The pressing need for sustainable energy solutions has triggered the rapid development of solar technologies. Among these advancements, dual-axis solar tracking systems have emerged as a promising approach to augment solar energy capture. The dual-axis solar tracking system operates by dynamically orienting solar panels along both the azimuth and elevation axes, allowing them to precisely follow the sun’s position throughout the day. This continual alignment significantly increases the absorption of solar irradiance, thereby optimizing energy output. This paper delves into the design and implementation of automated dual-axis solar tracking system showcasing the performance enhancement compared to a traditional stationary solar panel. The system employs sensors and servo motors to detect the sun’s position, utilizing this information to dynamically adjust the orientation of solar panels. By evaluating the latest research findings, this paper underscores the potential of dual-axis solar tracking systems to revolutionize solar energy generation, making a compelling case for their widespread adoption in the renewable energy sector.

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Design and Implementation of an Optimal Energy-Efficient Dual-Axis Solar Tracking System

  • Ankur Gupta,
  • P. S. Pravin

摘要

The pressing need for sustainable energy solutions has triggered the rapid development of solar technologies. Among these advancements, dual-axis solar tracking systems have emerged as a promising approach to augment solar energy capture. The dual-axis solar tracking system operates by dynamically orienting solar panels along both the azimuth and elevation axes, allowing them to precisely follow the sun’s position throughout the day. This continual alignment significantly increases the absorption of solar irradiance, thereby optimizing energy output. This paper delves into the design and implementation of automated dual-axis solar tracking system showcasing the performance enhancement compared to a traditional stationary solar panel. The system employs sensors and servo motors to detect the sun’s position, utilizing this information to dynamically adjust the orientation of solar panels. By evaluating the latest research findings, this paper underscores the potential of dual-axis solar tracking systems to revolutionize solar energy generation, making a compelling case for their widespread adoption in the renewable energy sector.