| 2025 | IECON | Characterization of Mutual Coupling for dc-biased Controllable Magnetic Devices. | Lennart Hoffman, Torbjrn Thiringer, Jens Friebe |
| 2025 | IECON | Quantification of End Turn Leakage Effects for a Double Stator Single Rotor Axial Flux Machine. | Vineetha Puttaraj, Sonja Tidblad Lundmark, Torbjrn Thiringer |
| 2023 | IECON | Maximum Torque Control Operating Points Estimation for Variable-Speed IM Applications by Parameter-Based Model. | Meng-Ju Hsieh, Torbjrn Thiringer |
| 2021 | IECON | Multiobjectively optimized PMSynRM cooling for increased vehicle efficiency. | Raik Orbay, Alexandra Tokat, Michele Becciani, Torbjrn Thiringer, Georgios Mademlis, Aditya Singh, Carl Holmberg |
| 2020 | IECON | Power Loss Analysis in a SiC/IGBT Propulsion Inverter Including Blanking Time, MOSFET's Reverse Conduction and the Effect of Thermal Feedback Using a PMSM Model. | Sepideh Amirpour, Torbjrn Thiringer, Dan Hagstedt |
| 2020 | IECON | Online and On-Board Battery Impedance Estimation of Battery Cells, Modules or Packs in a Reconfigurable Battery System or Multilevel Inverter. | Anton Kersten, Manuel Kuder, Weiji Han, Torbjrn Thiringer, Anton Lesnicar, Thomas Weyh, Richard Eckerle |
| 2020 | IECON | Sensorless Capacitor Voltage Balancing of a Grid-Tied, Single-Phase Hybrid Multilevel Converter with Asymmetric Capacitor Voltages using Dynamic Programming. | Anton Kersten, Manuel Kuder, Jose-Luis Marques-Lopez, Florian Schwitzgebel, Torbjrn Thiringer, Rainer Marquardt, Thomas Weyh, Richard Eckerle |
| 2020 | IECON | Life Cycle Cost impact of a SiC MOSFET converter used for a Wave Power Application. | Alexandra Tokat, Torbjrn Thiringer |
| 2014 | IECON | Effect of magnet coverage on torque, loss and torque ripple in a PMSM. | Poopak Roshanfekr, Sonja Lundmark, Torbjrn Thiringer, Mikael Alatalo |
| 2012 | IECON | Evaluation and comparison of a two-level and a multilevel inverter for an EV using a modulized battery topology. | Oskar Josefsson, Torbjrn Thiringer, Sonja Lundmark, Hector Zelaya |
| 2012 | IECON | Performance and loss evaluation of a hard and soft switched 2.4 MW, 4 kV to 6 kV isolated DC-DC converter for a wind energy application. | Maziar Mobarrez, Majid Fazlali, M. Amin Bahmani, Torbjrn Thiringer |