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首页> 外文期刊>Journal of The institution of engineers (India), Series C >Multi-objective Optimization of Solar Irradiance and Variance at Pertinent Inclination Angles
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Multi-objective Optimization of Solar Irradiance and Variance at Pertinent Inclination Angles

机译:多目标优化在相关倾角下的太阳辐照度和差异

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The performance of photovoltaic panel gets highly affected bychange in atmospheric conditions and angle of inclination. This article evaluates the optimum tilt angle and orientation angle (surface azimuth angle) for solar photovoltaic array in order to get maximum solar irradiance and to reduce variance of radiation at different sets or subsets of time periods. Non-linear regression and adaptive neural fuzzy interference system (ANFIS) methods are used for predicting the solar radiation. The results of ANFIS are more accurate in comparison to non-linear regression. These results are further used for evaluating the correlation and applied for estimating the optimum combination of tilt angle and orientation angle with the help of general algebraic modelling system and multi-objective genetic algorithm. The hourly average solar irradiation is calculated at different combinations of tilt angle and orientation angle with the help of horizontal surface radiation data of Jodhpur (Rajasthan, India). The hourly average solar irradiance is calculated for three cases: zero variance, with actual variance and with double variance at different time scenarios. It is concluded that monthly collected solar radiation produces better result as compared to bimonthly, seasonally, half-yearly and yearly collected solar radiation. The profit obtained for monthly varying angle has 4.6% more with zero variance and 3.8% more with actual variance, than the annually fixed angle.
机译:光伏面板的性能在大气条件和倾斜角度下受到高度影响。本文评估太阳能光伏阵列的最佳倾斜角度和方向角(表面方位角),以便获得最大的太阳辐照度,并降低不同组或时间段子集的辐射方差。非线性回归和自适应神经模糊干扰系统(ANFIS)方法用于预测太阳辐射。与非线性回归相比,ANFI的结果更准确。这些结果还用于评估相关性并施加用于借助于常规代数建模系统和多目标遗传算法的倾斜角度和取向角的最佳组合。在Jodhpur的水平表面辐射数据(Rajasthan,India)的帮助下,以不同的倾斜角度和取向角的不同组合计算了每小时平均太阳照射。计算三种情况下的每小时平均太阳辐照度:零方差,具有实际方差,不同时间场景的双差异。结论是,与双月,季节性,半年和每年收集的太阳辐射相比,每月收集的太阳辐射产生更好的结果。每月不同角度获得的利润更多,零方差更多,实际方差比每年固定角度更多。

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