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MATHEMATICAL ANALYSIS OF MAXIMUM POWER GENERATED BY PHOTOVOLTAIC SYSTEMS AND FITTING CURVES FOR STANDARD TEST CONDITIONS

机译:光伏系统产生的最大功率的数学分析和标准测试条件的拟合曲线

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摘要

The rural electrification is characterized by geographical dispersion of the population, low consumption, high investment by consumers and high cost. Moreover, solar radiation constitutes an inexhaustible source of energy and in its conversion into electricity photovoltaic panels are used. In this study, equations were adjusted to field conditions presented by the manufacturer for current and power of small photovoltaic systems. The mathematical analysis was performed on the photovoltaic rural system I- 100 from ISOFOTON, with power 300 Wp, located at the Experimental Farm Lageado of FCA/UNESP. For the development of such equations, the circuitry of photovoltaic cells has been studied to apply iterative numerical methods for the determination of electrical parameters and possible errors in the appropriate equations in the literature to reality. Therefore, a simulation of a photovoltaic panel was proposed through mathematical equations that were adjusted according to the data of local radiation. The results have presented equations that provide real answers to the user and may assist in the design of these systems, once calculated that the maximum power limit ensures a supply of energy generated. This real sizing helps establishing the possible applications of solar energy to the rural producer and informing the real possibilities of generating electricity from the sun.
机译:农村电气化的特点是人口分布分散,消费低,消费者投资高,成本高。此外,太阳辐射构成了一种取之不尽的用之不竭的能源,并且在其转换成电能的过程中使用了光伏面板。在这项研究中,将方程式调整为制造商针对小型光伏系统的电流和功率提出的现场条件。在位于FCA / UNESP的Lageado实验农场的ISOFOTON的光伏农村系统I-100(功率为300 Wp)上进行了数学分析。为了发展这样的方程式,已经研究了光伏电池的电路,以应用迭代数值方法来确定电学参数和文献中适当方程式中可能的误差。因此,通过根据局部辐射数据调整的数学方程,提出了光伏面板的仿真。结果表明,方程式可以为用户提供真正的答案,并且一旦计算出最大功率限制可确保所产生的能量供应,便可以帮助设计这些系统。这种实际规模有助于建立将太阳能应用于农村生产者的可能性,并告知从太阳能发电的实际可能性。

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