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In this study, a solar tracking system for renewable energy applications is developed and constructed to harness free solar energy, store it in a battery, and convert it into alternating current (AC) for household use. The system can serve as a supplementary or standalone power source for standard homes. It is engineered to react quickly to environmental changes. Potential errors, whether in hardware or software, are minimized through extensive testing, quality assurance practices, and are further managed with redundancy and error detection algorithms. The system undergoes thorough testing to ensure real-time responsiveness, reliability, stability, and safety. It is built to maintain stability during operation and withstand weather conditions, temperature fluctuations, and minor mechanical stresses. Additionally, it features fail-safe mechanisms, enabling it to recover from faults or alert users when failures occur.
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