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Sun Closeness/Clearance Estimation for 3 Different Days

机译:太阳闭合/间隙估计3个不同的日子

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With the need for clean and sustainable energy, solar energy use has increased significantly in recent years. However, power fluctuations due to solar energy variability are among the main challenges in using photovoltaic systems. One of the most critical factors that cause these fluctuations is the clouds that block the sun’s radiation. In this study, the motions of clouds are tracked, and the motions they could take in the future are estimated. Thus, in the short term, it has been tried to determine the moments when sudden solar radiation changes may occur by estimating the closeness and clearance of the sun. For this purpose, firstly, sky images are collected at regular intervals with the help of a digital camera placed in the main campus area of Afyon Kocatepe University. The Shi-Tomasi algorithm determines the points to be tracked on the collected sky images. Then, the points determined by using the Lucas-Kanade optical flow algorithm are tracked on sequential images. By analyzing the clouds’ motions, the clouds with the risk of obstructing the sun are detected, and the motion estimations are made using the calculated direction and speed information. Finally, due to the experiments performed on datasets obtained from 3 different days, sun closeness/clearance estimations at the 1-second resolution at 120 seconds time horizon are reached. The obtained results showed that the approach could be used successfully in cloud motion estimation in different cloudy conditions.
机译:随着近年来,太阳能使用的需求越来越显着增加。然而,由于太阳能变异性导致的功率波动是使用光伏系统的主要挑战之一。导致这些波动的最关键因素之一是阻挡太阳辐射的云。在这项研究中,估计了云的动作,并估计他们将来可以采取的动作。因此,在短期内,通过估计太阳的接近和间隙,可能发生突然的太阳辐射变化时,已经尝试确定时刻。为此目的,首先,在Affyon Kocatepe大学的主要校园区的数码相机的帮助下,定期收集天空图像。 SHI-Tomasi算法确定要在收集的天空图像上进行跟踪的点。然后,在顺序图像上跟踪通过使用Lucas-Kanade光学流算法确定的点。通过分析云的运动,检测具有阻塞太阳的风险的云,并且使用计算的方向和速度信息进行运动估计。最后,由于在从3个不同的日子获得的数据集上进行的实验,达到了120秒时间范围内的1秒分辨率的Sun接近/间隙估计。所获得的结果表明,该方法可以成功地在不同的多云条件下成功使用云运动估计。

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