Solar Cells in Smart Cyber Physical Systems
dc.contributor.advisor | István, Balajti | |
dc.contributor.author | Jamil, Muhammad Umer | |
dc.contributor.department | DE--Műszaki Kar | |
dc.date.accessioned | 2025-09-04T15:47:55Z | |
dc.date.available | 2025-09-04T15:47:55Z | |
dc.date.created | 2024-12-02 | |
dc.description.abstract | This thesis focuses on optimizing energy generation in vertical bifacial solar panels for desert environments by harnessing both direct and reflected sunlight. Through MATLAB and Simulink simulations, bifacial panels demonstrate a 20-30% higher energy yield compared to traditional monofacial panels due to rear-side albedo capture. Key challenges such as dust accumulation, temperature variations, and wind loads are addressed by integrating AI-driven Smart Cyber-Physical Systems (S-CPS) for real-time monitoring, adaptive orientation, and automated maintenance. The results highlight significant efficiency improvements and operational resilience, making vertical bifacial systems a sustainable and cost-effective solution for large-scale energy production in arid regions. Future work explores further optimization through advanced AI algorithms and materials for enhanced energy capture. | |
dc.description.course | Mechatronical Engineering | en |
dc.description.degree | BSc/BA | |
dc.format.extent | 60 | |
dc.identifier.uri | https://hdl.handle.net/2437/397266 | |
dc.language.iso | en | |
dc.rights.access | Hozzáférhető a 2022 decemberi felsőoktatási törvénymódosítás értelmében. | |
dc.subject | Bifacial Solar Panels | |
dc.subject | Smart Cyber-Physical Systems (CPS) | |
dc.subject | Bifacial Gain | |
dc.subject | Solar Panel Efficiency | |
dc.subject | MATLAB Simulation | |
dc.subject.dspace | Engineering Sciences | |
dc.title | Solar Cells in Smart Cyber Physical Systems |
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