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Design and Fabrication of Automatic Single Axis Solar Tracker for Solar Panel

机译:太阳能电池板自动单轴太阳能跟踪器的设计与制造

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Sun energy is a considered to be one of most promising source to address the world energy crises. Photovoltaic cell is one of the prominent sources of energy. The most important factors that affect the efficiency of solar cells are cell temperature, maximum power point tracking (MPPT) and energy conversion efficiency. The optimization of these factors improves solar cells efficiency for more reliable applications. This study associated by means of the designing and manufacturing process of single axis tracker device by using photo voltaic conversion panels. This solar tracker system assures the conversion optimization of electricity from the source of sun energy by proper using of orientated photovoltaic panel in a manner conforming to the actual direction of sun. Experimental system based on the function of DC motor, which is controlled by dedicated drive astutely so as to move the PV panel in accordance with the signals be given as of effective light sensors. It has been found that at the same sunny day the energy output of solar panel with tracking system was 1742.88Wh and with non tracking system was 829.6Wh and
机译:太阳能是一个被认为是解决世界能源危机的最有前途的源之一。光伏电池是突出的能量源之一。影响太阳能电池效率的最重要因素是细胞温度,最大功率点跟踪(MPPT)和能量转换效率。这些因素的优化可以提高太阳能电池效率,以了解更可靠的应用。本研究通过使用光伏转换面板通过单轴跟踪器设备的设计和制造过程相关联。该太阳能跟踪系统通过适当使用定向的光伏面板以符合Sun的实际方向的方式,确保从太阳能源的电源转换优化。基于DC电动机功能的实验系统,由专用驱动器进行光,以便根据有效光传感器的信号移动PV面板。已经发现,在同一阳光灿烂的日期,带有跟踪系统的太阳能电池板的能量输出为1742.88Wh,并且非跟踪系统为829.6Wh和

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