首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy >Simulation of a dual-axis solar tracker for improving the performance of a photovoltaic panel
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Simulation of a dual-axis solar tracker for improving the performance of a photovoltaic panel

机译:模拟双轴太阳能跟踪器以改善光伏面板的性能

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This article presents the virtual prototype of the tracking system used for improving the energetic efficiency of a photovoltaic panel. From the point of view of the efficiency and safety, a polar dual-axis system has been designed. Both motions (daily and seasonal) are driven by rotary actuators, which are coupled with worm gears for blocking the system in the stationary positions. The tracking system is approached in mechatronic concept, by integrating the mechanical structure of the solar tracker and the electronic control system at the virtual prototype level. The tracking strategy aims at reducing the angular field of the daily motion and the number of actuating operations, without significantly affecting the incoming solar energy. At the same time, an algorithm for determining the optimal actuating time for the step-by-step tracking is developed. For performing the energy balance, the incident solar radiation is obtained using a method based on the direct radiation and the angle of incidence, while the energy consumption for accomplishing the tracking is determined by simulating the dynamic behaviour of the solar tracker. Finally, the validation of the simulation results is performed by comparing the virtual prototype analysis with the data achieved by experimental measurements.
机译:本文介绍了用于提高光伏面板能量效率的跟踪系统的虚拟原型。从效率和安全性的角度出发,已经设计了极地双轴系统。两种运动(每日和季节性)均由旋转执行器驱动,旋转执行器与蜗轮相连,用于将系统锁定在固定位置。通过在虚拟原型级别集成太阳能跟踪器的机械结构和电子控制系统,在机电一体化概念中采用了跟踪系统。跟踪策略旨在减少日常运动的角场和执行操作的次数,而不会显着影响入射的太阳能。同时,开发了一种用于确定逐步跟踪的最佳启动时间的算法。为了进行能量平衡,使用基于直接辐射和入射角的方法获得入射太阳辐射,而通过模拟太阳能跟踪器的动态行为来确定用于完成跟踪的能量消耗。最后,通过将虚拟原型分析与通过实验测量获得的数据进行比较,可以对仿真结果进行验证。

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