Design of a solar tracker to improve the capture of solar radiation in photovoltaic panels using a closed loop control system

Chozver Gaspar, G. Quispe, Gianpierre Zapata-Ramirez, C. Raymundo-Ibañez, Luis Rivera
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引用次数: 1

Abstract

This research presents the design of a solar tracker in order to make better use of solar energy that radiates in the skies of the province of Huancayo, a comprehensive biography with key contents and concepts was reviewed to make a good design Conceptually, a structure will be designed that adapts to the design of conventional photovoltaic systems. Everything is born from the need to take advantage of an inexhaustible resource, which is photovoltaic solar energy, a study in this field is proposed proposing the problems to be solved, and objectives such as analyzing the manufacturing costs of design, See the economic, technical and operational feasibility of the solar tracker, but above all you want to calculate the energy efficiency that can be gained by designing this type of mechanism and control system and compare with similar mechanisms existing in the market. For the development of the system, the German methodology VDI 2221 was used, which starts from a list of requirements and desires that the design must meet, and a function diagram of the previous concept is also made. To determine the most optimal solution, a morphological matrix is performed where all the solution alternatives are evaluated for each function and in the end a general solution concept is obtained and from this begins the economic, technical and operational evaluation of the solution.
利用闭环控制系统设计了一种太阳能跟踪器,以提高光伏板对太阳辐射的捕获
为了更好地利用旺卡约省天空中辐射的太阳能,本研究提出了一个太阳能跟踪器的设计,对主要内容和概念进行了全面的回顾,以使设计更好。在概念上,将设计一个适应传统光伏系统设计的结构。一切都是从需要利用一种取之不尽的资源而诞生的,这就是光伏太阳能,提出了这一领域的研究,提出了要解决的问题,以及分析制造成本设计等目标,看到了太阳能跟踪器的经济、技术和运行可行性。但最重要的是,你要计算通过设计这种机制和控制系统可以获得的能源效率,并与市场上现有的类似机制进行比较。对于系统的开发,使用了德国的VDI 2221方法,该方法从设计必须满足的需求和愿望列表开始,并制作了先前概念的功能图。为了确定最优的解决方案,执行形态矩阵,其中对每个功能的所有解决方案进行评估,最后获得一般解决方案概念,并由此开始对解决方案进行经济,技术和操作评估。
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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