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利用可见光谱内的单个RGB发光二极管进行透光率校准。

Performing Calibration of Transmittance by Single RGB-LED within the Visible Spectrum.

作者信息

Carreres-Prieto Daniel, García Juan T, Cerdán-Cartagena Fernando, Suardiaz-Muro Juan

机构信息

Department of Mining and Civil Engineering, Technical University of Cartagena, 30202 Cartagena, Spain.

Department of Information and Communications Technologies, Technical University of Cartagena, 30202 Cartagena, Spain.

出版信息

Sensors (Basel). 2020 Jun 20;20(12):3492. doi: 10.3390/s20123492.

Abstract

Spectrophotometry has proven to be an effective non-invasive technique for the characterization of the pollution load of sewer systems, enabling compliance with new environmental protection regulations. This type of equipment has costs and an energy consumption which make it difficult to place it inside a sewer network for real-time and massive monitoring. These shortcomings are mainly due to the use of incandescent lamps to generate the working spectrum as they often require the use of optical elements, such as diffraction gratings, to work. The search for viable alternatives to incandescent lamps is key to the development of portable equipment that is cheaper and with a lower consumption that can be used in different points of the sewer network. This research work achieved the following results in terms of the measured samples: First, the development a calibration procedure that enables the use of RGB-LED technology as a viable alternative to incandescent lamps, within the range of 510 to 645 nm, with high accuracy. Secondly, demonstration of a simple method to model the transmittance value of a specific wavelength without the need for optical elements, achieving a cost-effective equipment. Thirdly, it provides a simple method to obtain the transmittance based on the combination of RGB colors. Finally its viability is demonstrated for the spectral analysis of wastewater.

摘要

分光光度法已被证明是一种用于表征下水道系统污染负荷的有效非侵入性技术,有助于符合新的环境保护法规。这类设备存在成本和能耗问题,这使得将其放置在下水道网络内进行实时大规模监测变得困难。这些缺点主要归因于使用白炽灯来产生工作光谱,因为它们通常需要使用诸如衍射光栅等光学元件来工作。寻找白炽灯的可行替代方案是开发更便宜、功耗更低且可用于下水道网络不同位置的便携式设备的关键。就所测样本而言,这项研究工作取得了以下成果:第一,开发了一种校准程序,使RGB-LED技术能够在510至645纳米范围内作为白炽灯的可行替代方案,且具有高精度。第二,演示了一种无需光学元件即可对特定波长的透光率值进行建模的简单方法,从而实现了具有成本效益的设备。第三,提供了一种基于RGB颜色组合来获取透光率的简单方法。最后,证明了其在废水光谱分析方面的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f971/7349540/3afd7cf0ca87/sensors-20-03492-g001.jpg

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