Designing a Programmable Solar Simulator for the Study of Photovoltaic Panels

C. Pomazan
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Abstract

In order to study the behavior of photovoltaic (PV) panels, controlled simulation of lighting conditions is a must. For the comparative analysis of the maximum power point tracking algorithms, these lighting conditions must be reproduced identically for each individual algorithm. This article proposes such a controlled lighting system that can be easily integrated into a more complex system for the study of PV panels. Due to size and energy consumption considerations, the solar simulator is sized for 20W photovoltaic panels, but it can be easily expanded for PV panels of higher power. The lighting control can be done manually or automatically, and the simulator operation can be independent or synchronized with other experimental measurement modules. In case of automatic operation, the simulator allows establishing and memorizing a lighting profile that can be played later individually or periodically. The simulator can generate step or ramp lighting variations that can be combined within the lighting profile for programmable time duration for each interval.
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用于光伏板研究的可编程太阳模拟器的设计
为了研究光伏板的性能,必须对光照条件进行可控仿真。对于最大功率点跟踪算法的比较分析,这些照明条件必须为每个单独的算法复制相同。本文提出了这样一个受控照明系统,它可以很容易地集成到一个更复杂的系统中,用于研究光伏电池板。由于尺寸和能耗的考虑,太阳能模拟器的尺寸为20W的光伏板,但它可以很容易地扩展到更高功率的光伏板。照明控制可手动或自动进行,模拟器操作可与其他实验测量模块独立或同步进行。在自动操作的情况下,模拟器允许建立和记忆一个照明配置文件,可以单独或定期播放以后。模拟器可以生成阶跃或坡道照明变化,可以在每个间隔的可编程时间持续时间内的照明配置文件中组合。
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