智能太阳能跟踪系统,实现最优发电

L. Nanda, A. Dasgupta, U. K. Rout
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引用次数: 8

摘要

太阳能与太阳能跟踪,将成为可能产生更多的能量,因为太阳能电池板依赖于太阳。尽管建立跟踪系统的初始成本相当高,但随着时间的推移,人们提出了更便宜的选择。光相关电阻(ldr)用于太阳光检测。控制电路采用atmega328p单片机。太阳能电池板被放置在能够接收到最大光线的地方。与其他电机相比,伺服电机能够在高速下保持其转矩。它们的效率也更高,效率在80-90%之间。大多数太阳能电池板的运行效率仍低于40%。因此,大多数人被迫要么购买大量的面板来满足他们的能源需求,要么购买具有大输出的单个系统。在降低成本的同时提高太阳能电池板效率的方法之一是使用跟踪技术。通过跟踪,会增加面板对太阳的暴露,使其增加功率输出。跟踪器可以是双轴或单轴跟踪器。双跟踪器效率更高,因为它们从两个轴跟踪阳光。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Smart solar tracking system for optimal power generation
Solar energy with solar tracking, will become possible to generate more energy since the solar panel depends on the sun. Even though the initial cost of setting up the tracking system is considerably high, there are cheaper options that have been proposed over time. Light Dependent Resistors (LDRs) are used for sunlight detection. The control circuit is ATMega 328P microcontroller. The solar panel is positioned where it is able to receive maximum light. As compared to other motors, the servo motors are able to maintain their torque at high speed. They are also more efficient with efficiencies in the range of 80–90%. Most of the panels still operate at less than 40%. As a result, most people are forced to either purchase a number of panels to meet their energy demands or purchase single systems with large outputs. One of the ways to increase the efficiency of solar panels while reducing costs is to use tracking. Through tracking, there will be increased exposure of the panel to the sun, making it increased power output. The trackers can either be dual or single axis trackers. Dual trackers are more efficient because they track sunlight from both axes.
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