
Power and Energy Systems
About the Centre
INESC TEC’s main actor in the energy field is the Centre for Power and Energy Systems (CPES), which falls within the Cluster Energy Systems. We at CPES are internationally recognised for our expertise in the integration of renewable energy in power systems, distributed generation, storage, smart grids and areas traditionally associated with the planning and operation of power systems. The high level of expertise developed has allowed our experts at CPES to take on key roles in important EU projects as part of the successive framework programmes that led to notable scientific and technical advances with considerable impact on industry. This has led to contracts for development and consultancy with companies manufacturing equipment and with generation, transmission and distribution companies, regulators, government agencies and investors in Europe, South America, the United States of America and Africa. At CPES, we address the following main research areas: Decision Making, Optimisation and Computational Intelligence, Forecasting, Static and Dynamic analysis of Energy Grids, Reliability, Power Electronics.
Centre Areas

Operação, gestão e automatização de redes
We conduct pioneering research to design and integrate advanced computational tools for network management systems across all voltage levels. Our efforts are directed towards the development of next-generation solutions for network automation, protection, control, and digitalisation, leveraging emerging technologies in the fields of AI, Digital Twins, edge computing, and optimisation. These solutions address challenges aimed at enhancing grid performance, facilitating the integration of renewable energy, optimising EV charging infrastructures, and improving both real-time and predictive operations. We have established strong collaborations with other research entities and with the industry, being a renowned partner for providing highly specialised consultancy services and licensing software tools.

Mercados de eletricidade e regulação
The Area of Electricity Markets and Regulation focuses on understanding the dynamics of current electricity markets and price formation to support industry stakeholders and new market participants in adapting their short- and long-term strategies to improve efficiency and competitiveness. It also involves rethinking existing market structures and designing innovative frameworks to promote greater market participation and unlock the flexibility of both central and distributed resources, while ensuring their financial sustainability. Developing market models is essential for addressing market challenges, testing new market structures, and enabling continuous adaptation to evolving contexts, including local and regional market integration, power system decentralisation, varying decision timeframes, emerging resources, and new products and system services.

Sistemas de energia multivetoriais
The Multi-Energy Networks area leads the development of integrated modelling, simulation and optimisation of electricity, gas, heating/cooling and mobility systems. Our work enables holistic planning and operation of multi-vector energy networks, supporting energy transition goals. We develop advanced decision-support tools, tailored optimisation algorithms and technical-economic models for power-to-gas, power-to-heat, storage and electric mobility. Our expertise empowers retailers/aggregators, network operators and energy systems’ planners to maximise value across energy and carbon markets, ensuring smarter and more sustainable infrastructures.

Gestão da energia do lado da procura
The Demand Side Energy Management (DSEM) area at INESC TEC advances the efficient use of energy on the consumer side, focusing on innovation from early research to near-market applications (TRL 7–8). It applies work across transportation, industry, and buildings, leveraging in-house tools for energy management and interoperability. Key activities include smart home management solutions, EV smart charging strategies and mobility, supporting energy-intensive industries through digital twins, renewable energy communities’ management tools, data spaces integration, developing building energy systems integrating demand response applications, for flexible distributed energy resources, e.g., batteries and smart appliances. Collaboration with European initiatives boosts international visibility, while digitalisation, behavioural change, and legislative compliance drive impact. DSEM’s mission is to shape a more sustainable, flexible, and consumer-responsive energy system.

Integração e armazenamento de fontes de energia renovável
The RES & storage integration area activities focus on the challenges of decarbonisation through the integration of renewable energy sources on isolated and interconnected power systems. This area explores the evaluation of RES & storage integration through: power system analyses in steady-state and dynamic stability, the development of advanced control strategies to mitigate the integration impact, the development of grid-code compliance analysis, and ultimately, on the development of managing algorithms applied to energy storage and hybrid systems.

Infraestruturas de software
The Software Fabric area fosters the collaboration between researchers from informatics, computer science, and power systems to industrialise and demonstrate cutting-edge software solutions. By integrating research insights and industry practices, it accelerates the transition from academic innovation to real-world applications - enabling advanced simulations, optimisations, and the development of scalable, industry-ready tools for modern energy challenges.
Team Members
Team Leaders
Selected Publications
Security-Constrained Optimal Power Flow via Cross-Entropy Method
Carvalho, LD;Leite da Silva, AML;Miranda, V;
2018
IEEE TRANSACTIONS ON POWER SYSTEMS
Privacy-Preserving Distributed Learning for Renewable Energy Forecasting
Goncalves, C;Bessa, RJ;Pinson, P;
2021
IEEE TRANSACTIONS ON SUSTAINABLE ENERGY
Trading Small Prosumers Flexibility in the Energy and Tertiary Reserve Markets
Iria, JP;Soares, FJ;Matos, MA;
2019
IEEE TRANSACTIONS ON SMART GRID
Fault-ride-through strategies for grid-tied and grid-forming smart-transformers suited for islanding and interconnected operation
Rodrigues, J;Moreira, C;Lopes, JP;
2020
ELECTRIC POWER SYSTEMS RESEARCH
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Supervised Theses
A new approach to fault diagnosis in power converters for energy storage systems
Alexandre Miguel Marques da Silveira
D - 2019
UP-FEUP
Fault-Tolerant Control System on Cooperative Overactuated Electric Vehicle Platoon
António Manuel Figueiredo Lopes
D - 2019
UP-FEUP
Fault tolerant control with actuator failure detection for a multi motor electric vehicle
Bruno Laranjo dos Santos
D - 2019
UP-FEUP
Design and implementation of smart strategies toward enhanced energy management of buildings
Cláudia Rocha de Abreu
D - 2019
UP-FEUP
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