Hamadani Behrang H, Campanelli Mark B
National Institute of Standards and Technology (NIST), Gaithersburg, MD 20899 USA.
Intelligent Measurement Systems LLC, Bozeman, MT 59715.
IEEE J Photovolt. 2020;10(4). doi: 10.1109/jphotov.2020.2996241.
Due to the rapidly growing interest in energy harvesting from indoor ambient lighting for the powering of internet-of-things devices, accurate methods for measurements of the current vs voltage characteristics of light-harvesting solar photovoltaic devices must be established and disseminated. A key requirement when conducting such characterizations is to create and measure the irradiance from the test light, whose spectral output approximates the profile of some agreed-upon standard reference. The current methods for measuring the irradiance from indoor ambient lighting (e.g., illuminance meters) can yield unacceptable discrepancies in measurements from one lab to another. Here, we take the first steps in establishing a more accurate alternative: using a calibrated reference solar cell to measure the total irradiance of the test light when establishing the test light level, and then, once set, while collecting the characterization data for the test specimen. The method involves establishing multiple reference indoor lighting spectra that meet desired illuminance requirements, while also offering precise spectral irradiance profiles. Regardless of whether these proposed spectra are formally adopted, the test method is available and useful. The proposed approach facilitates inter-lab measurements, allows for a way to calculate an accurate power conversion efficiency, and establishes a dialogue between National Metrology Institutes to begin the process of drafting standards for solar cell testing under conditions that are significantly different than the well-established standard reporting condition used for rating solar modules that are deployed outdoors.
由于人们对利用室内环境光为物联网设备供电进行能量收集的兴趣迅速增长,必须建立并推广用于测量光收集太阳能光伏设备电流与电压特性的准确方法。进行此类特性描述时的一个关键要求是创建并测量测试光的辐照度,其光谱输出要近似于某种商定的标准参考的轮廓。目前用于测量室内环境光辐照度的方法(例如照度计)在不同实验室之间的测量结果可能会产生不可接受的差异。在此,我们迈出了建立更准确替代方法的第一步:在确定测试光水平时,使用经过校准的参考太阳能电池来测量测试光的总辐照度,然后在设置好之后,在收集测试样品的特性数据时继续使用。该方法包括建立多个满足所需照度要求的参考室内照明光谱,同时还要提供精确的光谱辐照度轮廓。无论这些提议的光谱是否被正式采用,该测试方法都是可行且有用的。所提出的方法便于实验室间的测量,提供了一种计算准确功率转换效率的方法,并在国家计量机构之间建立了对话,以开始起草在与用于评定室外部署的太阳能模块的既定标准报告条件有显著差异的条件下进行太阳能电池测试的标准的进程。