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Yondó Solar Park

Informacion del proyecto

The Yondó Solar Park is a strategic project developed by Energy Developments LLC in the municipality of Yondó, Antioquia, Colombia. This initiative aims to implement and operate a photovoltaic solar park consisting of three generation fields: Yondó I, Yondó II, and Yondó III, each with an installed capacity of 9.9 MW, totaling 29.7 MW. Spanning 52 hectares, this solar park represents a significant step toward Colombia’s energy transition, diversifying its energy matrix with clean and renewable sources.

Environmental Impact and Sustainability.

The Yondó Solar Park is designed to maximize solar energy generation, significantly reducing dependence on non-renewable sources such as coal and natural gas. With an annual production capacity of 64.8 GWh of clean energy, the project will significantly mitigate climate change, preventing the emission of thousands of tons of CO₂ each year. This initiative not only supports Colombia’s international climate commitments, but also improves air quality in the region, benefiting public health and fostering a more sustainable environment.

Beyond emission reductions, the project has a strong focus on sustainability. The park’s design incorporates cutting-edge technology, such as centralized inverters and bifacial solar panels, which capture sunlight from both sides to optimize energy efficiency. These systems are integrated with an advanced control center utilizing artificial intelligence (AI) to monitor and manage real-time operations, ensuring optimal performance while minimizing operational costs.

Technological Innovation and Smart Operation

The Yondó Solar Park incorporates advanced technologies to ensure efficient and sustainable operations. Its state-of-the-art control center is equipped with AI-driven predictive algorithms that allow for proactive maintenance. For instance, the system can anticipate weather conditions, such as rain, and automatically postpone panel cleaning, leveraging natural rainfall for cleaning. Additionally, during periods of high solar radiation, the system detects dust accumulation on the panels and schedules timely cleanings to maximize sunlight absorption.

Moreover, the AI system can adjust the orientation of the solar panels based on meteorological conditions, optimizing energy production. These innovations not only enhance the park’s operational efficiency, but also extend equipment lifespan and ensure a stable, reliable energy supply, aligning with the highest standards of sustainability and energy efficiency.

Economic and Social Impact

Beyond energy generation, the Yondó Solar Park has a significant impact on regional economic and social development. During construction, the project is expected to create approximately 600 direct and indirect jobs, providing employment opportunities for the local population and stimulating the regional economy. Additionally, the operation phase will continue to generate jobs, fostering technical and professional skill development in renewable energy, strengthening the local workforce in the sector.

The project is also committed to community development and environmental education. Energy Developments LLC plans to implement educational programs to raise awareness about renewable energy and sustainability, promoting a cultural shift towards a greener future. Moreover, by integrating local suppliers into its supply chain, the project ensures that economic benefits are equitably distributed, fostering inclusive and sustainable growth in the region.

Conclusion. The Yondó Solar Park is not just an energy infrastructure project; it is a comprehensive initiative that drives environmental sustainability, strengthens the local economy, and contributes to social development in Antioquia. This project exemplifies Energy Developments LLC’s commitment to a low-carbon economy, creating a cleaner, more prosperous future for Colombia.

Project

Construction and operation of a photovoltaic solar park consisting of three generation fields: Yondó I, Yondó II, and Yondó III.

Total Capacity
29,7 MW
Emission Reduction
32.674 Ton/year