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Energy production estimation of a photovoltaic system with temperature-dependent coefficients

机译:具有温度相关系数的光伏系统的能量生产估算

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This work addresses the problem of the estimation of the next-day electrical energy production of a photovoltaic system, using temperature and global radiation measurements. Based on the well-known single diode, five-parameters PV cell model, the paper proposes a different representation of the temperature-dependent parameters, which are optimized based on experimental field data. Suitable sliding window and forgetting factor techniques are adopted, as well as a Taylor expansion of produced currents with respect to irradiance and temperature. The analysis shows that all these modeling enhancements can significantly improve the accuracy of the energy estimation process.
机译:这项工作解决了使用温度和整体辐射测量来估算光伏系统第二天电能生产的问题。基于众所周知的单二极管五参数光伏电池模型,本文提出了与温度相关的参数的不同表示形式,并根据实验现场数据对其进行了优化。采用适当的滑动窗口和遗忘因子技术,以及所产生的电流相对于辐照度和温度的泰勒展开。分析表明,所有这些建模增强功能都可以显着提高能量估算过程的准确性。

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