Heliostat orientation system using a PLC based robot manipulator

A. Chaib, M. Kesraoui, E. Kechadi
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引用次数: 9

Abstract

Solar energy reaching a given surface depends directly on sun's orientation and sensor's position. Concentrated solar power systems are using sun-tracking heliostats to reflect maximum solar heat to a thermal receiver mounted atop a central power tower. The focused heat boils water within the thermal receiver and produces steam to supply a turbine for power generation. Since sun's rays are constantly variable throughout a day one should constantly change the position of the heliostat using an orientation system. First, a program for calculating the daily, monthly and yearly position of the sun for any earth place is developed using MATLAB software. Then an orientation system based on a robot manipulator in order to allow the heliostat to move for sun's radiation tracking is proposed and described. The results show that this system allows accurate positioning and gives a higher solar energy yield in comparison to a fixed one. Each heliostat will be equipped with this system. For accurate and instantaneous automatic control of the robot manipulator a Programmable Logic Controller (PLC) is used. Satisfying simulation results have been obtained.
定日镜定位系统采用基于PLC的机器人机械手
到达给定表面的太阳能直接取决于太阳的方向和传感器的位置。集中式太阳能发电系统使用太阳跟踪定日镜将最大限度的太阳能热量反射到安装在中央电力塔顶部的热接收器上。集中的热量使热接收器内的水沸腾,并产生蒸汽,为涡轮机提供电力。由于太阳光线在一天中是不断变化的,人们应该使用定向系统不断地改变定日镜的位置。首先,利用MATLAB软件编写了计算任意地球地点太阳日、月、年位置的程序。在此基础上,提出并描述了一种基于机械手的定日镜定位系统,以实现定日镜对太阳辐射的跟踪。结果表明,与固定系统相比,该系统可以精确定位,并提供更高的太阳能产量。每个定日镜都将配备这个系统。采用可编程逻辑控制器(PLC)对机器人机械手进行精确、瞬时的自动控制。仿真结果令人满意。
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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