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Techno-Economic Optimization of the Sizing of Large-Scale Linear Photovoltaic Systems

机译:大型线性光伏系统尺寸的技术经济优化

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Basic Energy generation using solar photovoltaic requires large area. As cost of the land is growing day by day, there is a strong requirement to use the available land as efficiently as possible. The objective of this paper is to propose a new solution to install high-power photovoltaic (PV) systems in order to take advantage of linear surfaces, extending from hundreds of meters to tens, or even hundreds of kilometers, and only a few meters or few tens of meters in width or height such as cycle paths, motorway edges, railways, river dikes, etc. This system is called large-scale linear PV system. The possibilities and opportunities of these new kinds of large-scale PV plants are infinite.The work of this paper consists of defining and optimizing the electrical architecture of these large-scale innovative linear photovoltaic systems. We first presented a simplified modeling tool to meet both the precision and the speed criteria for optimization studies. Then, the technical and economic optimization of large linear PV systems was subsequently studied by optimizing the LCOE of different possible electrical architectures of this type of PV system.
机译:使用太阳能光伏的基本能量产生大面积。由于土地的成本日益增长,因此有强有力的要求尽可能有效地使用可用的土地。本文的目的是提出一种新的解决方案来安装高功率光伏(PV)系统,以利用线性表面,从数百米到数十,甚至数百公里延伸,甚至几米或宽度或高度等几十米,如循环路径,高速公路边缘,铁路,河流堤等。该系统称为大型线性光伏系统。这些新型大型光伏工厂的可能性和机会是无限的。本文的工作包括定义和优化这些大型创新线性光伏系统的电气架构。我们首先介绍了一种简化的建模工具,以满足优化研究的精度和速度标准。然后,随后通过优化这种PV系统的不同可能电气架构的LCOE来研究大线性PV系统的技术和经济优化。

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