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A device to improve the SNR of the measurement of the positional floating reference point

机译:一种提高位置浮动参考点测量信噪比的装置

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Previous studies have preliminarily validated the floating reference method and shown that it has the potential to improve the accuracy of non-invasive blood glucose sensing by Near-Infrared Spectroscopy. In order to make this method practical, it is necessary to precisely verify and measure the existence and variation features of the positional floating reference point. In this talk, a device which can precisely verify and measure the positional floating reference point is built. Since the light intensity of diffuse reflectance from the tested sample is very weak, a multipath detecting fibers system was built to improve signal-to-noise ratio. In this system, the fibers encircle the light source fiber which is regarded as the reference center of detecting fibers while they are moving. In addition, the position of each fiber is accurately controlled by manual translation stage to keep all detecting fibers always in the same radius around light source fiber. This ensures that received signal is coming from the same radial distance of light source. The variation of signal-to-noise ratio along with the different radial distance was investigated based on experiments. Results show that the application of this device could improve signal-to-noise ratio, and provide a new experimental method for the further study of positional floating reference point.
机译:先前的研究已初步验证了浮动参考方法,并表明它有可能提高近红外光谱技术对非侵入性血糖感应的准确性。为了使该方法可行,有必要精确地验证和测量位置浮动参考点的存在和变化特征。在本演讲中,将构建一种可以精确验证和测量位置浮动参考点的设备。由于来自测试样品的漫反射光强度很弱,因此建立了多径检测光纤系统以提高信噪比。在该系统中,光纤环绕着光源光纤,而光源光纤在移动时被视为检测光纤的参考中心。此外,每根光纤的位置都通过手动平移台精确控制,以使所有检测光纤始终围绕光源光纤保持在相同半径内。这样可以确保接收到的信号来自相同的光源径向距离。基于实验研究了信噪比随径向距离的变化。结果表明,该装置的应用可以提高信噪比,为进一步研究位置浮动参考点提供了一种新的实验方法。

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