Create an image that fulfill the following description best: Abstract The global transition toward green energy is essential to combat climate change, yet standard stationary solar panels are limited by peak efficiency occurring only at midday. This project addresses the need for consistent energy production through a modular, sun-following apparatus designed to track solar position from morning to evening to maximize energy harvesting throughout the day. The system utilizes a dual-motor rotational system driven by precise position and orientation calculations from global position data, with an integrated spatial light sensor serving as a reliable backup. By tracking the sun’s path from dawn to dusk, the device ensures panels maintain an optimal angle of incidence, significantly increasing total energy yields through a simple, scalable design. The result is a simple, scalable and cost-effective mechanism that makes high-efficiency solar tracking accessible for various installation environments. Results The project successfully developed a modular solar tracking system capable of two-axis rotation and continuous orientation adjustment. The primary chosen solution employs two rotating motors controlled by position algorithms that calculate the sun's exact position based on time and geographic data. This method was selected for its high precision, real-time ability and consistency regardless of cloud cover or diffuse light. Testing confirmed that the dual-motor system See more