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A novel prediction algorithm for solar angles using solar radiation and Differential Evolution for dual-axis sun tracking purposes

机译:一种新颖的太阳角预测算法,该算法利用太阳辐射和微分演化用于双轴太阳跟踪

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This paper deals with a dual-axis sun tracking system for a photovoltaic system. Its trajectories are determined by an optimization procedure. The optimization goal is the maximization of the electrical energy production within a photovoltaic system, by considering the tracking system consumption. The procedure used for determining the tilt angle and azimuth angle trajectories is described as a nonlinear and bounded optimization problem. Since an explicit form of the objective function is unavailable, a stochastic search algorithm called Differential Evolution is applied as the optimization tool. In order to evaluate the objective function, models for calculating the available solar radiation and tracking system consumption are applied together with the efficiencies of solar cells, a DC/DC converter and inverter. A new algorithm is introduced for the time dependent prediction of available solar radiation. It is based on the length of a sunbeam's path through the atmosphere and the statistical data of a pyranometer measured total and diffuse solar radiation at a given location on the Earth. The optimization bounds are given in the form of angular speed, lower and upper bounds for both angles and angle quantization. The results presented in this paper show, that the optimal trajectories can help to increase the electrical energy production within photovoltaic systems by sun tracking.
机译:本文涉及用于光伏系统的双轴太阳跟踪系统。它的轨迹由优化程序确定。优化目标是通过考虑跟踪系统的消耗来最大化光伏系统内的电能产生。用于确定倾斜角和方位角轨迹的过程被描述为非线性有界优化问题。由于目标函数的显式形式不可用,因此将称为差分进化的随机搜索算法用作优化工具。为了评估目标函数,将用于计算可用太阳辐射和跟踪系统消耗的模型与太阳能电池,DC / DC转换器和逆变器的效率一起应用。引入了一种新算法,用于对可用太阳辐射的时间依赖性进行预测。它基于阳光穿过大气层的路径长度以及总辐射表的统计数据,该总辐射表测量了地球上给定位置处的总太阳辐射和漫射太阳辐射。优化范围以角速度,角度和角度量化的上下限的形式给出。本文提出的结果表明,最佳轨迹可以通过太阳跟踪来帮助增加光伏系统内的电能产生。

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