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Optimum Array Spacing in Grid-Connected Photovoltaic Systems considering Technical and Economic Factors

机译:考虑技术和经济因素的网格连接光伏系统中的最佳阵列间距

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摘要

The performance and economics of grid-connected photovoltaic (PV) systems are affected by the array spacing. Increasing the array spacing implies reducing the impact of shading, but at the same time, it increases the land purchase/preparation costs and the wiring costs. A number of technical and economic factors are involved when selecting an optimum array spacing. Designers of PV plants often set the row-to-row spacing based on simplified rules, losing the opportunity of improving the profitability of their projects. In this paper, a comprehensive methodology for optimizing the array spacing is proposed. It is based on annual shading energy calculations and incorporates a PV energy yield model together with an economic model focused on investment costs. The method is applied to the climatic conditions in Aguascalientes, Mexico, as a case study. A sensitivity analysis allowed the impact of the technical and economic parameters involved on the optimum interrow distance to be quantified. According to the results, the most relevant technical parameters are the module tilt (often considered by the PV designers), the ratio of plant width to plant length, and the module efficiency. The main economic parameters are the land-related costs and the costs per kWp. The comparison of this methodology to a conventional rule based on the winter solstice condition shows differences in the array spacing for the same location when the multiple technical and economic parameters are considered. Therefore, the proposed method will be useful for PV designers to improve the energetic and economic behavior of their systems.
机译:电网连接光伏(PV)系统的性能和经济性受到阵列间距的影响。增加阵列间距意味着降低阴影的影响,但同时,它会增加土地购买/准备成本和布线成本。选择最佳阵列间距时,涉及许多技术和经济因素。 PV工厂的设计人员通常根据简化的规则设置行到行间距,失去了提高项目盈利能力的机会。本文提出了一种用于优化阵列间距的综合方法。它基于年度阴影能量计算,并将PV能量产量模型与专注于投资成本的经济模式结合在一起。该方法适用于墨西哥aguascalientes的气候条件作为案例研究。敏感性分析允许对待量化的最佳相互距离涉及的技术和经济参数的影响。根据结果​​,最相关的技术参数是模块倾斜(通常由光伏设计人员考虑),植物宽度与工厂长度的比率,以及模块效率。主要经济参数是与土地有关的成本和每kWP的成本。基于冬至冬至条件的传统规则对传统规则的比较显示了当考虑多种技术和经济参数时相同位置的阵列间隔的差异。因此,所提出的方法对于PV设计人员将有用,以提高其系统的能量和经济行为。

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