Project Results
CORDIS provides links to public deliverables and publications of HORIZON projects.
Links to deliverables and publications from FP7 projects, as well as links to some specific result types such as dataset and software, are dynamically retrieved from OpenAIRE .
Deliverables
Updated version of the deliverable submitted at M15 with added the description of the converter models and simulation procedures for the assessment of the impact of energy storage on vessels' performance.
Preliminary assessment of ESS (opens in new window)The deliverable will present results summarizing the activities in the task 1and will provide a preliminary assessment of the potential benefits of combined storage systems for selected use cases especially in terms of lifetime for the components, energy efficiency and lower emissions . The results will be based on numerical simulations only and will account for realistic operating conditions for the vessels in terms of routes, load cycles, weather. However, the electrical model will be simplified (e.g. no electromagnetic transients) and practical considerations on placement on the ship or regulatory aspects will not be accounted. Results are supposed to define the relevant scenarios to further analyse in the project.
Dissemination, Exploitation, and Communication Plan, IPR management - update (opens in new window)Updated version of the deliverable submitted at M6. The list of IP generated will be updated and the industrial business plan reviewed.
Rules gap analysis (opens in new window)Rules gap analysis report includes an overview about the current applicable regulations and requirements for ESS system in order to identify possible gaps or inconsistency with the ESS system design subject of the research project. All relevant regulations will be listed establishing also the goal and functional requirements relevant to the ESS system. The need of perspective technical requirements will be also dealt in the report.
LCA methodology and assessment for on board ESS - update (opens in new window)Updated version of the deliverable submitted at M7 with the results of the assessment. The deliverable presents the evaluation of the environmental impact of the combined storage units in terms of carbon footprint and other indicators comparing them with the traditional solution based only on batteries.
Dissemination, Exploitation, and Communication Plan, IPR management (opens in new window)The report details the Dissemination, Exploitation, and Communication Plan, the management of IPR developed during the project. The deliverable will include the criteria to decide the ownership of the IP and the use by the project partners. Also the industrial business plan will be outlined.
Market readiness level of different storage solutions and the next steps to increase the TRL (opens in new window)An in-depth analysis of the readiness level of the supply chains, production processes and product specifications of SMES and supercapacitors has been carried out. Based on this analysis a roadmap for increasing the TRL and for a Go-to-Market-Strategy of the different high-power energy storage technologies can be derived.
Review of the storage technologies (opens in new window)The report contains a detailed review of the available energy storage technologies and relevant marine applications. The analysis will include a comparative analysis between energy storage and their suitability for the marine application. The report will also describe the criteria for the selection of appropriate case studies to be analysed in more depth and will include a detailed description of at least two case studied of interest for the project.
Design tools including power systems models, chosen architectures, protection systems and converters models and simulation procedures (opens in new window)The deliverable will present the design guidelines to define a DC shipboard power system on which test the innovative ESSs. As the test is case depending, thus important efforts will be spent in defining system architecture, as well as protections and power converters (DC-DC or AC-DC). A convenient procedure will be adopted to simulate the designed grid.
LCA methodology and assessment for on board ESS (opens in new window)LCA methodology for on board energy storage systems. The deliverable presents the methodological elements for carrying out the LCA of the identified energy storage solutions, based on a literature review.
Design tools including power systems models, chosen architectures, protection systems and converters models and simulation procedures - update (opens in new window)Updated version of the deliverable submitted at M6 with added description on the protection systems needed in the vessel's microgrid.
Market readiness level of different storage solutions and the next steps to increase the TRL - update (opens in new window)Updated version of the deliverable submitted at M24. The report will be updated with interface requirements for integrating SMES and supercapacitors into the vessel types identified in WP1. Results from T5.1 will be considered when the requirements are set.
Dissemination, Exploitation, and Communication Plan, IPR management - second update (opens in new window)Updated version of the deliverable submitted at M18. The list of IP generated will be updated and the industrial business plan reviewed.
A report containing the detailed plan to handle the existing data and the new data generated during the life of the project. The plan will describe how data will be accessible by third parties to respect the open science commitment described in the action.
The handbook will include guidelines for the practical aspects of using innovative storage devices, including installation and maintenance. It will also provide the essential knowledge on the technologies for trainees and students who wish to study electrification systems for vessels.
Roadmap for integrating new storage units onboard electric vessels (opens in new window)A roadmap for integrating the SMES and supercapacitors for the vessel types identified in WP1 will be provided. The roadmap will take into account the TRL level of these technologies and the regulatory gaps identified.
Publications
Author(s):
Andrea Alessia Tavagnutti, Daniele Bosich, Andrea Vicenzutti, Valentino Pediroda, Giorgio Sulligoi
Published in:
2023 IEEE Electric Ship Technologies Symposium (ESTS), 2023
Publisher:
IEEE
DOI:
10.1109/ESTS56571.2023.10220500
Author(s):
Faysal Hardan Pietro Tricoli
Published in:
2023 International Conference on Clean Electrical Power (ICCEP), 2023, ISSN 2474-9664
Publisher:
IEEE
DOI:
10.1109/ICCEP57914.2023.10247426
Author(s):
Andrea Vicenzutti, Luca Braidotti, Samuele Utzeri, Vittorio Bucci, Giorgio Sulligoi
Published in:
2024 IEEE International Conference on Electrical Systems for Aircraft, Railway, Ship Propulsion and Road Vehicles & International Transportation Electrification Conference (ESARS-ITEC), 2025
Publisher:
IEEE
DOI:
10.1109/ESARS-ITEC60450.2024.10819905
Author(s):
Luca Braidotti, Andrea Vicenzutti, Daniele Bosich, Vittorio Bucci, Giorgio Sulligoi, Giorgio Trincas
Published in:
2023 IEEE Electric Ship Technologies Symposium (ESTS), Issue 1, 2023, ISSN 2768-3508
Publisher:
IEEE
DOI:
10.1109/ESTS56571.2023.10220489
Author(s):
Andrea Vicenzutti, Luca Braidotti, Davide Zito Vitale, Nicola Norcia, Paolo Borghese, Michele Giannella, Vittorio Bucci, Giorgio Sulligoi
Published in:
2025 IEEE Electric Ship Technologies Symposium (ESTS), 2025
Publisher:
IEEE
DOI:
10.1109/ESTS62818.2025.11152455
Author(s):
Andrea Alessia Tavagnutti, Daniele Bosich, Marco Dalle Feste, Giorgio Sulligoi
Published in:
2025 IEEE Electric Ship Technologies Symposium (ESTS), 2025
Publisher:
IEEE
DOI:
10.1109/ESTS62818.2025.11152477
Author(s):
Andrea Alessia Tavagnutti, Massimiliano Chiandone, Daniele Bosich, Giorgio Sulligoi
Published in:
2023 IEEE Electric Ship Technologies Symposium (ESTS), Issue 20, 2023
Publisher:
IEEE
DOI:
10.1109/ESTS56571.2023.10220502
Author(s):
Mohammad Meraj, Rene Barrera-Cardenas, Salvatore D'Arco, Pietro Tricoli
Published in:
2025 IEEE Electric Ship Technologies Symposium (ESTS), 2025
Publisher:
IEEE
DOI:
10.1109/ESTS62818.2025.11152409
Author(s):
Andrea Vicenzutti, Daniele Bosich, Jacob Gudex, Robert Cuzner, Giorgio Sulligoi
Published in:
2025 IEEE Electric Ship Technologies Symposium (ESTS), 2025
Publisher:
IEEE
DOI:
10.1109/ESTS62818.2025.11152480
Author(s):
Rene A. Barrera-Cardenas, Pietro Tricoli, Luigi Piegari, Salvatore D’Arco
Published in:
IECON 2025 – 51st Annual Conference of the IEEE Industrial Electronics Society, 2025
Publisher:
IEEE
DOI:
10.1109/IECON58223.2025.11221619
Author(s):
F. D'Agostino, F. Silvestro, F. Sivori, A. Fidigatti, E. Ragaini
Published in:
2023 IEEE International Conference on Electrical Systems for Aircraft, Railway, Ship Propulsion and Road Vehicles & International Transportation Electrification Conference (ESARS-ITEC), 2023
Publisher:
IEEE
DOI:
10.1109/ESARS-ITEC57127.2023.10114903
Author(s):
Marzio Barresi, Davide De Simone, Edoardo Ferri, Luigi Piegari
Published in:
2025 IEEE Seventh International Conference on DC Microgrids (ICDCM), 2025
Publisher:
IEEE
DOI:
10.1109/ICDCM63994.2025.11144675
Author(s):
Andrea Alessia Tavagnutti, Daniele Bosich, Giorgio Sulligoi
Published in:
2024 IEEE International Conference on Electrical Systems for Aircraft, Railway, Ship Propulsion and Road Vehicles & International Transportation Electrification Conference (ESARS-ITEC), 2025
Publisher:
IEEE
DOI:
10.1109/ESARS-ITEC60450.2024.10819866
Author(s):
Faysal Hardan Pietro Tricoli
Published in:
2023 IEEE International Conference on Electrical Systems for Aircraft, Railway, Ship Propulsion and Road Vehicles & International Transportation Electrification Conference (ESARS-ITEC), 2023
Publisher:
IEEE
DOI:
10.1109/ESARS-ITEC57127.2023.10114864
Author(s):
F. D'Agostin F. Silvestro F. Sivori
Published in:
2023 IEEE Electric Ship Technologies Symposium (ESTS), 2023
Publisher:
IEEE
DOI:
10.1109/ESTS56571.2023.10220498
Author(s):
Giorgio Trincas, Luca Braidotti, Andrea Vicenzutti, Andrea Alessia Tavagnutti, Chathan M. Cooke, Julie Chalfant, Vittorio Bucci, Chryssostomos Chryssostomidis, Giorgio Sulligoi
Published in:
International Marine Design Conference, 2024, ISSN 3050-4864
Publisher:
TU Delft OPEN Publishing
DOI:
10.59490/IMDC.2024.753
Author(s):
Giorgio Trincas, Luca Braidotti, Andrea Vicenzutti, Andrea Alessia Tavagnutti, Chathan M. Cooke, Julie Chalfant, Vittorio Bucci, Chryssostomos Chryssostomidis, Giorgio Sulligoi
Published in:
International Marine Design Conference, 2026, ISSN 3050-4864
Publisher:
TU Delft OPEN Publishing
DOI:
10.59490/IMDC.2024.753
Author(s):
Matteo Tropeano, Luca Soldati, Alberto Ansaldo, Christian-Eric Bruzek, Giovanni Grasso, Paola Mauceri, Fabrizio Mazzei, Simone Pasini, Tiziana Spina, Riccardo Tebano, Andrea Tumino
Published in:
IEEE Transactions on Applied Superconductivity, Issue 35, 2024, ISSN 1051-8223
Publisher:
Institute of Electrical and Electronics Engineers (IEEE)
DOI:
10.1109/TASC.2024.3499965
Author(s):
Faysal Hardan, Pietro Tricoli
Published in:
IEEE Transactions on Transportation Electrification, Issue 10, 2023, ISSN 2332-7782
Publisher:
Institute of Electrical and Electronics Engineers (IEEE)
DOI:
10.1109/TTE.2023.3326355
Author(s):
Marzio Barresi, Davide De Simone, Edoardo Ferri, Luigi Piegari
Published in:
Energies, Issue 18, 2025, ISSN 1996-1073
Publisher:
MDPI AG
DOI:
10.3390/EN18154096
Author(s):
Rene A. Barrera‐Cardenas, Salvatore D'Arco, Luigi Piegari, Pietro Tricoli
Published in:
IET Power Electronics, Issue 18, 2026, ISSN 1755-4535
Publisher:
Institution of Engineering and Technology (IET)
DOI:
10.1049/PEL2.70027
Author(s):
Andrea Alessia Tavagnutti, Daniele Bosich, Massimiliano Chiandone, Andrea Vicenzutti, Giorgio Sulligoi
Published in:
IEEE Access, Issue 12, 2024, ISSN 2169-3536
Publisher:
Institute of Electrical and Electronics Engineers (IEEE)
DOI:
10.1109/ACCESS.2024.3492161
Searching for OpenAIRE data...
There was an error trying to search data from OpenAIRE
No results available