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A transmission turbidity measurement system with wide dynamic range based on single photon detection technology

机译:基于单光子检测技术的宽动态范围透射率浊度测量系统

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A turbidity measurement system based on single photon detection technology has been developed to measure the turbidity of high turbidity water in industrial wastewater. The transmitted light measurement based on the Beer-Lambert principle is used to expand the measurement range. The avalanche photodiode (APD) based highly sensitive single photon detection technology is used to obtain the total intensity of transmitted light and quantize it to the corresponding photon number, which can improve the sensitivity and response speed of the proposed system. In order to maximize the turbidity measurement range and improve accuracy, different incident optical powers are used for the measurement of low turbidity and high turbidity respectively. It has been experimentally verified that the turbidity in the range of 100 NTU to 4000 NTU can be effectively measured when the incident optical power is 10 mw. When the low turbidity is measured, the incident light power should be set as low as 0.3mw. which is suitable for the turbidity measure between 10NTU to 100NTU.The proposed turbidity measurement system has a strong applicability and can be applied to industrial water turbidity measurement.
机译:开发了一种基于单光子检测技术的浊度测量系统,用于测量工业废水中高浊度水的浊度。基于比尔-朗伯原理的透射光测量用于扩展测量范围。基于雪崩光电二极管(APD)的高灵敏度单光子检测技术可用于获取透射光的总强度并将其量化为相应的光子数,从而可以提高所提出系统的灵敏度和响应速度。为了最大化浊度测量范围并提高精度,分别使用不同的入射光焦度来测量低浊度和高浊度。实验证明,当入射光功率为10 mw时,可以有效地测量100 NTU至4000 NTU范围内的浊度。测量低浊度时,入射光功率应设置为低至0.3mw。所提出的浊度测量系统具有很强的适用性,可用于工业水浊度的测量。

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