Volume 21, Issue 2 (JIAEEE Vol.21 No.2 2024)                   Journal of Iranian Association of Electrical and Electronics Engineers 2024, 21(2): 47-59 | Back to browse issues page


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Noori M, Hosseinpour M, Mousavi-Aghdam S R. Single Source Switched Capacitor Multilevel inverter with Voltage Boosting Capability and Low Switch Count. Journal of Iranian Association of Electrical and Electronics Engineers 2024; 21 (2) :47-59
URL: http://jiaeee.com/article-1-1574-en.html
University of Mohaghegh Ardabili
Abstract:   (1642 Views)
The rapid development of technology and the ever-increasing need to use energy sources compatible with the environment cause the use of multilevel inverters in medium and high-power applications. This paper presents a structure for switched capacitor multilevel inverter with voltage boost capability. The proposed structure By using only one DC input source, 14 power electronic switches and 4 capacitors, 25 high quality voltage levels at the output generate that the maximum voltage generated at the output of the proposed inverter is 6 times higher than the input power supply. Comparative parameters are presented to evaluate and compare the proposed structure with other structures and the result of the comparison shows that the cost factor of the proposed structure is at least 5% lower than similar structures. The performance of the proposed 25-level inverter in different loading conditions and using the nearest level control is simulated and then the results of the simulation have been compared and evaluated with the results of the experimental of the proposed inverter in the power electronics laboratory.
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Type of Article: Research | Subject: Power
Received: 2023/02/23 | Accepted: 2023/09/11 | Published: 2024/06/24

References
1. [1] B. Hosseini Montazer, J. Olamaei, M. Hosseinpour, & B. Mozafari, "A generalized diode containing bidirectional topology for multilevel inverter with reduced switches and power loss", International Journal of Circuit Theory and Applications, 49(9), pp.2959-2978, 2021. [DOI:10.1002/cta.3077]
2. [2] M. Hosseinpour, A. Seifi, & E. Babaei, "An improved switched‐ladder bidirectional multilevel inverter: Topology, operating principle, and implementation", International Journal of Circuit Theory and Applications, 49(12), pp.4274-4293, 2021. [DOI:10.1002/cta.3140]
3. [3] R. Sajadi, H. Iman-Eini, M.K. Bakhshizadeh, Y. Neyshabouri, and S. Farhangi, "Selective harmonic elimination technique with control of capacitive DC-link voltages in an asymmetric cascaded H-bridge inverter for STATCOM application", IEEE Transactions on Industrial Electronics, 65(11), pp.8788-8796, 2018. [DOI:10.1109/TIE.2018.2811365]
4. [4] M. Hosseinpour, A. Seifi, & E. Feyz, "A new symmetric/asymmetric multilevel inverter based on cascaded connection of sub-multilevel units aiming less switching components and total blocked voltage", Journal of Telecommunication, Electronic and Computer Engineering (JTEC), 12(1), pp.53-62, 2020.
5. [5] حسين‌پور، مجيد. سيفي، علي. "يک ساختار جديد مبتني بر سوييچ-ديود براي اينورتر چندسطحي با قابليت تغذيه با يک منبع ولتاژ DC"، نشريه مهندسي برق و الکترونيک ايران ، ۱۹ (۴) :۶۹-۵۷، ۱۴۰۱.
6. [6] J. Rodríguez, S. Bernet, B. Wu, J.O. Pontt, and S. Kouro, "Multilevel voltage-source-converter topologies for industrial medium-voltage drives", IEEE Transactions on industrial electronics, 54(6), pp.2930-2945, 2007. [DOI:10.1109/TIE.2007.907044]
7. [7] سيفي، علي. حسين‌پور، مجيد. "طراحي و پياده‌سازي ساختار متقارن/نامتقارن جديد براي اينورتر چندسطحي آبشاري با تعداد ادوات کليدزني کمتر"، نشريه مهندسي برق و الکترونيک ايران; ۱۸ (۲) :۱۸۸-۱۷۵، ۱۴۰۰.
8. [8] A. Seifi, M. Hosseinpour, A. Dejamkhooy, F. Sedaghati, & E. Ostad, "A new generalized multilevel inverter topology based on cascaded connection of basic units", In 2019 International Power System Conference (PSC), pp.355-360, 2019. [DOI:10.1109/PSC49016.2019.9081454] [PMID] []
9. [9] رستمي، محمدجواد. ادبي، جعفر. رضانژاد، محمد. "اينورتر چندسطحي کليد-خازني تک منبعه با قابليت چند برابر کنندگي ولتاژ"، نشريه مهندسي برق و الکترونيک ايران، ؛ ۱۸ (۲): 174-163، ۱۴۰۰.
10. [10] حسين‌پور، مجيد. پنالو، عرفان. سيفي، علي. دژم‌خوي، عبدالمجيد. "ارائه ساختار جديد براي اينورتر چندسطحي خازن سوئيچ شونده مبتني بر سلول‌هاي پايه پل H"، نشريه روش‌هاي هوشمند در صنعت برق، ؛ 15 (1): 74-51، 1403.
11. [11] Y. Wang, J. Ye, C. Zhou, Y. Shen, W. Liu, and J. Liang, "A Switched-Capacitor Multilevel Inverter Using Series-Parallel Conversion With Reduced Components", CPSS Transactions on Power Electronics and Applications, 7(3), pp.335-346, 2022. [DOI:10.24295/CPSSTPEA.2022.00031]
12. [12] E. Babaei, and S.S. Gowgani, "Hybrid multilevel inverter using switched capacitor units", IEEE Transactions on industrial electronics, 61(9), pp.4614-4621, 2013. [DOI:10.1109/TIE.2013.2290769]
13. [13] R.S. Alishah, S. H. Hosseini, E. Babaei, M. Sabahi, and G.B. Gharehpetian, "New high step-up multilevel converter topology with self-voltage balancing ability and its optimization analysis", IEEE Transactions on Industrial Electronics, 64(9), pp.7060-7070, 2017. [DOI:10.1109/TIE.2017.2688968]
14. [14] M. Saeedian, S.M. Hosseini, and J. Adabi, "Step‐up switched‐capacitor module for cascaded MLI topologies", IET Power Electronics, 11(7), pp.1286-1296, 2018. [DOI:10.1049/iet-pel.2017.0478]
15. [15] X. Sun, B. Wang, Y. Zhou,W.Wang, H. Du, and Z. Lu, "A single DC source cascaded seven-level inverter integrating switched-capacitor techniques", IEEE Trans. Ind. Electron., vol. 63, no. 11, pp. 7184-7194, Nov. 2016. [DOI:10.1109/TIE.2016.2557317]
16. [16] H. Khoun Jahan, M. Abapour, and K. Zare, "Switched-capacitor-based single-source cascaded H-bridge multilevel inverter featuring boosting ability", IEEE Trans. Power Electron., vol. 34, no. 2, pp. 1113-1124, Feb. 2019. [DOI:10.1109/TPEL.2018.2830401]
17. [17] V. Anand, and V. Singh, "A 13-level switched-capacitor multilevel inverter with single DC source", IEEE Journal of Emerging and Selected Topics in Power Electronics, 10(2), pp.1575-1586, 2021. [DOI:10.1109/JESTPE.2021.3077604]
18. [18] M.A. Sathik, M.D. Siddique, N. Sandeep, A. Hota, D. Almakhles, S. Mekhilef, and U.R. Yaragatti, "Compact Quadratic Boost Switched-Capacitor Inverter", IEEE Transactions on Industry Applications, 58(4), pp.4923-4931, 2022. [DOI:10.1109/TIA.2022.3172235]
19. [19] S.Chen, Y. Ye, T. Hua, and X. Wang, "Self-balanced switched-capacitor multilevel inverter with asymmetric double-wing structure", International Journal of Electrical Power & Energy Systems, 133, p.107295, 2021. [DOI:10.1016/j.ijepes.2021.107295]
20. [20] P.R. Bana, K.P. Panda, S. Padmanaban, and G. Panda, "Extendable switched-capacitor multilevel inverter with reduced number of components and self-balancing capacitors", IEEE Transactions on Industry Applications, 57(3), pp.3154-3163, 2020. [DOI:10.1109/TIA.2020.3018422]
21. [21] N. Sandeep, "A 13-level switched-capacitor-based boosting inverter", IEEE Transactions on Circuits and Systems II: Express Briefs, 68(3), pp.998-1002, 2020. [DOI:10.1109/TCSII.2020.3017338]
22. [22] K.P. Panda, P.R. Bana, O. Kiselychnyk, J. Wang, and G. Panda, "A single-source switched-capacitor-based step-up multilevel inverter with reduced components", IEEE Transactions on Industry Applications, 57(4), pp.3801-3811, 2021. [DOI:10.1109/TIA.2021.3068076]
23. [23] M.S.B. Arif, U. Mustafa, M.D. Siddique, S. Ahmad, A. Iqbal, R.H. Ashique, and S.B. Ayob, "An improved asymmetrical multi‐level inverter topology with boosted output voltage and reduced components count", IET Power Electronics, 14(12), pp.2052-2066, 2021. [DOI:10.1049/pel2.12119]
24. [24] M.F. Talooki, M. Rezanejad, R. Khosravi, and E. Samadaei, "A novel high step-up switched-capacitor multilevel inverter with self-voltage balancing", IEEE Transactions on Power Electronics, 36(4), pp.4352-4359, 2020. [DOI:10.1109/TPEL.2020.3019223]
25. [25] Y. Hu, R. Naderi, and Y. Naderi, "A switched‐capacitor based multilevel inverter with reduced circuit components and voltage boosting capability", International Transactions on Electrical Energy Systems, 31(8), p.e12990, 2021. [DOI:10.1002/2050-7038.12990]

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