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All the models are solved using a 2D vector potential formulation, coupled with circuit equations if necessary. Motion is solved with the moving band technique, except for `t30.pro` which can also be solved using a velocity term.
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== References ==
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## References
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* [1] M. V. Ferreira da Luz, P. Dular, N. Sadowski, C. Geuzaine, and J. P. A. Bastos, [Analysis of a permanent magnet generator with dual formulations using periodicity conditions and moving band](http://orbi.ulg.ac.be/handle/2268/22771), IEEE Trans. Mag., 38(2):961-964, 2002.
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1. M. V. Ferreira da Luz, P. Dular, N. Sadowski, C. Geuzaine, and J. P. A. Bastos, [Analysis of a permanent magnet generator with dual formulations using periodicity conditions and moving band](http://orbi.ulg.ac.be/handle/2268/22771), IEEE Trans. Mag., 38(2):961-964, 2002.
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* [2] Gyselinck, N. Sadowski, P. Dular, M. V. Ferreira da Luz, J. P. A. Bastos, and W. Legros, [Harmonic balance finite element modelling of a permanent-magnet synchronous machine](http://hdl.handle.net/2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/73090), Proceedings of the V Brazilian Conference on Electromagnetics (CBMag2002), 4-6 November 2002, Gramado, Brazil, 4 p.
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2. Gyselinck, N. Sadowski, P. Dular, M. V. Ferreira da Luz, J. P. A. Bastos, and W. Legros, [Harmonic balance finite element modelling of a permanent-magnet synchronous machine](http://hdl.handle.net/2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/73090), Proceedings of the V Brazilian Conference on Electromagnetics (CBMag2002), 4-6 November 2002, Gramado, Brazil, 4 p.
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* [3] Gyselinck, P. Dular, L. Vandevelde and J. Melkebeek, A.M. Oliveira and P. Kuo-Peng, [Two-dimensional harmonic balance finite element modelling of electrical machines taking motion into account](http://hdl.handle.net/2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/72981), COMPEL: The International Journal for Computation and Mathematics in Electrical and Electronic Engineering, 22(4):1021-1036, 2003.</ref>
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3. Gyselinck, P. Dular, L. Vandevelde and J. Melkebeek, A.M. Oliveira and P. Kuo-Peng, [Two-dimensional harmonic balance finite element modelling of electrical machines taking motion into account](http://hdl.handle.net/2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/72981), COMPEL: The International Journal for Computation and Mathematics in Electrical and Electronic Engineering, 22(4):1021-1036, 2003.</ref>
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* [4] E. A. Lomonova, E. Kazmin, Y. Tang, J. J. H. Paulides, [In-wheel PM motor: Compromise between high power density and extended speed capability](http://www.emeraldinsight.com/journals.htm?articleid=1906093), COMPEL: The International Journal for Computation and Mathematics in Electrical and Electronic Engineering, 30(1):98-116, 2011.
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4. E. A. Lomonova, E. Kazmin, Y. Tang, J. J. H. Paulides, [In-wheel PM motor: Compromise between high power density and extended speed capability](http://www.emeraldinsight.com/journals.htm?articleid=1906093), COMPEL: The International Journal for Computation and Mathematics in Electrical and Electronic Engineering, 30(1):98-116, 2011.
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* [5] J. Gyselinck, L. Vandevelde, J. Melkebeek, W. Legros, [Steady-state finite element analysis of a salient-pole synchronous machine in the frequency domain](http://hdl.handle.net/2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/73097), Proceedings the 7th International Conference on Modeling and Simulation of Electric Machines, Converters and Systems (ELECTRIMACS2002), August 18-21, Montréal, Canada, 6 p.
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5. J. Gyselinck, L. Vandevelde, J. Melkebeek, W. Legros, [Steady-state finite element analysis of a salient-pole synchronous machine in the frequency domain](http://hdl.handle.net/2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/73097), Proceedings the 7th International Conference on Modeling and Simulation of Electric Machines, Converters and Systems (ELECTRIMACS2002), August 18-21, Montréal, Canada, 6 p.
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* [6] [International TEAM Workshop Problem 30a - Induction Motor Analyses](http://www.compumag.org/jsite/team.html), Kent Davey
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6. [International TEAM Workshop Problem 30a - Induction Motor Analyses](http://www.compumag.org/jsite/team.html), Kent Davey
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* [7] [TEAM Workshop Problem 30a – Three-phase induction motor problem](http://www.infolytica.com/en/applications/ex0035), Infolytica gallery
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7. [TEAM Workshop Problem 30a – Three-phase induction motor problem](http://www.infolytica.com/en/applications/ex0035), Infolytica gallery
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* [8] J. Gyselinck, Twee dimensionale dynamische eindige-elementenmodellering van statische en roterende elektromagnetische energieomzetters,
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8. J. Gyselinck, Twee dimensionale dynamische eindige-elementenmodellering van statische en roterende elektromagnetische energieomzetters,
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Ph.D. Thesis, Universiteit Gent, 2000.
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* [9] J. Gyselinck, L. Vandevelde, J. Melkebeek, [Multi-slice modeling of electrical machines with skewed slots - The skew discretization error](http://hdl.handle.net/2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/72985), IEEE Trans. Magn., 37(5):3233–3237, 2002.
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9. J. Gyselinck, L. Vandevelde, J. Melkebeek, [Multi-slice modeling of electrical machines with skewed slots - The skew discretization error](http://hdl.handle.net/2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/72985), IEEE Trans. Magn., 37(5):3233–3237, 2002.
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* [10] J. Gyselinck, L. Vandevelde, P. Dular, C. Geuzaine, W. Legros, [A general method for the frequency domain FE modelling of rotating electromagnetic devices](http://hdl.handle.net/2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/72982), IEEE Trans. Magn., 39(3):1147-1150, 2003.
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10. J. Gyselinck, L. Vandevelde, P. Dular, C. Geuzaine, W. Legros, [A general method for the frequency domain FE modelling of rotating electromagnetic devices](http://hdl.handle.net/2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/72982), IEEE Trans. Magn., 39(3):1147-1150, 2003.
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* [11] S. Guérard, J. Gyselinck, and J. Lecomte-Beckers, [Finite element modelling of an asynchronous motor with one broken rotor bar, comparison with the data recorded on a prototype and material aspects](http://hdl.handle.net/2268/38463), Bulletin Scientifique de l'AIM, 1:13-22, 2005. Prix Melchior Salier 2004 du meilleur travail de fin d'études section électromécanique-énergétique.
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11. S. Guérard, J. Gyselinck, and J. Lecomte-Beckers, [Finite element modelling of an asynchronous motor with one broken rotor bar, comparison with the data recorded on a prototype and material aspects](http://hdl.handle.net/2268/38463), Bulletin Scientifique de l'AIM, 1:13-22, 2005. Prix Melchior Salier 2004 du meilleur travail de fin d'études section électromécanique-énergétique.
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* [12] J. Gyselinck, C. Geuzaine, R. V. Sabariego, [Considering laminated cores and eddy currents in 2D and 3D finite element simulation of electrical machines](http://orbi.ulg.ac.be/handle/2268/92146), In Proceedings of the 18th Conference on the Computation of Electromagnetic Fields (COMPUMAG2011), Sydney, Australia, July 12–15, 2011.
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12. J. Gyselinck, C. Geuzaine, R. V. Sabariego, [Considering laminated cores and eddy currents in 2D and 3D finite element simulation of electrical machines](http://orbi.ulg.ac.be/handle/2268/92146), In Proceedings of the 18th Conference on the Computation of Electromagnetic Fields (COMPUMAG2011), Sydney, Australia, July 12–15, 2011.
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* [13] J. Gyselinck, C. Geuzaine, R. V. Sabariego, [Homogenisation of windings and laminations in time-domain finite-element modeling of electrical machines](http://orbi.ulg.ac.be/handle/2268/133171), In Proceedings of the 15th Biennial IEEE Conference on Electromagnetic Field Computation (CEFC2012), Oita, Japan, November 11– 14, 2012.
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13. J. Gyselinck, C. Geuzaine, R. V. Sabariego, [Homogenisation of windings and laminations in time-domain finite-element modeling of electrical machines](http://orbi.ulg.ac.be/handle/2268/133171), In Proceedings of the 15th Biennial IEEE Conference on Electromagnetic Field Computation (CEFC2012), Oita, Japan, November 11– 14, 2012.
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