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Power systems are undergoing a fundamental transition due to the rapid adoption of distributed renewable generation, the electrification of heating and transport, and the new availability of customer-level sensing, communications and control. Thomas’s research focuses on the design of control systems and markets which can manage this transition by integrating distributed flexibility at scale into power system operation and design. This is underpinned by work in systems modelling, multi-agent control, optimisation and mechanism design.
Thomas also collaborates with economists, computer scientists and social scientists to incorporate new advances from areas including game theory, machine learning and quantum computing, and to study the wider impacts and policy implications of new power system technologies.
Thomas also collaborates with economists, computer scientists and social scientists to incorporate new advances from areas including game theory, machine learning and quantum computing, and to study the wider impacts and policy implications of new power system technologies.
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Volkan Kumtepeli,Holger Hesse,Thomas Morstyn, Seyyed Mostafa Nosratabadi,Marko Aunedi,David A. Howey
arxiv(2024)
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IEEE Transactions on Power Systemsno. 99 (2024): 1-15
iScienceno. 2 (2024): 108854-108854
arxiv(2024)
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