Concept of a methodical process for the design of concentrating photovoltaic systems according to the context of use

David González-Correa, G. Osorio-Gómez, R. Mejía–Gutiérrez
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引用次数: 3

Abstract

Concentrating Photo Voltaic (CPV) systems maximize energy harvested from the sun with multi-junction solar cells of less area, reducing related implementation costs and reaching energy production thresholds up to 38,9 %. Nowadays, CPV systems are generally implemented in solar energy farms in a permanent location, however, these systems could be used in other dynamic contexts, such as vehicles or portable devices. In this way, mechanical and geometrical parameters related to manipulation, transportation and installation should be carefully considered at the design stage. Besides, each condition of use presents different variables affecting these parameters. In all, there is not an established architecture for these systems, opening up the possibility of radically changing their use, geometry and components. Therefore, a concept of a methodical process for designing of CPV systems is proposed in order to predict their behavior in terms of implementation and energy production. This might allow the development of robust concepts that can be adapted to different context of use as required, providing an itinerant character and thus extending the field of implementation of these systems beyond a static use. The relevant variables for the use of CPV systems are determined through experimentation considering the implementation of Fresnel lenses as light concentrators. This allows generating a structured design guide composed of different methods of measurement, selection and development. The methodical process is based on a perspective of functional modules considering needs, technical aspects and particular usage conditions of each design and it would provide appropriate guidelines in each circumstance.
根据使用环境设计聚光光伏系统的系统过程概念
聚光光伏(CPV)系统最大限度地利用面积较小的多结太阳能电池从太阳获取能量,降低了相关的实施成本,并达到了高达38.9%的能源生产阈值。如今,CPV系统通常在永久性位置的太阳能农场中实施,然而,这些系统可以用于其他动态环境,例如车辆或便携式设备。因此,在设计阶段应仔细考虑与操作、运输和安装有关的机械和几何参数。此外,每种使用条件都有不同的变量影响这些参数。总的来说,这些系统没有一个既定的架构,这就为从根本上改变它们的用途、几何形状和组件提供了可能性。因此,为了预测CPV系统在实施和能源生产方面的行为,提出了设计CPV系统的系统过程的概念。这可能允许开发健壮的概念,可以根据需要适应不同的使用环境,提供流动特性,从而将这些系统的实施领域扩展到静态使用之外。使用CPV系统的相关变量是通过实验确定的,考虑到菲涅耳透镜作为光集中器的实现。这允许生成由不同的测量、选择和开发方法组成的结构化设计指南。系统的过程基于功能模块的观点,考虑到每个设计的需求、技术方面和特殊使用条件,并将在每种情况下提供适当的指导方针。
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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