Design and Implementation of an Optimal Energy-Efficient Dual
This paper delves into the design and implementation of automated dual-axis solar tracking system showcasing the performance enhancement compared to a traditional
Solar tracking systems should be designed to continuously orient solar panels to follow the sun's path throughout the day, maximizing exposure to solar irradiance. This dynamic alignment significantly enhances the energy output of PV systems compared to fixed-tilt installations.
In the quest for sustainable and renewable energy sources, solar power stands out as a promising and increasingly vital solution. Among the numerous advancements in solar technology, the development of efficient solar tracking systems plays a pivotal role in maximizing energy output.
Considering that the energy consumed by its mechanical system during the tracking of the sun has such a negligible value that it can be omitted, the solar tracking system that we designed and constructed is more efficient in collecting solar energy than the fixed panel.
Among the numerous advancements in solar technology, the development of efficient solar tracking systems plays a pivotal role in maximizing energy output. Traditional fixed-tilt solar systems are limited in their ability to harness the full potential of solar irradiance due to their static positioning.
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