
Innovations
Finding Inspiration in Every Turn
We are working closely on a number of innovative solutions that can become part of the net-zero agenda, these include hydrogen as a energy vector Ai in Energy
AI in ENERGY
Artificial intelligence is transforming the energy sector by enabling more accurate forecasting, smarter control and better use of renewable resources. Through ENERGISE, AI is applied to areas such as solar and wind prediction, building energy optimisation, microgrid management, energy storage, hydrogen systems and predictive maintenance. By combining real-time data with advanced modelling, these approaches can reduce energy waste, improve system reliability and support the integration of low-carbon technologies. ENERGISE brings together researchers, students and industry partners from the UK and India to develop practical AI-enabled solutions that accelerate the transition towards affordable, resilient and net-zero energy systems.

Hydrogen
ENERGISE brings together complementary expertise across the hydrogen value chain, covering renewable hydrogen production, storage, conversion and end-use applications. Our work includes electrolyser integration, fuel-cell systems, solar-to-hydrogen pathways, metal-hydride storage, hydrogen safety and the modelling and optimisation of integrated hydrogen-energy systems. By combining advanced simulation, laboratory testing and industry collaboration, the programme supports the development of efficient, safe and scalable hydrogen solutions for buildings, transport, microgrids and industrial decarbonisation across the UK and India.


Floating PV Systems
ENERGISE brings together expertise in floating photovoltaic systems for reservoirs, lakes and coastal environments, addressing the technical and economic challenges of deploying solar energy on water. Our work covers system design, energy-yield modelling, bifacial and flexible PV technologies, advanced materials, corrosion and durability, mooring, environmental performance and AI-enabled monitoring. By combining simulation, laboratory testing and field-based research, the programme supports the development of reliable, efficient and scalable floating solar solutions that reduce land-use pressure, improve renewable-energy generation and contribute to resilient, low-carbon energy systems.

CALL FOR COLLABORATION
We invite artists and developers to contribute to our vision and collaborate with us.