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Automatic solar tracking system using DELTA PLC

机译:使用DELTA PLC的自动太阳能跟踪系统

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摘要

Energy and environment are the major problems in today's world. Renewable energy is the only solution to meet power demand as the conventional energy sources are not only limited but also the main culprit for environmental pollution. Solar energy is the primary source of renewable energy in developing the power deficient. But solar panels are less efficient in developing the power due to its fixed panel arrangement. So, many tracking methods are developed to track the sun among them some are less precise in control, some are complex in control system, and some are unable to track the sun during certain whether conditions. In this paper, automatic solar tracking system is implemented using DELTA PLC which tracks the sun more effectively with its simple and precise control structure in all environmental conditions. The automatic solar tracker maneuvers solar panel towards the sun to extract maximum energy during the day time. The tracking is done by programmed light intensity of the panel with the help of LDR sensors and magnetic reed switches, which controls the speed and direction of the dc gear motor attached to the solar panel through mechanical structure and gear arrangement by programming in PLC. The power generation obtained from the proposed PV system increases about 25% with power consumption of the tracker when compared with the power generation obtained from the conventional solar PV system. This can be implemented for a grid connected PV system in order to increase the generation of power. It can also be used to compensate power demand and to obtain high economic returns within shorter duration of time.
机译:能源和环境是当今世界的主要问题。可再生能源是满足电力需求的唯一解决方案,因为常规能源不仅受到限制,而且是造成环境污染的罪魁祸首。太阳能是发展电力短缺的主要可再生能源。但是,由于其固定的面板布置,太阳能面板在开发电源方面效率较低。因此,开发了许多跟踪太阳的跟踪方法,其中一些控制精度不高,一些控制系统复杂,有些在某些条件下无法跟踪太阳。在本文中,使用DELTA PLC实现了自动太阳跟踪系统,该系统以简单而精确的控制结构在所有环境条件下都能更有效地跟踪太阳。自动太阳能跟踪器使太阳能电池板朝着太阳移动,以在白天提取最大能量。通过在LDR传感器和磁性簧片开关的帮助下通过编程设置面板的光强度来完成跟踪,该面板通过机械结构和齿轮布置通过PLC编程来控制连接至太阳能面板的直流齿轮电动机的速度和方向。与从常规太阳能PV系统获得的发电量相比,从拟议的PV系统获得的发电量随着跟踪器的功耗增加了约25%。可以对并网的光伏系统实施此操作,以增加发电量。它还可以用于补偿电力需求并在较短的时间内获得较高的经济回报。

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