Measuring DNI with a New Radiometer Based on an Optical Fiber and Photodiode

Alejandro Carballar, Roberto Rodríguez-Garrido, Manuel Jerez, Jonathan Vera, Joaquín Granado
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Abstract

A new cost-effective radiometer has been designed, built, and tested to measure direct normal solar irradiance (DNI). The proposed instrument for solar irradiance measurement is based on an optical fiber as the light beam collector, a semiconductor photodiode to measure the optical power, and a calibration algorithm to convert the optical power into solar irradiance. The proposed radiometer offers the advantage of separating the measurement point, where the optical fiber collects the solar irradiation, from the place where the optical power is measured. A calibration factor is mandatory because the semiconductor photodiode is only spectrally responsive to a limited part of the spectral irradiance. Experimental tests have been conducted under different conditions to evaluate the performance of the proposed device. The measurements confirm that the proposed instrument performs similarly to the expensive high-accuracy pyrheliometer used as a reference.
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利用基于光纤和光电二极管的新型辐射计测量 DNI
我们设计、制造并测试了一种新型经济高效的辐照度计,用于测量太阳直接正常辐照度(DNI)。拟议的太阳辐照度测量仪器以光纤作为光束收集器,以半导体光电二极管测量光功率,并采用校准算法将光功率转换为太阳辐照度。所提议的辐照度计具有将光纤收集太阳辐照的测量点与测量光功率的地点分开的优点。由于半导体光电二极管只能对光谱辐照度的有限部分做出光谱响应,因此必须使用校准因子。我们在不同条件下进行了实验测试,以评估拟议设备的性能。测量结果证实,该仪器的性能与用作参考的昂贵的高精度回旋光度计类似。
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