Thermal & airflow behaviour
How airflow, module temperature and microclimate interact under real operating loads.
Research & innovation
Our research focuses on how thermal behaviour, microclimate and agrivoltaic integration influence photovoltaic performance — and how those interactions differ across the geographical and climatic conditions found across India.
Initial proof-of-concept results have indicated the potential for an estimated 5–10% improvement in photovoltaic output under suitable site and climatic conditions. Larger-scale trials are underway to validate performance across broader operating environments.
Actual performance may vary according to location, climate, system design, PV technology and operating conditions. These results are not guaranteed and have not been independently certified, patented or proven at commercial scale. Any figures on this page are indicative and site-dependent.
Indicative range
*Under suitable site and climatic conditions. Larger-scale trials are underway.
Our research isn't separated from delivery — it feeds directly into how we design, evaluate and optimise solar-energy sites.
How airflow, module temperature and microclimate interact under real operating loads.
How different PV technologies respond to site-specific conditions across climatic zones.
Selecting layouts and crops so that agriculture and PV generation reinforce each other.
Larger-scale trials are underway to extend our early findings across broader operating environments — from arid and semi-arid regions to humid coastal and temperate hill climates.
We welcome collaboration with research institutions, solar developers, agricultural bodies and public-sector agencies with a shared interest in climate-responsive solar performance.
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Whether you are a solar developer, landowner, agency or research partner, we welcome conversations about climate-responsive agrivoltaics and solar performance.