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Software solution implemented on hardware system to manage and drive multiple bi-axial solar trackers by PC in photovoltaic solar plants

机译:在硬件系统上实施的软件解决方案,可通过PC在光伏太阳能电站中管理和驱动多个双轴太阳能跟踪器

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摘要

Solar energy is available almost everywhere but in some circumstances and locations it is necessary to optimize the dimensions of plants, avoiding large surface of PV modules installed on the ground, preferring modules located on solar trackers to increase the efficiency by at least 35%. However, even in this latter case, there are still margins for increasing the PV plant's efficiency. For this purpose, we have developed and tested an electronic system for controlling and driving bi-axial solar trackers of a PV plant, managed by a PC software application with a user-friendly graphical interface. The designed software is able to calculate the sun circadian orbit and consequently to move the solar panels in order to maintain the panel's surface always perpendicular to solar rays, improving the efficiency in energy production. In particular, the object of this work consists in optimizing an existing, designed by us, fully-hardware setup which didn't allow a simple and rapid plant management, completely replacing the Master electronic board with the designed software, so as to be able to communicate, by means of PC's RS232 serial port, with Slave electronic boards for tracker motors driving. (C) 2015 Elsevier Ltd. All rights reserved.
机译:几乎所有地方都可以使用太阳能,但是在某些情况下和某些位置,有必要优化工厂的规模,避免安装在地面上的光伏组件的表面过大,更喜欢位于太阳能跟踪器上的组件将效率至少提高35%。但是,即使在后一种情况下,仍然存在提高光伏电站效率的余地。为此,我们开发并测试了用于控制和驱动光伏电站的双轴太阳能跟踪器的电子系统,该系统由具有用户友好图形界面的PC软件应用程序管理。设计的软件能够计算太阳的昼夜节律轨道,从而移动太阳能电池板,以保持太阳能电池板的表面始终垂直于太阳光线,从而提高了能源生产的效率。特别是,这项工作的目的在于优化我们设计的现有全硬件设置,该设置不允许简单,快速的工厂管理,用设计的软件完全替代Master电子板,以便能够通过PC的RS232串行端口与从属电子板进行通信,以驱动跟踪器电动机。 (C)2015 Elsevier Ltd.保留所有权利。

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