利用虚拟样机平台对光伏跟踪系统的能量平衡进行研究

C. Alexandru, M. Comsit
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引用次数: 28

摘要

本文提出了一种利用机械跟踪系统来提高光伏系统能量效率的解决方案。关键的想法是最大化通过定向获得的能量,并最小化跟踪太阳路径的能量消耗。优化是通过减少面板的角旋转场,从而减少电机的运行时间,而不会显著影响入射辐射。事实上,我们正在寻找最佳的角度场,使面板以最小的能耗吸收尽可能多的太阳辐射。在并行工程的概念下,利用包含具体软件解决方案的虚拟样机平台,对极坐标跟踪系统进行了应用:CATIA -用于开发跟踪机构的几何模型,ADAMS/View -用于分析和优化跟踪系统,MATLAB/Simulink和ADAMS/Controls -用于开发控制系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The energy balance of the photovoltaic tracking systems using virtual prototyping platform
The paper presents a solution for increasing the energetic efficiency of the photovoltaic systems by using mechanical tracking systems. The key idea is to maximize the energy gained through orientation, and to minimize the energy consumption for tracking of the Sun path. The optimization is made by reducing the angular revolution field of the panel, and consequently the operating time of the motor, without significantly affecting the incident radiation. In fact, we are looking for the optimal angular field in which the panel absorbs as much as possible solar radiation with minimum energy consumption. The application is made for a polar tracking system, by using a virtual prototyping platform that contains specific software solutions, in the concurrent engineering concept, as follows: CATIA - for developing the geometric model of the tracking mechanism, ADAMS/View - for analyzing & optimizing the tracking system, and MATLAB/Simulink & ADAMS/Controls - for developing the control system.
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