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Number of items: 17.

Pels, Andreas and Sabariego, Ruth V. and Schöps, Sebastian (2019):
Efficient simulation of DC-AC power converters using multirate partial differential equations.
In: International Journal of Numerical Modelling: Electronic Networks, Devices and Fields, pp. e2683, ISSN 1099-1204, DOI: 10.1002/jnm.2683,
[Online-Edition: https://onlinelibrary.wiley.com/doi/abs/10.1002/jnm.2683],
[Article]

Pels, Andreas and De Gersem, Herbert and Sabariego, Ruth V. and Schöps, Sebastian (2019):
Multirate PWM balance method for the efficient field-circuit coupled simulation of power converters.
9, In: Journal of Mathematics in Industry, (8), Springer, pp. 1-12, ISSN 2190-5983, DOI: 10.1186/s13362-019-0065-8,
[Online-Edition: https://doi.org/10.1186/s13362-019-0065-8],
[Article]

Pels, Andreas and De Gersem, Herbert and Sabariego, Ruth V. and Schöps, Sebastian Ren, Zhuoxiang (ed.) (2019):
Efficient power converter simulation using transformed PWM basis functions with field-circuit coupling.
In: 22th Conference on the Computation of Electromagnetic Fields, Paris, France, [Online-Edition: http://www.compumag2019.com],
[Conference or Workshop Item]

Pels, Andreas and Gyselinck, Johan and Sabariego, Ruth V. and Schöps, Sebastian (2019):
Efficient simulation of DC-DC switch-mode power converters by multirate partial differential equations.
4, In: IEEE Journal on Multiscale and Multiphysics Computational Techniques, (1), pp. 64-75, ISSN 2379-8793, DOI: 10.1109/JMMCT.2018.2888900,
[Online-Edition: https://doi.org/10.1109/JMMCT.2018.2888900],
[Article]

Pels, Andreas and De Gersem, Herbert and Sabariego, Ruth V. and Schöps, Sebastian (2019):
Multirate PWM balance method for the efficient field-circuit coupled simulation of power converters.
In: Journal of Mathematics in Industry, 9, (1), Springer Open, e-ISSN 2190-5983, DOI: 10.25534/tuprints-00009671,
[Online-Edition: https://tuprints.ulb.tu-darmstadt.de/9671],
[Article]

Pels, Andreas and Sabariego, Ruth V. and Schöps, Sebastian (2018):
Efficient simulation of DC-AC converters using Multirate Partial Differential Equations.
Maxwell in Motion, In: Workshop on Advances in Electromagnetic Research — KWT 2018, Rietzlern, Austria, [Online-Edition: http://maxwell-in-motion.org],
[Conference or Workshop Item]

Pels, Andreas and Bundschuh, Jonas and Skär, Eric and De Gersem, Herbert and Sabariego, Ruth V. and Schöps, Sebastian Napieralska, Ewa and Lecointe, Jean-Philippe (eds.) (2018):
A new Basis for the Efficient Simulation of Switch-mode Power Converters Using Multirate Partial Differential Equations.
Arras, France, Poznań, PTETiS Publishers, In: XXV Symposium Electromagnetic Phenomena in Nonlinear Circuits — Proceedings EPNC 2018, Arras, France, [Online-Edition: http://epnc2018.albedo03.eu/pdf/194671.pdf],
[Conference or Workshop Item]

Pels, Andreas and Sabariego, Ruth V. and Schöps, Sebastian (2018):
On the choice of basis functions for the efficient simulation of nonlinear problems with pulsed excitation using multirate partial differential equations.
In: 11th International Symposium on Electric and Magnetic Fields (EMF 2018), [Online-Edition: http://aimontefiore.org/emf2018/],
[Conference or Workshop Item]

Pels, Andreas and Schöps, Sebastian and Sabariego, Ruth V. (2018):
Simulation of voltage regulated switch-mode power converters using multirate partial differential equations.
In: IEEE Young Researchers Symposium 2018, [Online-Edition: http://yrs2018.ulb.be],
[Conference or Workshop Item]

Pels, Andreas and Gyselinck, Johan and Sabariego, Ruth V. and Schöps, Sebastian (2018):
Solving nonlinear circuits with pulsed excitation by multirate partial differential equations.
54, In: IEEE Transactions on Magnetics, (3), ISSN 0018-9464, DOI: 10.1109/TMAG.2017.2759701,
[Online-Edition: https://doi.org/10.1109/TMAG.2017.2759701],
[Article]

Pels, Andreas and Gyselinck, Johan and Sabariego, Ruth V. and Schöps, Sebastian Slodička, Marián and Bockstal, Karel Van (eds.) (2017):
Multirate Partial Differential Equations for the solution of field-circuit coupled problems.
Ghent, Belgium, In: ACOMEN 2017, Ghent, Belgium, [Online-Edition: http://www.acomen.ugent.be],
[Conference or Workshop Item]

Pels, Andreas and Sabariego, Ruth V. and Schöps, Sebastian (2017):
Nonlinear Multirate Partial Differential Equations for Pulsed Excitations.
In: Workshop on Advances in Electromagnetic Research — KWT 2017, [Conference or Workshop Item]

Pels, Andreas and Gyselinck, Johan and Sabariego, Ruth V. and Schöps, Sebastian Jung, Hyun-Kyo (ed.) (2017):
Solving nonlinear circuits with pulsed excitation by multirate partial differential equations.
Daejeon, Korea, In: 21th Conference on the Computation of Electromagnetic Fields, Daejeon, Korea, [Online-Edition: http://www.compumag2017.com],
[Conference or Workshop Item]

Pels, Andreas and Sabariego, Ruth V. and Schöps, Sebastian (2016):
Solving Multirate Partial Differential Equations using hat Finite Element basis functions.
In: Proceedings of 17th Biennial IEEE Conference on Electromagnetic Field Computation (CEFC 2016), [Online-Edition: http://cefc2016.org],
[Conference or Workshop Item]

Pels, Andreas and Sabariego, Ruth V. and Schöps, Sebastian (2016):
Multirate Partial Differential Equations for Pulsed Excitations.
In: 11th Conference on Scientific Computing in Electrical Engineering (SCEE 2016), [Online-Edition: http://www.ricam.oeaw.ac.at/events/conferences/scee2016],
[Conference or Workshop Item]

Schöps, Sebastian and Sabariego, Ruth V. and Gyselinck, Johan Guo, Lei (ed.) (2015):
Multirate Time-Domain Simulation of Field/Circuit Coupled Pulse-Width-Modulation Controlled Devices.
Beijing, China, In: 8th International Congress on Industrial and Applied Mathematics (ICIAM 2015), Beijing, China, [Online-Edition: http://www.iciam2015.cn],
[Conference or Workshop Item]

Gyselinck, Johan and Sabariego, Ruth V. and Schöps, Sebastian (2014):
Multirate Time-Domain Basis Functions for the Simulation of Pulse-Width-Modulation Controlled Devices.
In: 16th Biennial IEEE Conference on Electromagnetic Field Computation (CEFC 2014), [Conference or Workshop Item]

This list was generated on Sat Feb 22 01:06:47 2020 CET.