Pierluigi Mancarella mainly focuses on Cogeneration, Electricity, Electric power system, Distributed generation and Flexibility. The Cogeneration study combines topics in areas such as Environmental engineering, Efficient energy use, Process engineering and Power station. His studies deal with areas such as Waste management, Industrial engineering and Dynamic pricing as well as Electricity.
His studies in Electric power system integrate themes in fields like Reliability engineering and Transmission system. His research in Distributed generation intersects with topics in Life-cycle assessment and Mathematical optimization. While the research belongs to areas of Demand response, he spends his time largely on the problem of Operations research, intersecting his research to questions surrounding Optimization problem and Component.
The scientist’s investigation covers issues in Electricity, Electric power system, Demand response, Distributed generation and Cogeneration. Pierluigi Mancarella works mostly in the field of Electricity, limiting it down to concerns involving Environmental economics and, occasionally, Photovoltaic system. His Electric power system study combines topics in areas such as Reliability engineering, Risk analysis and Renewable energy.
His study in Demand response is interdisciplinary in nature, drawing from both Business case, Simulation, Smart grid and Operations research. His Distributed generation study incorporates themes from Microgrid and Distributed computing. His work in Cogeneration addresses issues such as Process engineering, which are connected to fields such as Production.
His primary areas of study are Electric power system, Flexibility, Electricity, Renewable energy and Demand response. The concepts of his Electric power system study are interwoven with issues in Control theory, Environmental economics, Risk analysis and Resilience. His Electricity research is multidisciplinary, incorporating elements of Electric power transmission, Cryogenic energy storage, Energy storage and Process engineering.
His Renewable energy research focuses on subjects like Reliability engineering, which are linked to Pumped-storage hydroelectricity, Electric power distribution, Control reconfiguration and Network performance. Pierluigi Mancarella combines subjects such as Business case, Distributed generation, Industrial engineering and Energy management with his study of Demand response. His Virtual power plant study, which is part of a larger body of work in Distributed generation, is frequently linked to Context, bridging the gap between disciplines.
Pierluigi Mancarella focuses on Demand response, Electricity, Electric power system, Flexibility and Distributed generation. His Demand response research includes elements of Business case, Smart grid and Flow network. His Electricity research includes themes of Gas transmission, Transmission network, Boiler, Fuel efficiency and Civil engineering.
His research in Electric power system tackles topics such as Risk analysis which are related to areas like Resilience and Adaptation. The various areas that he examines in his Distributed generation study include Environmental economics and Microgrid. His biological study spans a wide range of topics, including Energy recovery and Sensible heat.
This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.
MES (multi-energy systems): An overview of concepts and evaluation models
Pierluigi Mancarella.
Energy (2014)
Distributed multi-generation: A comprehensive view
Gianfranco Chicco;Pierluigi Mancarella.
(2009)
Distributed multi-generation: A comprehensive view
Gianfranco Chicco;Pierluigi Mancarella.
(2009)
The Grid: Stronger, Bigger, Smarter?: Presenting a Conceptual Framework of Power System Resilience
Mathaios Panteli;Pierluigi Mancarella.
(2015)
The Grid: Stronger, Bigger, Smarter?: Presenting a Conceptual Framework of Power System Resilience
Mathaios Panteli;Pierluigi Mancarella.
(2015)
Influence of extreme weather and climate change on the resilience of power systems: Impacts and possible mitigation strategies
Mathaios Panteli;Pierluigi Mancarella.
(2015)
Influence of extreme weather and climate change on the resilience of power systems: Impacts and possible mitigation strategies
Mathaios Panteli;Pierluigi Mancarella.
(2015)
Modeling and Evaluating the Resilience of Critical Electrical Power Infrastructure to Extreme Weather Events
Mathaios Panteli;Pierluigi Mancarella.
(2017)
Modeling and Evaluating the Resilience of Critical Electrical Power Infrastructure to Extreme Weather Events
Mathaios Panteli;Pierluigi Mancarella.
(2017)
Integrated Modeling and Assessment of the Operational Impact of Power-to-Gas (P2G) on Electrical and Gas Transmission Networks
Stephen Clegg;Pierluigi Mancarella.
(2015)
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