应用线性规划的光伏系统优化

Adrián Alberto Sampieri Morán, Jorge Arturo Mendoza Sosa, Francisco Javier Gómez González
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引用次数: 0

摘要

本文展示了一种确定自主光伏系统中光伏板、电池和逆变器的最佳数量的方法,以尽可能低的总生命周期成本来满足住宅的电力需求,这是一个经济目标函数,包括初始资本成本、更换成本、系统组件的运行和维护成本。该案例研究包括位于墨西哥韦拉克鲁斯州的农村房屋的电气化。考虑到蓄电池组的充电状态必须保持在适当的水平,以保证其使用寿命,通过在MATLAB中开发线性规划模型来解决这个问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of photovoltaic systems applying linear programming
This paper shows a methodology to determine the optimal number of photovoltaic panels, batteries and inverters of an autonomous photovoltaic system to meet the electrical demand of a residence at the lowest total life cycle cost possible, an economic objective function that includes the initial costs of capital, replacement, operation and maintenance of the system components. The case study consists of the electrification of a rural house located in the State of Veracruz, Mexico. The problem was solved through the development of a linear programming model in MATLAB, considering that the state of charge of the battery bank must be kept at adequate levels to the preservation of its useful life.
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