研究目的
To show the challenges for PV systems and bring the union of possible solutions applied in a photovoltaic plant with an approach to Industry 4.0.
研究成果
Industry 4.0 can provide connectivity, visibility, predictability, and adaptability improving control of the variables involved in PV systems increasing efficiency throughout the production chain of equipment and PV power generation. The proposed model PV system for Industry 4.0 generated more power than the conventional system and allows easy processing and monitoring of the data of each PV module individually.
研究不足
The cost of deploying systems with new technologies may still be an obstacle for some countries.
1:Experimental Design and Method Selection:
The study involved designing a PV system in software PV*SOL with power optimizers, inverter, and PV modules cleaning system.
2:Sample Selection and Data Sources:
The proposed system has 112 PV modules BYD BYD270P6C-30 of 270W, totaling 30.24 kWp; for the inverter, the Ingecon 28TL M was chosen.
3:24 kWp; for the inverter, the Ingecon 28TL M was chosen. List of Experimental Equipment and Materials:
3. List of Experimental Equipment and Materials: PV modules BYD BYD270P6C-30, Ingecon 28TL M inverter, Tigo TS4-R-O optimizer.
4:Experimental Procedures and Operational Workflow:
Simulations were performed considering the city of Campinas-SP and Curitiba-PR for different scenarios.
5:Data Analysis Methods:
Performance indicators were adopted to analyze the simulated scenarios, highlighting the performance ratio (PR), the final yield (Yf), and the global optimization performance (PGo).
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