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Peter Stumpf
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2020 – today
- 2024
- [j11]Miriam Münch, Ignaz Rutter, Peter Stumpf:
Partial and Simultaneous Transitive Orientations via Modular Decompositions. Algorithmica 86(4): 1263-1292 (2024) - [j10]Guido Brückner, Ignaz Rutter, Peter Stumpf:
Extending Partial Representations of Circle Graphs in Near-Linear Time. Algorithmica 86(7): 2152-2173 (2024) - [j9]Patricia Bachmann, Ignaz Rutter, Peter Stumpf:
On 3-Coloring Circle Graphs. J. Graph Algorithms Appl. 28(1): 389-402 (2024) - [c19]Simon D. Fink, Matthias Pfretzschner, Ignaz Rutter, Peter Stumpf:
Level Planarity Is More Difficult Than We Thought (Poster Abstract). GD 2024: 50:1-50:3 - [i9]Simon D. Fink, Matthias Pfretzschner, Ignaz Rutter, Peter Stumpf:
Level Planarity Is More Difficult Than We Thought. CoRR abs/2409.01727 (2024) - 2023
- [c18]Ignaz Rutter, Peter Stumpf:
Simultaneous Representation of Interval Graphs in the Sunflower Case. ESA 2023: 90:1-90:15 - [c17]Patricia Bachmann, Ignaz Rutter, Peter Stumpf:
On 3-Coloring Circle Graphs. GD (1) 2023: 152-160 - [c16]Kristóf Bándy, Peter Stumpf:
Quadratic Regression Model Based Predictive Control of PMSM Drives with Field Weakening Operation Capability Constrained to the Linear Modulation Range. ISIE 2023: 1-6 - [i8]Patricia Bachmann, Ignaz Rutter, Peter Stumpf:
On 3-Coloring Circle Graphs. CoRR abs/2309.02258 (2023) - 2022
- [j8]Guido Brückner, Ignaz Rutter, Peter Stumpf:
Level-Planarity: Transitivity vs. Even Crossings. Electron. J. Comb. 29(4) (2022) - [c15]Miriam Münch, Ignaz Rutter, Peter Stumpf:
Partial and Simultaneous Transitive Orientations via Modular Decompositions. ISAAC 2022: 51:1-51:16 - [c14]Guido Brückner, Ignaz Rutter, Peter Stumpf:
Extending Partial Representations of Circle Graphs in Near-Linear Time. MFCS 2022: 25:1-25:14 - [c13]Jirí Fiala, Ignaz Rutter, Peter Stumpf, Peter Zeman:
Extending Partial Representations of Circular-Arc Graphs. WG 2022: 230-243 - [i7]Miriam Münch, Ignaz Rutter, Peter Stumpf:
Partial and Simultaneous Transitive Orientations via Modular Decomposition. CoRR abs/2209.13175 (2022) - 2021
- [j7]Kristóf Bándy, Peter Stumpf:
Model Predictive Torque Control for Multilevel Inverter fed Induction Machines Using Sorting Networks. IEEE Access 9: 13800-13813 (2021) - [j6]János Hamar, Peter Stumpf:
New Four-Channel Resonant Boost DC/DC Converter. IEEE Access 9: 82335-82350 (2021) - [i6]Jirí Fiala, Ignaz Rutter, Peter Stumpf, Peter Zeman:
Extending Partial Representations of Circular-Arc Graphs. CoRR abs/2108.13076 (2021) - 2020
- [c12]Jonathan Klawitter, Peter Stumpf:
Drawing Tree-Based Phylogenetic Networks with Minimum Number of Crossings. GD 2020: 173-180 - [c11]Marcel Radermacher, Ignaz Rutter, Peter Stumpf:
Towards a Characterization of Stretchable Aligned Graphs. GD 2020: 295-307 - [c10]Peter Stumpf, István Bara:
Model Predictive Torque Control with Synchronized Sampling Frequency for High Frequency Induction Machine Drives. ISIE 2020: 332-338 - [i5]Marcel Radermacher, Ignaz Rutter, Peter Stumpf:
Towards a characterization of stretchable aligned graphs. CoRR abs/2008.06300 (2020) - [i4]Jonathan Klawitter, Peter Stumpf:
Drawing Tree-Based Phylogenetic Networks with Minimum Number of Crossings. CoRR abs/2008.08960 (2020)
2010 – 2019
- 2019
- [c9]Ignaz Rutter, Darren Strash, Peter Stumpf, Michael Vollmer:
Simultaneous Representation of Proper and Unit Interval Graphs. ESA 2019: 80:1-80:15 - [i3]Ignaz Rutter, Darren Strash, Peter Stumpf, Michael Vollmer:
Simultaneous Representation of Proper and Unit Interval Graphs. CoRR abs/1908.08882 (2019) - 2018
- [j5]Thomas Bläsius, Peter Stumpf, Torsten Ueckerdt:
Local and union boxicity. Discret. Math. 341(5): 1307-1315 (2018) - [c8]Guido Brückner, Ignaz Rutter, Peter Stumpf:
Level Planarity: Transitivity vs. Even Crossings. GD 2018: 39-52 - [i2]Guido Brückner, Ignaz Rutter, Peter Stumpf:
Level Planarity: Transitivity vs. Even Crossings. CoRR abs/1808.09931 (2018) - 2016
- [j4]Rafael K. Jardan, Peter Stumpf, Zoltán Varga, István Nagy:
Novel Solutions for High-Speed Self-Excited Induction Generators. IEEE Trans. Ind. Electron. 63(4): 2124-2132 (2016) - [i1]Thomas Bläsius, Peter Stumpf, Torsten Ueckerdt:
Local and Union Boxicity. CoRR abs/1609.09447 (2016) - 2015
- [c7]Rafael K. Jardan, Zoltán Varga, Peter Stumpf, István Nagy, Christian Endisch, Peter Sipos, Miklós Simon:
Development of a dedicated laboratory system for measurement of iron losses in high speed PMSM. ICIT 2015: 708-713 - 2014
- [c6]Peter Stumpf, Rafael K. Jardan, István Nagy, István Vajk:
Comparison of two sampling techniques of SVM applied in sensorless Field Oriented Controlled IM drive. ISIE 2014: 1316-1321 - 2013
- [j3]Peter Stumpf, Rafael K. Jardan, István Nagy:
Analysis of the impact of space vector modulation techniques on the operation of ultrahigh speed induction machines. Math. Comput. Simul. 90: 132-144 (2013) - [c5]Peter Stumpf, András Lörincz, István Nagy:
Analysis and compensation of oscillations in digitally controlled PFC converter. IECON 2013: 8356-8361 - [c4]Peter Stumpf, András Lorincz, István Nagy:
Stability of digitally controlled PFC boost converter with auxiliary state vector. ISIE 2013: 1-6 - 2012
- [j2]Peter Stumpf, Rafael K. Jardan, István Nagy:
Subharmonics Generated by Space Vector Modulation in Ultrahigh Speed Drives. IEEE Trans. Ind. Electron. 59(2): 1029-1037 (2012) - [c3]Peter Stumpf, Rafael K. Jardan, István Nagy:
DC components and subharmonics generated by naturally sampled PWM techniques. IECON 2012: 327-332 - [c2]Peter Stumpf, Rafael K. Jardan, István Nagy:
Comparison of Naturally Sampled PWM techniques in ultrahigh speed drives. ISIE 2012: 246-251 - 2011
- [j1]Rafael K. Jardan, Peter Stumpf, Peter Bartal, Zoltán Varga, István Nagy:
A Novel Approach in Studying the Effects of Subharmonics on Ultrahigh-Speed AC Motor Drives. IEEE Trans. Ind. Electron. 58(4): 1274-1281 (2011)
2000 – 2009
- 2009
- [c1]Peter Stumpf, Rafael K. Járdán, István Nagy:
Speed control of ultrahighspeed turbine - generator set with nonlinear control - loop applied for waste and renewable energy recovery. ECC 2009: 4193-4198
Coauthor Index
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last updated on 2024-12-10 20:49 CET by the dblp team
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