Thin film photovoltaic module characterisation based in indoor and outdoor methods

S. May, Lawrence Pratt, P. Bokoro
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Abstract

Photovoltaic modules are normally tested under standard test conditions defined by the International Electrotechnical Commission, but these conditions are different from typical field condition. The standard test conditions for PV modules is specified as 1000 W/m2 irradiance and 25°C cell temperature and reference spectral American Society for Testing and Materials (ASTM) G173. The light source may be natural or simulated, but it must match the reference standard as described in IEC 60904–3. The effect of spectral variations on the 1-V measurements can may have a big impact on the accuracy of the performance measurements. This effect was quantified during in this the study at the Indoor and Outdoor PV testing facility in Council for Scientific and Industrial research, Energy Initiative Pretoria campus. Results show different spectral mismatch values were obtained when two different spectral reference cells were used on the indoor measurements of modules under test. The obtained spectral mismatch values were affected by the absence of true spectral data of modules under test. The irradiance corrected Isc outdoor measurement values were higher than measured uncorrected Isc measurements due to the first order impact from the measured irradiance in the plane of array. The spectral mismatch between the reference device and the PV module results in an additional error for thin film modules.
基于室内和室外方法的薄膜光伏组件表征
光伏组件通常在国际电工委员会规定的标准测试条件下进行测试,但这些条件与典型的现场条件不同。光伏组件的标准测试条件规定为1000w /m2辐照度和25°C电池温度和参考光谱美国材料试验协会(ASTM) G173。光源可以是自然的,也可以是模拟的,但必须符合IEC 60904-3中描述的参考标准。光谱变化对1-V测量的影响可能会对性能测量的准确性产生很大影响。在这项研究中,这种影响在比勒陀利亚能源倡议校园科学和工业研究委员会的室内和室外光伏测试设施中被量化。结果表明,采用两种不同的光谱参考单元对待测模块进行室内测量时,得到的光谱失配值不同。得到的光谱失配值受到被测模块真实光谱数据缺失的影响。由于阵列平面辐照度的一阶影响,校正后的Isc室外测量值高于未校正的Isc测量值。参考器件和光伏组件之间的光谱不匹配导致薄膜组件的额外误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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