Have a personal or library account? Click to login
Computationally Efficient Model Predictive Control of Delta-Connected CHB-Based Active Power Filter Cover

Computationally Efficient Model Predictive Control of Delta-Connected CHB-Based Active Power Filter

Open Access
|Feb 2025

References

  1. Abu-Rub, H., Holtz, J., Rodriguez, J. and Baoming, G. (2010). Medium-Voltage Multilevel Converters—State of the Art, Challenges, and Requirements in Industrial Applications. IEEE Transactions on Industrial Electronics, 57(8), pp. 2581–2596. doi: 10.1109/TIE.2010.2043039
  2. Akagi, H., Aredes, M. and Watanabe, E. H. (2007). Instantaneous Power Theory and Applications to Power Conditioning. John Wiley & Sons, Inc., Hoboken, New Jersey. doi: 10.1002/0470118938
  3. Al-Gahtani, S. F., Salem, E. Z. M., Irshad, S. M. and Azazi, H. Z. (2022). Improved Instantaneous Reactive Power (PQ) Theory Based Control of DVR for Compensating Extreme Sag and Swell. IEEE Access, 10, pp. 75186–75204. doi: 10.1109/ACCESS.2022.3185662
  4. Babu, N. P., Guerrero, J. M., Siano, P., Peesapati, R. and Panda, G. (2021). An Improved Adaptive Control Strategy in Grid-Tied PV System with Active Power Filter for Power Quality Enhancement. IEEE Systems Journal, 15(2), pp. 2859–2870. doi: 10.1109/JSYST.2020.2985164
  5. Behrouzian, E. (2017). On Control of Cascaded H-Bridge Converters for STATCOM Applications. Dissertation. Chalmers University of Technology, Gothenburg, Sweden.
  6. Benhamadouche, A. D., Sahli, A., Bakhi, H., Ballouti, A. and Drif, M. (2023). Enhanced FPGA-Based Controller for Three Phase Shunt Active Power Filter. Power Electronics and Drives, 8(43), pp. 128–141. doi: 10.2478/pead-2023-0010
  7. Blahnik, V., Kosan, T., Peroutka, Z. and Talla, J. (2018). Control of a Single-Phase Cascaded H-Bridge Active Rectifier Under Unbalanced Load. IEEE Transactions on Power Electronics, 33(6), pp. 5519–5527. doi: 10.1109/TPEL.2017.2748218
  8. Chauhan, A. and Thakur, R. (2016). Power Quality Improvement using Passive & Active Filters. International Journal of Engineering Trends and Technology (IJETT), 36(3), pp. 130–136. doi: 10.14445/22315381/IJETT-V36P225
  9. Ferreira, S. C., Gonzatti, R. B., Pereira, R. R., da Silva, C. H., da Silva, L. E. B. and Lambert-Torres, G. (2018). Finite Control Set Model Predictive Control for Dynamic Reactive Power Compensation with Hybrid Active Power Filters. IEEE Transactions on Industrial Electronics, 65(3), pp. 2608–2617. doi: 10.1109/TIE.2017.2740819
  10. Gadalla, A. S., Hasabelrasul, H., Altahir, S. Y. and Yan, X. (2017). Evaluating the Capacity of Power and Energy Balance for Cascaded H-Bridge Multilevel Inverter Using Different PWM Techniques. The Journal of Engineering, 2017(13), pp. 1713–1718. doi: 10.1049/joe.2017.0624
  11. He, T., Lu, D. D.-C., Aguilera, R. P., Wu, M., Liu, Q. and Vazquez, S. (2023). Low Computational Burden Model Predictive Control for Single-Phase Cascaded H-Bridge Converters without Weighting Factor. IEEE Transactions on Industrial Electronics, 70(3), pp. 2396–2406. doi: 10.1109/tie.2022.3167133
  12. Hrbac, R., Mlcak, T. and Kolar, V. (2017). Improving Power Quality with the Use of a New Method of Serial Active Power Filter (SAPF) Control. Elektronika ir Elektrotechnika, pp. 15–20. 23(1). doi: 10.5755/j01.eie.23.1.17578
  13. Karamanakos, P., Pavlou, K. and Manias, S. (2014). An Enumeration-Based Model Predictive Control Strategy for the Cascaded H-Bridge Multilevel Rectifier. IEEE Transactions on Industrial Electronics, 61(7), pp. 3480–3489. doi: 10.1109/tie.2013.2278965
  14. Kehl, Z., Glasberger, T. and Streit, L. (2021). Design of universal H-bridge converter for cascaded multilevel topologies. In: 2021 International Conference on Applied Electronics (AE), Pilsen, Czech Republic, 2021, pp. 1–4. doi: 10.23919/AE51540.2021.9542896.
  15. Leon, J. I., Vazquez, S. and Franquelo, L. G. (2017). Multilevel Converters: Control and Modulation Techniques for Their Operation and Industrial Applications. Proceedings of the IEEE, 105(11), pp. 2066–2081. doi: 10.1109/JPROC.2017.2726583
  16. Liang, X. (2016). Emerging power quality challenges due to integration of renewable energy sources. In: IEEE Industry Applications Society Annual Meeting, Portland, OR, USA, 2016, pp. 1–9. doi: 10.1109/IAS.2016.7731973.
  17. Limongi, L. R., da Silva, Filho, L. R., Genu, L. G. B., Bradaschia, F. and Cavalcanti, M. C. (2015). Transformerless Hybrid Power Filter Based on a Six-Switch Two-Leg Inverter for Improved Harmonic Compensation Performance. IEEE Transactions on Industrial Electronics, 62(1), pp. 40–51. doi: 10.1109/TIE.2014.2327571
  18. Milanović, J. V. (2013). Economic impact of power quality disturbances on customers and utilities. In: IET Conference on Power in Unity: A Whole System Approach, London, 2013, pp. 1–37. doi: 10.1049/ic.2013.0158.
  19. Morales-Caporal, R., Bonilla-Huerta, E., Ordoñez-Flores, R. A., Valdez-Fernández, A. and Rangel-Magdaleno, J. D. J. (2024). Finite-Control-Set Model Predictive Control for Single-Phase CHB 5-Level Inverter as an Active Power Filter With Discrete-Time FO-PI DC-Link Controller. IEEE Access, 12, pp. 57478–57491. doi: 10.1109/access.2024.3391796
  20. Pereda, J. and Dixon, J. (2012). 23-Level Inverter for Electric Vehicles Using a Single Battery Pack and Series Active Filters. IEEE Transactions on Vehicular Technology, 61(3), pp. 1043–1051. doi: 10.1109/TVT.2012.2186599
  21. Po, L., Jingrui, Z., Ruiyu, L., Zheng, F. and Tianying, S. (2018). Composite Adaptive Model Predictive Control for DC-DC Boost Converters. IET Power Electronics, 11(10), pp. 1706–1717. doi: 10.1049/iet-pel.2017.0835
  22. Sanjan, P., Gowtham, N., Bhaskar, M., Subramaniam, U., Almakhles, D., Padmanaban, S. and Yamini, N. (2020). Enhancement of Power Quality in Domestic Loads Using Harmonic Filters. IEEE Access, 8, pp. 197730–197744. doi: 10.1109/ACCESS.2020.3034734
  23. Satpathy, G. and De, D. (2024). A Novel Proportional Multi-Resonant Current Controller Strategy for Reduced DC Voltage fed D-STATCOM with Internal LCL Resonance Damping. Power Electronics and Drives, 9(44), pp. 122–141. doi: 10.2478/pead-2024-0008
  24. Su, W., Lin, C. and Huang, C. (1998). Hybrid Filter Application for Power Quality Improvement. Electric Power Systems Research, 47, pp. 165–171. doi: 10.1016/S0378-7796(98)00046-7
  25. Tadayon, M., Hooshmand, R.-A., Kiyoumarsi, A. and Esfahani, M. T. (2021). Imposing Fair Penalty to the Harmonic Sources Based on the Measurement Data. IET Gener. Transm. Distrib, 15, pp. 2446–2459. doi: 10.1049/gtd2.12189
  26. Tareen, W. U. K. and Mekhielf, S. (2018). Three-Phase Transformerless Shunt Active Power Filter with Reduced Switch Count for Harmonic Compensation in Grid-Connected Applications. IEEE Transactions on Power Electronics, 33(2018), pp. 4868–4881. doi: 10.1109/TPEL.2017.2728602
  27. Teodorescu, R., Loh, P. C., Blaabjerg, F. and Liserre, M. (2006). Proportional-Resonant Controllers and Filters for Grid-Connected Voltage-Source Converters. IEE Proceedings – Electric Power Applications, 153(5), p. 750. doi: 10.1049/ipepa:20060008
  28. Ullah, I. and Ashraf, M. (2019). Sliding Mode Control for Performance Improvement of Shunt Active Power Filter. SN Appl. Sci, 1, p. 531. doi: 10.1007/s42452-019-0554-9
  29. Wodyk, S. and Iwanski, G. (2024). Decoupled Control of an Active Power Filter in a Vibrating Reference Frame. Power Electronics and Drives, 9(1), pp. 502–518. doi: 10.2478/pead-2024-0031
  30. Xiao, Q., Jia, H., Tang, Y., Jin, Y., Mu, Y., Teodorescu, R. and Blaabjerg, F. (2023). Dual-Layer Modulated Model Predictive Control Scheme for the Cascaded H-Bridge Converter. IEEE Transactions on Industrial Electronics, 70(10), pp. 9751–9763. doi: 10.1109/tie.2022.3224185
  31. Zhou, L. and Preindl, M. (2022). Optimal Tracking and Resonance Damping Design of Cascaded Modular Model Predictive Control for a Common-Mode Stabilized Grid-Tied LCL Inverter. IEEE Transactions on Power Electronics, 37(8), pp. 9226–9240. doi: 10.1109/tpel.2022.3159599
DOI: https://doi.org/10.2478/pead-2025-0005 | Journal eISSN: 2543-4292 | Journal ISSN: 2451-0262
Language: English
Page range: 74 - 95
Submitted on: Jan 3, 2025
|
Accepted on: Jan 20, 2025
|
Published on: Feb 23, 2025
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2025 Zdeněk Kehl, Tomas Glasberger, Zdeněk Peroutka, published by Wroclaw University of Science and Technology
This work is licensed under the Creative Commons Attribution 4.0 License.