Power-Energy Optimization of Solar Photovoltaic Device Modeling

Sabuj Sarkar, Mostafizur Rahman
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引用次数: 1

Abstract

Most recent technological advancement of solar photovoltaic (PV) devices have dramatically increased the significant part of renewable energy worldwide through the generation of electric energy. The present paper proposes a novel model for achieving optimum power-energy (PE) from simulation and graphical representation of solar photovoltaic device (SPV) models. First power and current versus voltage performance is characterized. Later PV device output current versus output voltage characteristic is explained for initial as well as optimal parameter criterions. Finally, optimum power-energy is obtained from graphical representation of output power versus output voltage characteristic for proposed model with varying irradiance and temperature conditions. From the simulated and graphical performance analysis, it clearly exhibits the significant enhancement of power-energy and optimal PE is achieved from the novel SPV device model.
太阳能光伏器件建模的功率-能量优化
太阳能光伏(PV)装置的最新技术进步,通过发电极大地增加了世界范围内可再生能源的重要组成部分。本文通过对太阳能光伏器件(SPV)模型的仿真和图形表示,提出了一种实现最优功率-能量(PE)的新模型。首先对功率和电流对电压性能进行了表征。随后对PV器件的输出电流与输出电压特性进行了初始和最优参数判据的解释。最后,在不同辐照度和温度条件下,通过模型输出功率与输出电压特性的图形化表示得到了模型的最优功率-能量。从仿真和图形性能分析中可以清楚地看出,该新型SPV器件模型的功率-能量显著提高,并实现了最优的PE。
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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