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Future energy
Project summarySources of oscillations on the transmission system can be determined by investigating the transfer of oscillation energy in the network
Future energy
Project summaryAs the number of IBR sources in the GB system continues to rise, it becomes essential to conduct numerous Electromagnetic Transient (EMT) simulations across various scenarios and…
Future energy
Project summaryUsing Deep Machine learning techniques, this project is exploring whether if we had more accurate predictions for solar electricity generation then we could reduce the amount of "…
Future energy
Project summaryThe previous project NIA2_NGESO053 assessed the pros and cons of more coordinated procurement of energy, response and reserve under different market designs.
Future energy
Project summaryThe increasing penetration of inverter-based resources and HVDC interconnections have created unfavourable dynamic interactions, oscillations and low inertia related stability issues.…
Future energy
Project summaryReserve is essential in securing the electricity grid. Choosing how much reserve to procure is a balance between risk and cost.
Future energy
Project summaryThe UK Government has set ambitious targets of 50GW of offshore wind installed on the GB transmission system by 2030.
Future energy
Project summaryThis project will provide monitoring capabilities, observing two dynamic phenomena in the GB power system – oscillatory behaviour and regional Rates of Change of Frequency (RoCoF)…
Future energy
Project summaryThe project aims to identify the best available meteorological data to model power systems at a range of time horizons, from two weeks ahead through to 2035.
Future energy
Project summarySignificant electrification of heating is a fundamental requirement for decarbonisation.