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Non-contact active microwave sensor for glucose concentration measurement

机译:非接触式有源微波传感器,用于葡萄糖浓度测量

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A non-contract microwave sensor with a common emitter amplifier circuit for glucose concentration sensing is developed and investigated in this article. The geometries and materials of the designed sensor are optimized and analyzed by the full-wave electromagnetic simulation. The microwave prototype was created using a printed circuit board based on dry film techniques. The microwave sensor was connected to a vector network analyzer (VNA) and the electromagnetic interaction between the samples and sensor was analyzed. The proposed sensor was tested for its electromagnetic response to glucose at various concentrations ranging from 0 to 16 % (W/V) with steps of 4 % (W/V) in the frequency range from 2.0 to 4.0 GHz through the measurement of the transmission coefficient (S_(21)) and quality factors (Q-factor) based on non-contact detection. The experimental results confirmed that the magnitude of S_(21) and Q-factor were changed when the concentration of glucose was changed. The magnitude of S_(21) and Q-factor were reduced when the glucose concentration is increased. Based on the results of the study, the proposed microwave sensor will be further developed to measure the concentration of soluble glucose and can be used as a sensor for chemical solution measurement and biometrics without damaging the structure of the substance.
机译:在本文中开发并研究了具有用于葡萄糖浓度感测的公共发射极放大器电路的非合同微波传感器。设计传感器的几何和材料通过全波电磁仿真进行了优化和分析。使用基于干膜技术的印刷电路板创建微波原型。微波传感器连接到矢量网络分析仪(VNA),分析样品和传感器之间的电磁相互作用。该提出的传感器对其电磁响应的电磁响应,其各种浓度范围为0至16%(w / v),在频率范围内的4%(w / v)的步骤通过测量传输的测量值系数(S_(21))和基于非接触检测的质量因子(Q系数)。实验结果证实,当葡萄糖浓度改变时,改变S_(21)和Q系列的大小。当葡萄糖浓度增加时,S_(21)和Q因子的幅度降低。基于该研究的结果,将进一步开发所提出的微波传感器以测量可溶性葡萄糖的浓度,并且可以用作化学溶液测量和生物蚀刻物的传感器,而不会损坏物质的结构。

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