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Comparative study on different types of photovoltaic modules under outdoor operating conditions in Minna, Nigeria

机译:尼日利亚明纳在室外运行条件下不同类型的光伏组件的比较研究

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There is need to always obtain the realistic outdoor performance variables of Photovoltaic (PV) module in a location for efficient PV power system sizing and design. Outdoor performance evaluation was carried out on three types of commercially available silicon PV modules rated 10 W each, using CR1000 software-based Data Acquisition System (DAS). The PV modules under test and meteorological sensors were installed on a metal support structure at the same test plane.The data monitoring was from 08.00 to 18.00 hours each day continuously for a period of one year, from December 2014 to November 2015. Maximum values of module efficiencies of 5.86% and 10.91% for the monocrystalline and polycrystalline modules were respectively recorded at irradiance of 375 W/m2, while the amorphous efficiency peaked at 3.61 % with irradiance of 536.5 W/m2. At 1000 W/m2 the efficiencies reduced to 3.30 %, 6.20 % and 2.25 % as against manufacturer’s specifications of 46 %, 48 % and 33 % for the monocrystalline, polycrystalline and amorphous modules respectively. The maximum power output achieved for the modules at irradiance of 1000 W/m2 were 0.711 W, 1.323 W and 0.652 W for the monocrystalline, polycrystalline and amorphous PV modules, respectively. Accordingly, Module Performance Ratios for the PV modules investigated were 0.07, 0.13 and 0.07, respectively. The rate of variation of module response variables with irradiance and temperature was determined using a linear statistical model given as Y= a + bHg+ c Tmod. The approach performed creditably when compared with measured data.
机译:始终需要在某个位置获得光伏(PV)模块的实际室外性能变量,以进行有效的PV电力系统选型和设计。使用基于CR1000软件的数据采集系统(DAS),对三种额定功率分别为10 W的市售硅光伏组件进行了户外性能评估。在2014年12月至2015年11月的一年中,被测PV模块和气象传感器安装在同一测试平面上的金属支撑结构上。数据监控时间为每天08.00至18.00小时,为期一年。在375 W / m2的辐照下,单晶和多晶组件的模块效率分别为5.86%和10.91%,而在536.5 W / m2的辐照下,非晶效率达到3.61%的峰值。在1000 W / m2的情况下,效率降低至3.30%,6.20%和2.25%,而制造商的规格分别为单晶,多晶和非晶组件的46%,48%和33%。对于单晶,多晶和非晶PV组件,在1000 W / m2的辐照度下,组件的最大输出功率分别为0.711 W,1.323 W和0.652W。因此,所研究的光伏组件的组件性能比分别为0.07、0.13和0.07。使用线性统计模型(Y = a + bHg + c Tmod)确定模块响应变量随辐照度和温度的变化率。与实测数据相比,该方法的表现令人满意。

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