The present work aims at analyzing the use of the wave resource together with solar and wind resources to supply energy to the Pantelleria public bus system, by substituting the existing Diesel buses with electric buses. Wave resource is exploited by means of the ISWEC (Inertial Sea Wave Energy Converter), a floating, all-enclosed, gyroscopic wave energy converter, deployed at full scale prototype in Pantelleria in 2015. In this paper, the efficiency of an optimal control designed earlier is studied in numerical environment, using a Matlab model and results compared with a Droop Control Method for DC Microgrids Based on Low Bandwidth Communication.
Physical Emulation for the Integration of Wave, Wind and PV Converters in a DC Microgrid. Pantelleria Island Case / Bracco, Giovanni; Pastorelli, Michele; Mattiazzo, Giuliana; Franco, Salvatore; Catalin Badarau, Alexandru; Kreindler, Liviu; Magureanu, Razvan. - ELETTRONICO. - (2018). (Intervento presentato al convegno 18th IEEE International Conference on Environment and Electrical Engineering tenutosi a Palermo (IT) nel 12th.15th-June-2018).
Physical Emulation for the Integration of Wave, Wind and PV Converters in a DC Microgrid. Pantelleria Island Case
Giovanni Bracco;Michele Pastorelli;Giuliana Mattiazzo;Salvatore Franco;
2018
Abstract
The present work aims at analyzing the use of the wave resource together with solar and wind resources to supply energy to the Pantelleria public bus system, by substituting the existing Diesel buses with electric buses. Wave resource is exploited by means of the ISWEC (Inertial Sea Wave Energy Converter), a floating, all-enclosed, gyroscopic wave energy converter, deployed at full scale prototype in Pantelleria in 2015. In this paper, the efficiency of an optimal control designed earlier is studied in numerical environment, using a Matlab model and results compared with a Droop Control Method for DC Microgrids Based on Low Bandwidth Communication.Pubblicazioni consigliate
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https://hdl.handle.net/11583/2711306
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