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Friedrich Wilhelm Fuchs
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Journal Articles
- 2023
- [j11]Sandro Guenter, Jiajun Yang, Giampaolo Buticchi, Friedrich Wilhelm Fuchs, Marco Liserre:
DC-Link Voltage Dynamics of Three-Level Four-Wire Grid-Connected Converters During Harmonics Injection Operations. IEEE Trans. Ind. Electron. 70(8): 8000-8008 (2023) - 2014
- [j10]Rafael Pena-Alzola, Marco Liserre, Frede Blaabjerg, Rafael Sebastián, Jörg Dannehl, Friedrich Wilhelm Fuchs:
Systematic Design of the Lead-Lag Network Method for Active Damping in LCL-Filter Based Three Phase Converters. IEEE Trans. Ind. Informatics 10(1): 43-52 (2014) - 2013
- [j9]Christian Wessels, Nils Hoffmann, Marta Molinas, Friedrich Wilhelm Fuchs:
StatCom control at wind farms with fixed-speed induction generators under asymmetrical grid faults. IEEE Trans. Ind. Electron. 60(7): 2864-2873 (2013) - 2011
- [j8]Jörg Dannehl, Marco Liserre, Friedrich Wilhelm Fuchs:
Filter-Based Active Damping of Voltage Source Converters With LCL Filter. IEEE Trans. Ind. Electron. 58(8): 3623-3633 (2011) - [j7]Sönke Thomsen, Nils Hoffmann, Friedrich Wilhelm Fuchs:
PI Control, PI-Based State Space Control, and Model-Based Predictive Control for Drive Systems With Elastically Coupled Loads - A Comparative Study. IEEE Trans. Ind. Electron. 58(8): 3647-3657 (2011) - 2010
- [j6]Malte Mohr, Wulf Toke Franke, Bjoern Wittig, Friedrich Wilhelm Fuchs:
Converter Systems for Fuel Cells in the Medium Power Range - A Comparative Study. IEEE Trans. Ind. Electron. 57(6): 2024-2032 (2010) - 2009
- [j5]Michael H. Bierhoff, Friedrich Wilhelm Fuchs:
Active Damping for Three-Phase PWM Rectifiers With High-Order Line-Side Filters. IEEE Trans. Ind. Electron. 56(2): 371-379 (2009) - [j4]Jörg Dannehl, Christian Wessels, Friedrich Wilhelm Fuchs:
Limitations of Voltage-Oriented PI Current Control of Grid-Connected PWM Rectifiers With LCL Filters. IEEE Trans. Ind. Electron. 56(2): 380-388 (2009) - [j3]Kai Rothenhagen, Friedrich Wilhelm Fuchs:
Doubly Fed Induction Generator Model-Based Sensor Fault Detection and Control Loop Reconfiguration. IEEE Trans. Ind. Electron. 56(10): 4229-4238 (2009) - [j2]Kai Rothenhagen, Friedrich Wilhelm Fuchs:
Current Sensor Fault Detection, Isolation, and Reconfiguration for Doubly Fed Induction Generators. IEEE Trans. Ind. Electron. 56(10): 4239-4245 (2009) - 2008
- [j1]Michael H. Bierhoff, Friedrich Wilhelm Fuchs:
DC-Link Harmonics of Three-Phase Voltage-Source Converters Influenced by the Pulsewidth-Modulation Strategy - An Analysis. IEEE Trans. Ind. Electron. 55(5): 2085-2092 (2008)
Conference and Workshop Papers
- 2016
- [c7]Lars Jessen, Zhi-Xiang Zou, Berthold Benkendorff, Marco Liserre, Friedrich Wilhelm Fuchs:
Resonance identification and damping in AC-grids by means of multi MW grid converters. IECON 2016: 3762-3768 - 2015
- [c6]Markus Andresen, Marco Liserre, Friedrich Wilhelm Fuchs, Nils Hoffmann:
Design of a grid adaptive controller for PWM converters with LCL filters. IECON 2015: 3664-3671 - [c5]Sandro Günter, Friedrich Wilhelm Fuchs:
Analytical semiconductor loss calculation of hysteresis current controlled 2-level and 3-level ANPC inverters in grid impedance measurement and active filter applications. IECON 2015: 3916-3921 - 2014
- [c4]Giusi Quartarone, Marco Liserre, Friedrich Wilhelm Fuchs, Norma Anglani, Giampaolo Buticchi:
Impact of the modularity on the efficiency of Smart Transformer solutions. IECON 2014: 1512-1518 - 2013
- [c3]Matthias Boettcher, Jan Reese, Friedrich Wilhelm Fuchs:
Reliability comparison of fault-tolerant 3L-NPC based converter topologies for application in wind turbine systems. IECON 2013: 1223-1229 - [c2]Jan Reese, Daniel Janning, Friedrich Wilhelm Fuchs:
Evaluation of harmonic compensation algorithms with parallel autonomously controlled inverters in isolated microgrids. IECON 2013: 2039-2044 - 1983
- [c1]Friedrich Wilhelm Fuchs, Johan Charles Bendien:
Simulation of Converter Fed A. C. Drives Using an Advance Frequency Domain Technique. ESC 1983: 440-445
Coauthor Index
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