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Design of a solar powered LED street light: Effect of panel's mounting angle and traffic sensing

机译:太阳能LED路灯的设计:面板安装角度和交通感应的影响

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In this work, the effect of mounting angle of solar panels and traffic sensing on the requirement of system size, i.e., panel size and battery capacity, for a solar powered street light system is investigated. Street lights need more energy in winter than in summer due to longer winter nights. However, for a solar powered system, less energy is available in winter with less intense sunlight and shorter days. The mounting angle of panels has a great impact on the cumulative energy output of the panels. Our investigation shows that while a mounting angle of 23.1° yields maximum energy collection in summer and minimum energy collection in winter, a mounting angle of 46.5° increases the energy collection in winter and yields more or less uniform energy collection throughout the year. Assuming a panel efficiency of 16%, an average cumulative energy output of 950 Wh/m2/day with about 5–8% variation throughout the year has been found with a mounting angle of 46.5°. This results in about 9% reduction in the panel size than that required with a mounting angle of 231°. Moreover, installing a traffic sensor in the lighting system will allow detection of traffic density, thereby operating the lamps at different intensity levels as per requirements. This will save energy wastage in time of low or no traffic and will further relax the requirement on system size.
机译:在这项工作中,研究了太阳能路灯系统的太阳能电池板的安装角度和交通传感对系统尺寸(即电池板尺寸和电池容量)要求的影响。由于冬季夜晚时间较长,冬季与夏季相比,冬季路灯需要更多的能源。但是,对于太阳能系统,在冬季,日照强度较小,白天较短,则可用的能量较少。面板的安装角度对面板的累积能量输出有很大影响。我们的调查表明,安装角度为23.1°时,夏季可获得最大的能量收集,而冬季则为最小,而46.5°的安装角度可增加冬季的能量收集,并且全年可产生或多或少的均匀能量收集。假设面板效率为16%,安装角度为46.5°,则全年平均累计能量输出为950 Wh / m 2 /天,全年变化约5–8%。与231°的安装角度相比,这可使面板尺寸减小约9%。而且,在照明系统中安装交通传感器将允许检测交通密度,从而根据要求以不同的强度水平操作灯。这将节省低流量或无流量时的能源浪费,并将进一步放松对系统尺寸的要求。

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