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White light emitting diode as potential replacement of tungsten-halogen lamp for visible spectroscopy system: a case study in the measurement of mango qualities

机译:白光发光二极管作为钨 - 卤素灯的潜在替代,可见光谱系统:以芒果素质测量为例

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摘要

Non-destructive technique based on visible (VIS) spectroscopy using light emitting diode (LED) as lighting was used for evaluation of the internal quality of mango fruit. The objective of this study was to investigate feasibility of white LED as lighting in spectroscopic instrumentation to predict the acidity and soluble solids content of intact Sala Mango. The reflectance spectra of the mango samples were obtained and measured in the visible range (400-700 nm) using VIS spectroscopy illuminated under different white LEDs and tungsten-halogen lamp (pro lamp). Regression models were developed by multiple linear regression to establish the relationship between spectra and internal quality. Direct calibration transfer procedure was then applied between master and slave lighting to check on the acidity prediction results after transfer. Determination of mango acidity under white LED lighting was successfully performed through VIS spectroscopy using multiple linear regression but otherwise for soluble solids content. Satisfactory results were obtained for calibration transfer between LEDs with different correlated colour temperature indicated this technique was successfully used in spectroscopy measurement between two similar light sources in prediction of internal quality of mango.
机译:使用发光二极管(LED)的可见光(VIS)光谱的非破坏性技术用作照明用于评估芒果果实的内部质量。本研究的目的是研究白色LED作为光谱仪器照明的可行性,以预测完整萨拉芒果的酸度和可溶性固体含量。使用在不同的白色LED和钨 - 卤素灯(Pro Lamm)下照射的Vis光谱,获得芒果样品的反射光谱并在可见范围(400-700nm)中测量。回归模型是由多元线性回归开发的,以建立光谱和内部质量之间的关系。然后在掌握和从照明之间施加直接校准转移过程以在转移后检查酸度预测结果。通过使用多元线性回归成功通过Vis光谱法测定白色LED照明下的芒果酸度,但另外用于可溶性固体含量。获得令人满意的结果,用于在具有不同相关色温的LED之间的校准转移所示,该技术在预测芒果内部质量的两个类似光源之间的光谱测量中成功地使用。

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