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Progress on the Self Service Kiosk for Testing the UV Protection on Sunglasses -Polynomial and Neural Network approximation for Calculating Light Transmittance

机译:用于测试太阳镜紫外线保护的自助服务亭的进展 - 用于计算透光率的Polynomial和神经网络近似

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A method using different light sources and sensors have already been used to approximate weighting functions to calculate light transmittance in sunglasses. Although it made possible a low cost equipment that inform the user about its sunglasses, each transmittance test is still dependent of its components. We tested two methods, using polynomial approximation and artificial neural network, that would open the possibility for the use of a fixed light source and sensor for all light transmittance tests from the standard. Spectrophotometry, visible transmittance and traffic light transmittance was calculated in 45 lenses of sunglasses, used as samples for testing the methodologies. The tests included a white LED, a RGB sensor, and electronic for control and signal acquisition. Bland - Altman analysis tool was used to calculate the agreement between the method and the transmittances calculated in the spectrophotometer. Both methods, had an approximation within the deviation limit required by NBR15111. The system with the polynomial regression showed lower deviations than artificial neural networks. A larger number of samples can improve the methods in order to obtain an optimal calibration that includes all sunglasses. No meter in the market can calculate accurately all light transmittances measurements required for the sunglasses. The methodology was applied only for the visible light, while UV and infrared spectrum remains to be tested. The methodology tested presented a way for simple low-cost equipment for all light transmittance tests in sunglasses.
机译:使用不同光源和传感器的方法已经用于近似加权函数来计算太阳镜中的透光率。虽然它使得一个低成本的设备可以向用户通知用户太阳镜,但每个透射率测试仍然依赖于其组件。我们测试了两种方法,使用多项式近似和人工神经网络,这将打开使用固定光源和传感器的可能性,用于所有透光率测试。分光光度法,可见光透射率和交通透光率在45个太阳镜中计算,用作用于测试方法的样品。该测试包括白色LED,RGB传感器和电子用于控制和信号采集。 Bland - Altman分析工具用于计算在分光光度计中计算的方法和透射率之间的协议。两种方法在NBR15111所需的偏差限度内具有近似。具有多项式回归的系统显示比人工神经网络更低的偏差。更大量的样品可以改善方法,以便获得包括所有太阳镜的最佳校准。市场上没有仪表可以精确计算太阳镜所需的所有灯光透射率。该方法仅适用于可见光,而UV和红外光谱仍有待测试。该方法测试了一种用于太阳镜中所有透光测试的简单低成本设备的方法。

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