Have a personal or library account? Click to login
Performance Evaluation of BB-QZSI-Based DSTATCOMUnder Dynamic Load Condition Cover

Performance Evaluation of BB-QZSI-Based DSTATCOMUnder Dynamic Load Condition

Open Access
|Mar 2022

References

  1. Battiston, A., Miliani, E. -H., Pierfederici, S. and Meibody-Tabar, F. (2016). Efficiency Improvement of a Quasi-Z-Source Inverter-Fed Permanent-Magnet Synchronous Machine-Based Electric Vehicle. IEEE Transactions on Transportation Electrification, 2(1), pp. 14–23, doi: 10.1109/TTE.2016.2519349.10.1109/TTE.2016.2519349
  2. Bayhan, S., Abu-Rub, H. and Balog, R. S. (2016). Model Predictive Control of Quasi-Z-Source Four-Leg Inverter. IEEE Transactions on Industrial Electronics, 63(7), pp. 4506–4516, doi: 10.1109/TIE.2016.2535981.10.1109/TIE.2016.2535981
  3. Bayu A. (2020). Power Quality Enhancement Using DSTATCOM in Industry Plants. Power Electronics and Drives, 5(40), pp. 157–175, doi:10.2478/pead-2020-0012.10.2478/pead-2020-0012
  4. Car, M., Lešić, V. and Vašak, M. (2021). Cascaded Control of Back-to-Back Converter DC Link Voltage Robust to Grid Parameters Variation. IEEE Transactions on Industrial Electronics, 68(3), pp. 1994–2004.10.1109/TIE.2020.2972467
  5. Chauhan, A. K., Raghuram, M. and Singh, S. K. (2018). Nonzero Discontinuous Inductor Current Mode in Certain Z-Source Converters. IEEE Transactions on Power Electronics, 33(4), pp. 2809–2814, doi: 10.1109/TPEL.2017.2754296.10.1109/TPEL.2017.2754296
  6. Friedli, T., Kolar, J. W., Rodriguez, J. and Wheeler, P. W. (2012). Comparative Evaluation of Three-Phase AC–AC Matrix Converter and Voltage DC-link Back-to-Back Converter Systems. IEEE Transactions on Industrial Electronics, 59(12), pp. 4487–4510.10.1109/TIE.2011.2179278
  7. Gu, Y., Chen, Y. and Zhang, B. (2018). Enhanced-Boost Quasi-Z-Source Inverter With an Active Switched Z-Network. IEEE Transactions on Industrial Electronics, 65(10), pp. 8372–8381, doi: 10.1109/TIE.2017.2786214.10.1109/TIE.2017.2786214
  8. Li, T. and Cheng, Q. (2018). A Comparative Study of Z-Source Inverter and Enhanced Topologies. CES Transactions on Electrical Machines and Systems, 2(3), pp. 284–288, doi: 10.30941/CESTEMS.2018.00035.10.30941/CESTEMS.2018.00035
  9. Mahato, B., Majumdar, S., Paul, S., Pal, P. K. and Jana, K. C. (2020). A New and Modular Back-to-Back Connected T-Type Inverter for Minimum Number of Power Devices, TSV, and Cost Factor. IETE Technical Review, pp. 1–8, doi: 10.1080/02564602.2020.1860838.10.1080/02564602.2020.1860838
  10. Mangaraj, M. and Sabat, J. (2020a). Two and Three-level Supported DSTATCOM Topologies for Compensation Analysis. 2020 International Conference on Computational Intelligence for Smart Power System and Sustainable Energy (CISPSSE), pp. 1–6, doi: 10.1109/CISPSSE49931.2020.9212219.10.1109/CISPSSE49931.2020.9212219
  11. Mangaraj, M. and Sabat, J.(2020b). Comparative Analysis of Both Three & Fifth Level Based DSTATCOM Using IcosΘ Technique. 2020 International Conference on Computational Intelligence for Smart Power System and Sustainable Energy (CISPSSE), pp. 1–6, doi: 10.1109/CISPSSE49931.2020.9212272.10.1109/CISPSSE49931.2020.9212272
  12. Mangaraj, M. and Sabat, J. (2021). Analysis and Control Design of Different Level VSI Based DSTATCOM. In: 2021 1st International Conference on Power Electronics and Energy (ICPEE), pp. 1–5, doi: 10.1109/ICPEE50452.2021.9358584.10.1109/ICPEE50452.2021.9358584
  13. Mangaraj, M. and Sabat, J. (2021). MVSI and AVSI-supported DSTATCOM for PQ Analysis. IETE Journal of Research, pp. 1–7, doi: 10.1080/03772063.2021.1920850.10.1080/03772063.2021.1920850
  14. Mangaraj, M., Naidu, V. D., Priyanka, K. and Sabat, J. (2020). Comparative Analysis between Inductor Coupled T Type Split and Self Supported Capacitor Based DSTATCOM. 2020 IEEE International Symposium on Sustainable Energy, Signal Processing and Cyber Security (iSSSC), 2020, pp. 1–5, doi: 10.1109/iSSSC50941.2020.9358812.10.1109/iSSSC50941.2020.9358812
  15. Mohammadi, M., Moghani, J. S. and Milimonfared, J. (2018). A Novel Dual Switching Frequency Modulation for Z-Source and Quasi-Z-Source Inverters. IEEE Transactions on Industrial Electronics, 65(6), pp. 5167–5176, doi: 10.1109/TIE.2017.2784346.10.1109/TIE.2017.2784346
  16. Patel, K. S. and Makwana, V. H. (2021). Modified Control Technique of DFIG for Power Quality Improvement. IETE Journal of Education, 62(1), pp. 44–54, doi: 10.1080/09747338.2021.1930591.10.1080/09747338.2021.1930591
  17. Ray, S., Gupta, N. and Gupta, R. A. (2017). A Comprehensive Review on Cascaded H-bridge Inverter-Based Large-Scale Grid-Connected Photovoltaic. IETE Technical Review, 34(5), pp. 463–477, doi: 10.1080/02564602.2016.1202792.10.1080/02564602.2016.1202792
  18. Reddivari, R. and Jena, D. (2021). A Correlatives Investigation of Impedance Source Network: A Comprehensive Review. IETE Technical Review, pp. 1–34, doi: 10.1080/02564602.2020.1870006.10.1080/02564602.2020.1870006
  19. Roomi, MM. (2019). An Overview of Carrier-based Modulation Methods for Z-Source Inverter. Power Electronics and Drives, 4(39), pp. 15–31. doi:10.2478/pead-2019-0007.10.2478/pead-2019-0007
  20. Sabat, J. and Mangaraj, M. (2021). GLMS Control Strategy Based DSTATCOM for PQ Enhancement, Modeling and Comparative Analysis. Energy System, pp. 1–20, doi: 10.1007/s12667-021-00489-x.10.1007/s12667-021-00489-x
  21. Singh, B. and Bhuvaneswari, G. (2020). A High-Performance Microgrid With a Mechanical SensorlessSynRG Operated Wind Energy Generating System. IEEE Transactions on Industrial Informatics, 16(12), pp. 7349–7359, doi: 10.1109/TII.2020.2976906.10.1109/TII.2020.2976906
  22. Tang, C. Y., Chen, Y. F., Chen, Y. M. and Chang, Y. R. (2015).DC-link Voltage Control Strategy for Three-Phase Back-to-Back Active Power Conditioners. IEEE Transactions on Industrial Electronics, 62(10), pp. 6306–6316.10.1109/TIE.2015.2420671
  23. Zhou, D., Zhao, J. and Liu, Y. (2016). Independent Control Scheme for Nonredundant Two-Leg Fault-Tolerant Back-to-Back Converter-Fed Induction Motor Drives. IEEE Transactions on Industrial Electronics, 63(11), pp. 6790–6800.10.1109/TIE.2016.2581761
DOI: https://doi.org/10.2478/pead-2022-0004 | Journal eISSN: 2543-4292 | Journal ISSN: 2451-0262
Language: English
Page range: 43 - 55
Submitted on: Jan 21, 2022
Accepted on: Mar 9, 2022
Published on: Mar 31, 2022
Published by: Wroclaw University of Science and Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2022 Mrutyunjaya Mangaraj, Jogeswara Sabat, Ajit Kumar Barisal, Anil Kumar Patra, Ashok Kumar Chahattaray, published by Wroclaw University of Science and Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.