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Jonas Kristiansen Nøland
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2020 – today
- 2024
- [j12]Jonas Kristiansen Nøland, Martin Hjelmeland, Magnus Korpås:
Will Energy-Hungry AI Create a Baseload Power Demand Boom? IEEE Access 12: 110353-110360 (2024) - [j11]Jonas Kristiansen Nøland, Steinar Thorvaldsen:
The Exact Stochastic Process of the Haploid Multi-Allelic Wright-Fisher Mutation Model. IEEE ACM Trans. Comput. Biol. Bioinform. 21(1): 69-83 (2024) - [c5]Swaechchha Dahal, Gunne John Hegglid, Jonas Kristiansen Nøland, Bhupendra Bimal Chhetri, Sambeet Mishra, Thomas Øyvang:
Comparison of Metaheuristic Techniques for Optimal Power Flow in Nordic Pricing Areas. EI.A (2) 2024: 287-302 - 2023
- [j10]Eirik Kvåle Mikkelsen, Alexey Matveev, Jonas Kristiansen Nøland:
High-Speed MW-Class Generator With Multi-Lane Slotless Winding for Hybrid-Electric Aircraft. IEEE Access 11: 84759-84771 (2023) - [j9]Frederic Maurer, Trond Leiv Toftevaag, Jonas Kristiansen Nøland:
An Analytical Prediction Model of Balanced and Unbalanced Faults in Doubly Fed Induction Machines. IEEE Trans. Ind. Electron. 70(1): 189-199 (2023) - 2022
- [c4]Markus Aasen Anker, Jonas Kristiansen Nøland:
Preliminary Sizing of a Battery-Powered All-Electric Propulsion System for Regional Aircraft. IECON 2022: 1-6 - [c3]Håkon Broch, Jonas Kristiansen Nøland, Andrea F. Bocchese:
Retrofit Design Space Investigation of Permanent Magnet Propulsion Motors for Electrified Turboprop Regional Aircraft. IECON 2022: 1-6 - [d1]Jonas Kristiansen Noland:
Average-Value Modeling of Dual-Control High-Speed Response Brushless Exciters for Synchronous Generators. IEEE DataPort, 2022 - 2021
- [j8]Jonas Kristiansen Nøland:
Prospects and Challenges of the Hyperloop Transportation System: A Systematic Technology Review. IEEE Access 9: 28439-28458 (2021) - [j7]Matteo Leandro, Jonas Kristiansen Nøland:
An Approach for Optimal Pre-Conditioning of the Analytical Field Solution of Slotless PM Machines. IEEE Access 9: 36748-36765 (2021) - 2020
- [j6]Jonas Kristiansen Nøland, Matteo Leandro, Jon Are Suul, Marta Molinas:
High-Power Machines and Starter-Generator Topologies for More Electric Aircraft: A Technology Outlook. IEEE Access 8: 130104-130123 (2020) - [j5]Jonas Kristiansen Nøland, Erick Fernando Alves, Atila Pardini, Urban Lundin:
Unified Reduced Model for a Dual-Control Scheme of the High-Speed Response Brushless Excitation System of Synchronous Generators. IEEE Trans. Ind. Electron. 67(6): 4474-4484 (2020)
2010 – 2019
- 2019
- [j4]Jonas Kristiansen Nøland, Stefano Nuzzo, Alberto Tessarolo, Erick Fernando Alves:
Excitation System Technologies for Wound-Field Synchronous Machines: Survey of Solutions and Evolving Trends. IEEE Access 7: 109699-109718 (2019) - [j3]Jonas Kristiansen Noland, Fredrik Evestedt, Urban Lundin:
Failure Modes Demonstration and Redundant Postfault Operation of Rotating Thyristor Rectifiers on Brushless Dual-Star Exciters. IEEE Trans. Ind. Electron. 66(2): 842-851 (2019) - [j2]Thomas Oyvang, Jonas Kristiansen Noland, Gunne John Hegglid, Bernt Lie:
Online Model-Based Thermal Prediction for Flexible Control of an Air-Cooled Hydrogenerator. IEEE Trans. Ind. Electron. 66(8): 6311-6320 (2019) - [c2]Jonas Kristiansen Nøland, Matteo Leandro, Jon Are Suul, Marta Molinas, Robert Nilssen:
Electrical Machines and Power Electronics For Starter-Generators in More Electric Aircrafts: A Technology Review. IECON 2019: 6994-7001 - 2018
- [j1]Jonas Kristiansen Noland, Fredrik Evestedt, J. Jose Perez-Loya, Johan Abrahamsson, Urban Lundin:
Comparison of Thyristor Rectifier Configurations for a Six-Phase Rotating Brushless Outer Pole PM Exciter. IEEE Trans. Ind. Electron. 65(2): 968-976 (2018) - 2016
- [c1]Jonas Kristiansen Noland, Fredrik Evestedt, J. Jose Perez-Loya, Johan Abrahamsson, Urban Lundin:
Evaluation of different power electronic interfaces for control of a rotating brushless PM exciter. IECON 2016: 1924-1929
Coauthor Index
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