单轴太阳能跟踪系统的高级控制器

S. Balasubramaniyan, R. Vidyalakshmi, T. Srinivas, K. Sekar, Atul Sarojwal, Satyendra Vishwakarma
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摘要

社会对传统能源的依赖日益加深,用电量的比例日益上升。这种趋势的持续可能导致传统能源在几年内消亡。所以,现在是使用可再生能源的时候了。最环保和长期的可再生能源是太阳能。利用太阳能板来捕捉太阳的能量是可能的。许多因素影响太阳能电池板产生能量的速度,比如阳光的辐照度和材料的温度。因此,太阳能电池板接收到的阳光越多,它产生的能量就越多。由于太阳在天空中的位置在一天中不断变化,固定的太阳能电池板无法在白天探测到最大数量的阳光。太阳能电池板必须有一个自动跟踪机制,以保证它接收到最大数量的阳光。本文旨在设计一种自主太阳能跟踪系统,使太阳能帆板随太阳光方向旋转。选择自适应神经模糊推理系统(ANFIS)作为跟踪系统的高级控制器。该控制器将太阳能板倾斜到所需的角度。采用了传统的比例积分导数控制器,并与ANFIS控制器进行了比较。通过比较控制器的时间特性和误差来评价控制器的性能。在设定点跟踪和抗干扰两方面,仿真结果表明,ANFIS控制器是太阳能跟踪系统的最佳选择。
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Advanced Controller for Single Axis Solar Tracking System
Society is more reliant on traditional energy sources, and the percentage of power use is rising every day. Continuation of this trend could lead to the demise of traditional energy sources within a few years. So, now would be the moment to use renewable energies. The most environmentally friendly and long-term renewable energy is the solar energy. It is possible to capture the energy of the sun by employing a solar panel. Many factors influence the rate at which a solar panel generates energy, like the irradiance of sunlight and the temperature of the material. Hence more sunshine the solar panel receives, the more power it generates. Because a sun's location in the sky varies throughout the day, a fixed solar panel can't detect the greatest amount of sunlight throughout the daylight hours. The solar panel must have an automatic tracking mechanism to guarantee that it receives the maximum amount of sunlight. This paper aims to design an autonomous solar tracking system and make the solar panel rotate depending on the sunlight direction. As an advanced controller for the tracking system, the Adaptive Neuro-Fuzzy Inference System (ANFIS) is selected. The solar panel is tilted to the desired angle by this controller. The conventional Proportional Integral Derivative controller is also employed and compared with the ANFIS controller. The controller's performance is evaluated by comparing the controller's time characteristics and errors. In both set point tracking and disturbance rejection, the simulated results suggest that the ANFIS controller is the optimum choice for a solar tracking system.
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