BluPine Energy has been recognised at the Gujarat Annual Solar Awards 2026, receiving the Best Performance Mega Solar PV Project of the Year award for its 120 MW solar photovoltaic (PV) project in Gujarat.
The award was presented during the Global Solar Expo & SuryaCon, organised by EQMag in Ahmedabad. The recognition highlights the project’s performance, execution and contribution to the development of utility-scale renewable energy infrastructure in the state.
The 120 MW solar PV project uses Sungrow inverters and reflects BluPine Energy’s focus on developing and operating reliable, high-performing renewable energy assets.
According to the company, the project’s performance is the result of coordinated efforts across multiple stages of development, including engineering, project execution, operations and asset management. BluPine said its teams and project partners worked closely to ensure the project met its performance and operational objectives.
The recognition also underscores the growing importance of operational efficiency and asset performance in India’s expanding solar power sector. As the country continues to add large-scale renewable energy capacity, the ability to deliver consistent generation and maintain long-term asset performance has become increasingly important.
BluPine Energy said the award is a recognition of the collective efforts of its employees, technology partners and other stakeholders involved in the project.
The company added that it remains focused on expanding renewable energy infrastructure and developing projects capable of delivering dependable clean power while supporting India’s broader energy transition.
The 120 MW Gujarat project adds to BluPine Energy’s renewable energy portfolio and demonstrates the company’s focus on combining large-scale project execution with operational performance.
With India continuing to accelerate solar capacity additions, industry awards such as this highlight the role of project execution, technology selection and long-term asset management in ensuring the performance of utility-scale solar installations.





