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Renewable Integration Market in Europe to reach €19.83 bn in value by 2035

The European Renewable Energy Infrastructure Market is set to grow from €4.41 bn in 2025 to €19.83 bn by 2035. This growth is driven by strong policy support and climate targets, rapid cost decline and technological advances, and the need for greater energy security and regional independence.

At SGT26 Paris, we have introduced a whole conference track on Renewable Integration to enable grid operators, power generators and renewable asset owners to discuss win-win technical strategies for more rapid, efficient and effective support for the integration and management of renewable energy sources into the grid.

Just some of the case-studies that will be shared include:

Grid Codes – clarifying regulatory and legal requirements of power grid operators and renewable asset owners in managing the transition to a highly reliable renewables integrated power grid of the future

Future Power Mix – mapping the next 10 years in terms of electricity demand, likely power mix, and the implications for grid integration and operation across Europe

Nuclear – predicting the role of nuclear in the future power mix and determining the grid modernisation strategies required to ensure a safe, flexible, and responsive operation at scale

Solar – addressing natural variability by enhancing grid flexibility and power quality, with advanced controls and protection, forecasting, storage and smart grid management

Hydro – accurately modelling water and environmental constraints to ensure real-time control and protection of flexible and reliable operations alongside other renewable

V2G – enabling standardised, reliable and interoperable control of bidirectional power and data between millions of EVs, chargers and the grid while managing the risk of battery degradation and grid instability

Intermittency Management – applying smart controls, storage, advanced inverters, flexible designs, and plant-level hybridization at renewable generation sites to significantly reduce the negative effects of intermittency

Power Quality Management – implementing continuous monitoring, flexible infrastructure, and advanced controls to ensure that the power system remains stable, reliable, and resilient as renewable penetration increases more rapidly

Forecasting – adopting AI, probabilistic and ultra-short-term forecasting methodologies, utilising IoT sensors, satellite communication, and digital twins to reduce forecasting errors and ensuring accuracy in renewable-heavy power grids

Aggregators – overcoming the complexity and risk of working with aggregators to unlock the flexibility and volume required for large-scale renewable integration

To find out how you can participate:

+44 (0)20 8057 1700
Email: [email protected]

 

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