A review of waste heat recovery technologies for maritime applications DV Singh, E Pedersen Energy conversion and management 111, 315-328, 2016 | 412 | 2016 |
The effect of waves on engine-propeller dynamics and propulsion performance of ships B Taskar, KK Yum, S Steen, E Pedersen Ocean Engineering 122, 262-277, 2016 | 114 | 2016 |
Energy conservation and power bonds in co-simulations: non-iterative adaptive step size control and error estimation S Sadjina, LT Kyllingstad, S Skjong, E Pedersen Engineering with Computers 33, 607-620, 2017 | 91 | 2017 |
Marine vessel and power plant system simulator TI Bø, AR Dahl, TA Johansen, E Mathiesen, MR Miyazaki, E Pedersen, ... IEEE Access 3, 2065-2079, 2015 | 73 | 2015 |
Shipboard electric power conversion: System architecture, applications, control, and challenges [technology leaders] P Ghimire, D Park, MK Zadeh, J Thorstensen, E Pedersen IEEE Electrification Magazine 7 (4), 6-20, 2019 | 70 | 2019 |
Simulation of a two-stroke diesel engine for propulsion in waves KK Yum, B Taskar, E Pedersen, S Steen International Journal of Naval Architecture and Ocean Engineering 9 (4), 351-372, 2017 | 52 | 2017 |
Toward safer, smarter, and greener ships: Using hybrid marine power plants AJ Sorensen, R Skjetne, T Bo, MR Miyazaki, TA Johansen, IB Utne, ... IEEE Electrification Magazine 5 (3), 68-73, 2017 | 47 | 2017 |
Bond graph modelling of a wave energy conversion system with hydraulic power take-off A Kurniawan, E Pedersen, T Moan Renewable energy 38 (1), 234-244, 2012 | 45 | 2012 |
Virtual prototyping of maritime systems and operations: applications of distributed co-simulations S Skjong, M Rindarøy, LT Kyllingstad, V Æsøy, E Pedersen Journal of Marine Science and Technology 23 (4), 835-853, 2018 | 44 | 2018 |
Bond graph modelling of marine power systems TA Pedersen, E Pedersen Mathematical and Computer Modelling of Dynamical Systems 18 (2), 153-173, 2012 | 43 | 2012 |
Distributed co-simulation of maritime systems and operations S Sadjina, LT Kyllingstad, M Rindarøy, S Skjong, V Æsøy, E Pedersen Journal of Offshore Mechanics and Arctic Engineering 141 (1), 011302, 2019 | 40 | 2019 |
Dynamic modeling, simulation, and testing of a marine DC hybrid power system P Ghimire, M Zadeh, E Pedersen, J Thorstensen IEEE Transactions on transportation electrification 7 (2), 905-919, 2020 | 37 | 2020 |
Model-based control designs for offshore hydraulic winch systems S Skjong, E Pedersen Ocean Engineering 121, 224-238, 2016 | 37 | 2016 |
Data-driven efficiency modeling and analysis of all-electric ship powertrain: A comparison of power system architectures P Ghimire, M Zadeh, J Thorstensen, E Pedersen IEEE Transactions on Transportation Electrification 8 (2), 1930-1943, 2021 | 34 | 2021 |
Hybrid modeling of strategic loading of a marine hybrid power plant with experimental validation MR Miyazaki, AJ Sørensen, N Lefebvre, KK Yum, E Pedersen IEEE Access 4, 8793-8804, 2016 | 32 | 2016 |
Modeling of generic offshore vessel in crane operations with focus on strong rigid body connections B Rokseth, S Skjong, E Pedersen IEEE Journal of Oceanic Engineering 42 (4), 846-868, 2016 | 32 | 2016 |
Dynamic modelling of PEM fuel cell system for simulation and sizing of marine power systems KM Bagherabadi, S Skjong, E Pedersen International Journal of Hydrogen Energy 47 (40), 17699-17712, 2022 | 31 | 2022 |
Energy conservation and coupling error reduction in non-iterative co-simulations S Sadjina, E Pedersen Engineering with Computers 36, 1579-1587, 2020 | 30 | 2020 |
Nonangular MPC-based thrust allocation algorithm for marine vessels—a study of optimal thruster commands S Skjong, E Pedersen IEEE Transactions on Transportation Electrification 3 (3), 792-807, 2017 | 29 | 2017 |
Simulation of a hybrid marine propulsion system in waves S Skjong, B Taskar, E Pedersen, S Steen Proc. 28th CIMAC World Congr, 1-16, 2016 | 29 | 2016 |