Self-driving technologies are designed to enhance overall efficiency by continuously monitoring and adjusting to environmental changes. In the case of solar panels, these systems can be outfitted with electric motors that allow them to pivot and orient toward the sun . By autonomously adjusting the angles of solar arrays in real time based on sunlight availability, these systems can maximize energy capture throughout the day. IDENTIFYING THE CHALLENGES IN SOLAR POWER GENERATION Solar energy generation, although a sustainable alternative to fossil fuels, faces. stem designed to track the sun's movement, thereby maximizing energy production. By utilizing a microcontroller-driven control unit in conjunction with a solar tracking mechanism, the system ensures that photovoltaic (PV) pane s are consistently oriented for optimal exposure to sunlight throughout. These systems generate electricity without continuous external fuel sources, making them ideal for sustainable applications in remote areas, wearable technology, and grid-independent power solutions. Generating electricity without an external fuel source relies on converting ambient energy into. Combining solar sources with Thermoelectric Generators (TEGs), and Piezo-Electric Generators (PEGs), and the concept of using a prime mover and secondary mover of the electric generator, in which, the idea of a self-sustaining electric generator with an automatic control system has come to exist. Abstract—Modern technology and industrial development demand more electric power each day. The purpose of this project is to explore the. Solar energy, solar panels, ESP32 microcontroller, automated solar tracking system, Gear motor.