MV

Maurizio Verga

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2 records found

Conference paper (2017) - T. I. Strasser, Cyndi Moyo, J. Merino, C. Sandroni, Maurizio Verga, Mihai Calin, A. Khavari, M. Sosnina, E. de Jong, Sebastian Rohjans, A. Kulmala, K. Mäki, Roland Bründlinger, R. Brandl, Federico Coffele, G. M. Burt, Panos Kotsampopoulos, Nikos Hatziargyriou, S Lehnhoff, M. Blank, P. Palensky, A. A. van der Meer, K. Heussen, Oliver Gehrke, J. E. Rodriguez
Renewables are key enablers in the plight to reduce greenhouse gas emissions and cope with anthropogenic global warming. The intermittent nature and limited storage capabilities of renewables culminate in new challenges that power system operators have to deal with in order to regulate power quality and ensure security of supply. At the same time, the increased availability of advanced automation and communication technologies provides new opportunities for the derivation of intelligent solutions to tackle the challenges. Previous work has shown various new methods of operating highly interconnected power grids, and their corresponding components, in a more effective way. As a consequence of these developments, the traditional power system is being transformed into a cyber-physical energy system, a smart grid. Previous and ongoing research have tended to mainly focus on how specific aspects of smart grids can be validated, but until there exists no integrated approach for the analysis and evaluation of complex cyber-physical systems configurations. This paper introduces integrated research infrastructure that provides methods and tools for validating smart grid systems in a holistic, cyber-physical manner. The corresponding concepts are currently being developed further in the European project ERIGrid. ...

An overview and discussion of different possibilities

Journal article (2016) - Thomas Strasser, Filip Pröstl Andrén, Panos Kotsampopoulos, Nikos Hatziargyriou, Gunter Arnold, Wolfram Heckmann, Erik Jong, Maurizio Verga, Giorgio Franchioni, Luciano Martini, Anna Kosek, Oliver Gehrke, Georg Lauss, Henrik Bindner, Federico Coffele, Graeme Burt, Mihai Calin, Emilio Rodriguez-Seco, Roland Bründlinger, Helfried Brunner, Cyndi Moyo, Christian Seitl, Sebastian Rohjans, Sebastian Lehnhoff, Peter Palensky
Renewable energy sources are key enablers to decrease greenhouse gas emissions and to cope with the anthropogenic global warming. Their intermittent behaviour and limited storage capabilities present challenges to power system operators in maintaining the high level of power quality and reliability. However, the increased availability of advanced automation and communication technologies has provided new intelligent solutions to face these challenges. Previous work has presented various new methods to operate highly interconnected power grids with corresponding components in a more effective way. As a consequence of these developments the traditional power system is transformed into a cyber-physical system, a smart grid.
Previous and ongoing research activities have mainly focused on validating certain aspects of smart grids, but until now no integrated approach for analysing and evaluating complex configurations in a cyber-physical systems manner is available. This paper tackles this issue and addresses system validation approaches for smart grids. Different approaches for different stages in the design, development, and roll-out phase of smart grid solutions and components are discussed. Finally, future research directions are analysed. ...