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Optimal Design Of Discrete-value Tilt Angle Of Pv Using Sequential Neural-network Approximation And Orthogonal Array

机译:基于序列神经网络逼近和正交阵列的PV离散值倾斜角优化设计

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This report presents a method for combining sequential neural-network approximation and orthogonal arrays (SNAOA) to determine the tilt angle for photovoltaic (PV) modules. An orthogonal array is first conducted to obtain the initial solution set. The set is then treated as the initial training sample. Next, a back-propagation sequential neural network is trained to simulate the feasible domain for seeking the optimal tilt angle of PV modules. The size of the training sample is greatly reduced due to the use of the orthogonal array. In addition, a restart strategy is also incorporated into the SNAOA so that the searching process may have a better opportunity to reach a near global optimum. The objective is to maximize the output power energy of the modules. In this study, seven Taiwanese areas were selected for analysis. The sun's position at any time and location was predicted by the mathematical procedure of Julian dating; then, the solar irradiation was obtained at each site under a clear sky. To confirm the computer simulation results, an experimental system is conducted for determining the optimal tilt angle of the PV modules. The results show that the annual optimal angle for the Taipei area is 23.25°; for Taichung, 22.25°; for Tainan, 21.25°; for Kaosiung, 20.75°; for Hengchung, 20.25°; for Hualian, 22.25°; and for Taitung, 21° in Taiwan, and the actual best annual tilt angles are close to the computer simulation results. Additional results related to SNAOA are also reported and discussed as well.
机译:该报告提出了一种将顺序神经网络逼近与正交阵列(SNAOA)相结合以确定光伏(PV)模块倾斜角的方法。首先进行正交阵列以获得初始解集。然后将该集合作为初始训练样本。接下来,训练一个反向传播顺序神经网络,以模拟可行域,以寻找PV模块的最佳倾斜角。训练样本的大小由于使用了正交数组而大大减小了。此外,SNOAA还包含了重新启动策略,以便搜索过程可能有更好的机会达到接近全局的最佳状态。目的是使模块的输出功率能量最大化。在这项研究中,选择了七个台湾地区进行分析。太阳在任何时间和位置的位置都是通过朱利安约会的数学过程预测的;然后,在晴朗的天空下在每个位置获得太阳辐射。为了确认计算机仿真结果,进行了一个实验系统来确定光伏组件的最佳倾斜角。结果表明,台北地区的年度最佳角度为23.25°。台中22.25°;台南21.25°对于高雄,20.75°;横冲,20.25°;华联,22.25°;对于台东来说,台湾为21°,实际最佳年度倾斜角接近计算机模拟结果。还报道和讨论了与SNAOA相关的其他结果。

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