Validation of the Quasi-Two-Level Operation for a Flying Capacitor Converter in Medium-Voltage Applications †
Abstract
:1. Introduction
2. Fundamentals of Flying Capacitor Converter
3. Quasi-Two-Level Operation
3.1. Principle of Operation
3.2. Control Structure
3.3. Balancing Algorithm and Modulation
3.4. Reduction Opportunities for the Passive Components
4. Hardware Prototype
4.1. PEBB
4.2. Full-Scale Prototype
4.3. Test Setup
5. Measurements
5.1. Low-Voltage Measurements
5.1.1. Three-Phase Output Voltage and Output Current
5.1.2. Capacitor Voltage Balancing
5.2. Medium-Voltage Measurements
5.2.1. Maximum DC-Link Voltage
5.2.2. Higher Frequency Output
5.3. Dynamic Measurements
5.3.1. Steady-State Operation
5.3.2. Output Current Set Point Step
5.3.3. Voltage DC-Link Set Point Step
5.4. Efficiency Measurement
6. Conclusions
Author Contributions
Funding
Data Availability Statement
Acknowledgments
Conflicts of Interest
Abbreviations
AC | alternating current |
APOD | alternative phase opposition disposition |
DC | direct current |
FCC | flying capacitor converter |
Max | maximal value |
MMC | modular multilevel converter |
Mod | modulator—gate signal generation |
MOSFET | metal oxide semiconductor field-effect transistor |
Nom | nominal value |
PEBB | power electronic building block |
PD | phase disposition |
Q2O | quasi-two-level operation |
SiC | siliciumcarbid |
SoC | system on chip |
SY | balancing algorithm |
THD | total harmonic distortion |
VSC | voltage source converter |
WTHD | weight total harmonic distortion with |
capacity for Q2O | |
change of voltage | |
duty cycle of phase x | |
duty cycle of phase x of PEBB y | |
gate signal for phase x of PEBB y | |
current in stator-fixed coordinate system | |
capacitor current | |
current in rotating coordinate system | |
output current of phase x | |
N | number of output voltage levels |
conduction time of one capacitor | |
changeover time | |
modulation time | |
semiconductor switching time | |
plateau time | |
i-te plateau time | |
fixed plateau time | |
minimal plateau time | |
maximal plateau time | |
voltage in stator-fixed coordinate system | |
nominal capacitor voltage | |
actual capacitor voltage | |
permitted capacitor voltage ripple | |
converter output voltage | |
DC-link voltage | |
voltage in rotating coordinate system | |
nominal commutation voltage | |
zero voltage component |
References
- Liserre, M.; Buticchi, G.; Andresen, M.; Carne, G.D.; Costa, L.F.; Zou, Z.-X. The Smart Transformer: Impact on the Electric Grid and Technology Challenges. IEEE Ind. Electron. Mag. 2016, 10, 46–58. [Google Scholar] [CrossRef] [Green Version]
- Mersche, S.; Bernet, D.; Hiller, M. Quasi-Two-Level Flying-Capacitor-Converter for Medium Voltage Grid Applications. In Proceedings of the 2019 IEEE Energy Conversion Congress and Exposition (ECCE), Baltimore, MD, USA, 29 September–3 October 2019; pp. 3666–3673. [Google Scholar] [CrossRef] [Green Version]
- Czyz, P.; Papamanolis, P.; Guillod, T.; Krismer, F.; Kolar, J.W. New 40kV / 300kVA Quasi-2-Level Operated 5-Level Flying Capacitor SiC “Super-Switch” IPM. In Proceedings of the 2019 10th International Conference on Power Electronics and ECCE Asia (ICPE 2019—ECCE Asia), Busan, Republic of Korea, 27–31 May 2019; pp. 813–820. [Google Scholar]
- Gierschner, S.; Hein, Y.; Gierschner, M.; Sajid, A.; Eckel, H. Quasi-Two-Level Operation of a Five-Level Flying-Capacitor Converter. In Proceedings of the 2019 21st European Conference on Power Electronics and Applications (EPE ’19 ECCE Europe), Genova, Italy, 3–5 September 2019; pp. 1–9. [Google Scholar] [CrossRef]
- Tcai, A.; Wijekoon, T.; Liserre, M. Evaluation of Flying Capacitor Quasi 2-level Modulation for MV Applications. In Proceedings of the 2021 PCIM Europe Digital Days, Nuernberg, Germany, 3–7 May 2021; ISBN 978-3-8007-5515-8. [Google Scholar]
- Schweizer, M.; Soeiro, T.B. Heatsink-less Quasi 3-level flying capacitor inverter based on low voltage SMD MOSFETs. In Proceedings of the 2017 19th European Conference on Power Electronics and Applications (EPE’2017 ECCE Europe), Warsaw, Poland, 11–14 September 2017; pp. 1–10. [Google Scholar] [CrossRef]
- Kucka, J.; Mertens, A. Control for quasi-two-Level PWM Operation of Modular Multilevel Converter. In Proceedings of the 2016 IEEE 25th International Symposium on Industrial Electronics (ISIE), Santa Clara, CA, USA, 8–10 June 2016. [Google Scholar] [CrossRef]
- Mertens, A.; Kucka, J. quasi-two-Level PWM Operation of an MMC Phase Leg With Reduced Module Capacitance. IEEE Trans. Power Electron. 2016, 31, 6765–6769. [Google Scholar] [CrossRef] [Green Version]
- Gowaid, I.A.; Adam, G.P.; Massoud, A.M.; Ahmed, S.; Holliday, D.; Williams, B.W. quasi-two-Level Operation of Modular Multilevel Converter for Use in a High-Power DC Transformer With DC Fault Isolation Capability. IEEE Trans. Power Electron. 2015, 30, 108–123. [Google Scholar] [CrossRef] [Green Version]
- Adam, G.P.; Finney, S.J.; Ojo, O.; Williams, B.W. Quasi-two-level and three-level operation of a diode-clamped multilevel inverter using space vector modulation. IET Power Electron. 2012, 5, 542–551. [Google Scholar] [CrossRef]
- Mersche, S.; Katzenburg, N.; Kiehnle, P.; Schmitz-Rode, B.; Schulz, D.; Hiller, M. Comparison of Quasi-Two-Level Operation of a Flying Capacitor Converter with Quasi-Two-Level Operation of a Modular Multilevel Converter. In Proceedings of the 7th IEEE Southern Power Electronics Conference (IEEE SPEC 2022), Denarau Island, Fiji, 5–8 December 2022. [Google Scholar]
- Mersche, S.; Schreier, R.; Himmelmann, P.; Hiller, M. Medium Voltage Power Electronic Building Block for Quasi-two-level Operation of a Flying Capacitor Converter. In Proceedings of the 2021 23rd European Conference on Power Electronics and Applications (EPE’21 ECCE Europe), Virtual Conference, 6–10 September 2021; pp. 1–10. [Google Scholar]
- Mersche, S.; Bayer, M.; Rickert, K.; Hiller, M. Analysis of balancing algorithms for Quasi-Two/Three-level Single Phase Operation of a Flying Capacitor Converter. In Proceedings of the 2022 24rd European Conference on Power Electronics and Applications (EPE’22 ECCE Europe), Hanover, Germany, 5–9 September 2022. [Google Scholar]
- Mersche, S.C.; Laeske, C.; Hiller, M. Hardware Prototype for the Quasi-Two-Level Operation of a Three-phase Flying Capacitor for Medium Voltage Applications. In Proceedings of the 48th Annual Conference of the Industrial Electronics Society IECON 2022 Conference, Brussels, Belgium, 17–20 October 2022. [Google Scholar]
- Meynard, T.A.; Foch, H. Multilevel choppers for high voltage applications. EPE J. 1992, 2, 45–50. [Google Scholar] [CrossRef]
- Bertoldi, F.; Pathmanathan, M.; Kanchan, R.S.; Spiliotis, K.; Driesen, J. Quasi-Two-Level Converter for overvoltage mitigation in medium voltage drives. In Proceedings of the 2018 International Power Electronics Conference, Niigata, Japan, 20–24 May 2018. [Google Scholar] [CrossRef]
- Bertoldi, F.; Pathmanathan, M.; Kanchan, R.S. Quasi-two-level converter operation strategy for overvoltage mitigation in long cable applications. In Proceedings of the 2019 IEEE International Electric Machines and Drives Conference (IEMDC), San Diego, CA, USA, 12–15 May 2019; pp. 1621–1627. [Google Scholar] [CrossRef]
- Czyz, P.; Papamanolis, P.; Trunas Bruguera, F.; Guillod, T.; Krismer, F.; Lazarevic, V.; Huber, J.; Kolar, J.W. Load-Independent Voltage Balancing of Multi-Level Flying Capacitor Converters in Quasi-2-Level Operation. Electronics 2021, 10, 2414. [Google Scholar] [CrossRef]
- Kopacz, R.; Trochimiuk, P.; Wrona, G.; Rąbkowski, J. High-Frequency SiC-Based Medium Voltage Quasi-2-Level Flying Capacitor DC/DC Converter with Zero Voltage Switching. In Proceedings of the 2020 22nd European Conference on Power Electronics and Applications (EPE’20 ECCE Europe), Lyon, France, 7–11 September 2020. [Google Scholar] [CrossRef]
- Schmitz-Rode, B.; Stefanski, L.; Schwendemann, R.; Decker, S.; Mersche, S.; Kiehnle, P.; Himmelmann, P.; Liske, A.; Hiller, M. A modular signal processing platform for grid and motor control, HIL and PHIL applications. In Proceedings of the 2022 International Power Electronics Conference (IPEC-Himeji 2022-ECCE Asia), Himeji, Japan, 15–19 May 2022. [Google Scholar] [CrossRef]
- Habetler, T.G.; Naik, R.; Nondahl, T.A. Design and implementation of an inverter output LC filter used for dv/dt reduction. IEEE Trans. Power Electron. 2002, 17, 327–331. [Google Scholar] [CrossRef]
Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2023 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Mersche, S.C.; Schwendemann, R.; Hiller, M. Validation of the Quasi-Two-Level Operation for a Flying Capacitor Converter in Medium-Voltage Applications. Energies 2023, 16, 2797. https://doi.org/10.3390/en16062797
Mersche SC, Schwendemann R, Hiller M. Validation of the Quasi-Two-Level Operation for a Flying Capacitor Converter in Medium-Voltage Applications. Energies. 2023; 16(6):2797. https://doi.org/10.3390/en16062797
Chicago/Turabian StyleMersche, Stefan Christoph, Rüdiger Schwendemann, and Marc Hiller. 2023. "Validation of the Quasi-Two-Level Operation for a Flying Capacitor Converter in Medium-Voltage Applications" Energies 16, no. 6: 2797. https://doi.org/10.3390/en16062797
APA StyleMersche, S. C., Schwendemann, R., & Hiller, M. (2023). Validation of the Quasi-Two-Level Operation for a Flying Capacitor Converter in Medium-Voltage Applications. Energies, 16(6), 2797. https://doi.org/10.3390/en16062797