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Spectral responsivity (SR) measurements are a powerful technique to measure the opto-electronic properties of photovoltaic devices like solar cells or PV modules. Although the SR determination of solar cells is a common and established technique for many years, much more effort must be taken to determine the SR of PV modules due to their size. Significantly larger and more complex solar simulator must be used, which led to a variety of different measurement techniques, each with its own disadvantages. In this work we present SR and linearity measurements performed with an LED-based solar simulator, which is capable of measuring the SR of a whole PV module within a reasonable amount of time. The principal solar simulator characteristics with its advantages and challenges are presented, including the properties of the emitted spectrum and the homogeneity of the resulting light field. The evaluation of our method, which is performed at conditions close to standard test conditions (STC) and bears characteristics of a differential spectral responsivity (DSR), is presented and demonstrated on different silicon-based and thin film PV modules, respectively. With the ability to tune the spectral irradiance gradually while maintaining an AM1.5g-like spectrum, linearity measurements of the short-circuit current of PV modules have been performed and are presented as well.
This project (PV-Enerate) has received funding from the EMPIR program co-financed by the Participating States and from the European Union's Horizon 2020 research and innovation program.
PV Module Design, Manufacture, Performance and Reliability, Spectral Response, LED, Photovoltaic Modules and BoS Components, PV Module, DSR, Solar Simulator
PV Module Design, Manufacture, Performance and Reliability, Spectral Response, LED, Photovoltaic Modules and BoS Components, PV Module, DSR, Solar Simulator
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