机译:用于TNT爆炸性气体传感的MIP涂层微束MEMS传感器的噪声压缩控制参数分叉跟踪

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This paper reports real-time explosive gas sensing (DNT) in atmospheric pressure utilizing the noise squeezing effect that occurs before a bifurcation event. A noise-squeezing controller based on the statistics of phase noise is implemented using high-speed LabVIEW field programmable gated array. A high frequency TNT-molecularly imprinted fixed–fixed microbeam sensor utilizes this nontraditional sensing strategy and performs DNT sensing at various concentrations. Experiments are conducted using both noise-based and sweep-based bifurcation tracking for a direct comparison. Results demonstrate noise-based bifurcation tracking is not only capable of performing reliable frequency tracking, but also show the method is superior to the bifurcation sweep-based tracking. Over three orders of magnitude improvement in acquisition rate is achieved, and as a result, confidence and precision on bifurcation frequency estimation is significantly improved over the bifurcation sweep tracking method, enabling DNT sensing at concentrations much below sub-ppb (parts-per-billion) level. $hfill[2013{hbox{-}}0339]$
机译:本文报告了利用分叉事件之前发生的噪声压缩效应在大气压下进行实时爆炸性气体传感(DNT)。利用高速LabVIEW现场可编程门控阵列实现了基于相位噪声统计的噪声压缩控制器。高频TNT分子印迹固定固定微束传感器利用这种非传统的传感策略,并在各种浓度下执行DNT传感。为了进行直接比较,使用基于噪声和基于扫描的分叉跟踪进行了实验。结果表明,基于噪声的分叉跟踪不仅能够执行可靠的频率跟踪,而且还表明该方法优于基于分叉扫描的跟踪。采集速率提高了三个数量级以上,因此,与分叉扫描跟踪方法相比,分叉频率估计的置信度和精度得到了显着提高,从而使DNT感应的浓度远低于ppb(十亿分之一) )级别。 $ hfill [2013 {hbox {-}} 0339] $

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