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Articles

Modified Cascaded H-bridge Multilevel Inverter for Hybrid Renewable Energy Applications

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References

  • M. A. Rosen, and I. Dincer, “Exergy as the confluence of energy, environment and sustainable development,” Exergy Int. J., Vol. 1, pp. 3–13, 2001. doi: 10.1016/S1164-0235(01)00004-8
  • P. Thongprasri. “Capacitor voltage balancing in the dc-link five-level full-bridge diode-clamped multilevel inverter,” 2016.
  • C. L. Kuppuswamy, and T. A. Raghavendiran. “FPGA Implementation of Carrier Disposition PWM for Closed Loop Seven Level Diode Clamped Multilevel Inverter in Speed Control of Induction Motor,” 2018.
  • F. Khoucha, S. M. Lagoun, K. Marouani, A. Kheloui, and M. El Hachemi Benbouzid, “Hybrid cascaded H-bridge multilevel-inverter induction-motor-drive direct torque control for automotive applications,” IEEE Trans. Ind. Electron., Vol. 57, no. 3, pp. 892–899, 2010. doi: 10.1109/TIE.2009.2037105
  • V. Jammala, S. Yellasiri, and A. K. Panda, “Development of a new hybrid multilevel inverter using modified carrier SPWM switching strategy,” IEEE Trans. Power Electron., Vol. 33, no. 10, pp. 8192–8197, 2018. doi: 10.1109/TPEL.2018.2801822
  • K. N. Prasad, G. R. Kumar, T. V. Kiran, and G. S. Narayana, “Comparison of different topologies of cascaded H-bridge multilevel inverter,” in Computer Communication and Informatics, ICCCI, 2013, pp. 1–6.
  • A. V. Ho, and T. W. Chun, “Single-phase modified quasi-Z-source cascaded hybrid five-level inverter,” IEEE Trans. Ind. Electron., Vol. 65, no. 6, pp. 5125–5134, 2018. doi: 10.1109/TIE.2017.2779419
  • F. S. Kang, “Modified multilevel inverter employing half- and full-bridge cells with cascade transformer and its extension to photovoltaic power generation,” Electr. Power Syst. Res., Vol. 80, no. 12, pp. 1437–1445, 2010. doi: 10.1016/j.epsr.2010.06.014
  • F. Wu, X. Li, F. Feng, and H. B. Gooi, “Modified cascaded multilevel grid-connected inverter to enhance European efficiency and several extended topologies,” IEEE Trans. Ind. Inf., Vol. 11, no. 6, pp. 1358–1365, 2015. doi: 10.1109/TII.2015.2486623
  • R. R. Karasani, S. Sabyasachi, V. B. Borghate, and S. K. Maddugari, “A modified three-phase 5-level symmetrical multilevel inverter topology,” in Power Electronics Conference (NPEC), Pune, 2017, pp. 72–77.
  • H. Li, K. Wang, D. Zhang, and W. Ren, “Improved performance and control of hybrid cascaded H-bridge inverter for utility-interactive renewable energy applications,” in Power Electronics Specialists Conference, Orlando, FL, 2007, pp. 2465–2471.
  • M. Murugesan, R. Sakthivel, E. Muthukumaran, and R. Sivakumar, “Sinusoidal PWM based modified cascaded multilevel inverter,” Int. J. Comput. Eng. Res., Vol. 2, no. 2, pp. 529–539, 2012.
  • M. Farhadi Kangarlu, and E. Babaei, “Cross-switched multilevel inverter: an innovative topology,” IET Power Electron., Vol. 6, no. 4, pp. 642–651, 2013. doi: 10.1049/iet-pel.2012.0265
  • S. M. Kim, J. S. Lee, and K. B. Lee, “A modified level-shifted PWM strategy for fault-tolerant cascaded multilevel inverters with improved power distribution,” IEEE Trans. Ind. Electron., Vol. 63, no. 11, pp. 7264–7274, 2016. doi: 10.1109/TIE.2016.2547917
  • M. D. Manjrekar, and T. A. Lipo, “A hybrid multilevel inverter topology for drive applications,” Proc. APEC, Vol. 2, pp. 523–529, 1998.
  • N. Das, H. Wongsodihardjo, and S. Islam, “Modeling of multi-junction photovoltaic cell using MATLAB/Simulink to improve the conversion efficiency,” Renew. Energy, Vol. 74, pp. 917–924, 2015. doi: 10.1016/j.renene.2014.09.017
  • S. Mekhilef, and M. N. Abdul Kadir, “Novel vector control method for three-stage hybrid cascaded multilevel inverter,” IEEE Trans. Ind. Electron., Vol. 58, no. 4, pp. 1339–1349, 2011. doi: 10.1109/TIE.2010.2049716
  • S. Mekhilef, and M. N. A. Kadir, “Voltage control of three-stage hybrid multilevel inverter using vector transformation,” IEEE Trans. Power Electron., Vol. 25, no. 10, pp. 2599–2606, 2010. doi: 10.1109/TPEL.2010.2051040
  • J. A. Caballero, E. F. Fernández, G. Nofuentes, A. Soria-Moya, F. Almonacid, P. Perez-Higueras, M. Theristis, G. E. Georghiou, and A. Garcia-Loureiro, “Analytical transfer equations for the spectral modelling of III–V multi-junction concentrator solar cells,” in Electron Devices (CDE), Barcelona, 2017, pp. 1–4.
  • H. Rezk, and E. S. Hasaneen, “A new MATLAB/Simulink model of triple-junction solar cell and MPPT based on artificial neural networks for photovoltaic energy systems,” Ain Shams Eng. J., Vol. 6, no. 3, pp. 873–881, 2015. doi: 10.1016/j.asej.2015.03.001
  • Z. Wang, N. Das, A. Helwig, and T. Ahfock, “Modeling of multi-junction solar cells for maximum power point tracking to improve the conversion efficiency,” in Universities Power Engineering Conference (AUPEC), Melbourne, VIC, 2017, pp. 1–6.
  • M. Sandhu, and T. Thakur, “Design and modelling of hybrid MPPT MJSC photovoltaic and wind-based microgrid using multilevel inverter,” in Wireless Networks and Embedded Systems (WECON), Rajpura, 2016, pp. 1–5.
  • J. J. Nedumgatt, D. V. Kumar, A. Kirubakaran, and S. Umashankar, “A multilevel inverter with a reduced number of switches,” in 2012 IEEE Students’ Conference on Electrical, Electronics and Computer Science, IEEE, 2012, pp. 1–4.
  • M. S. B. Ranjana, P. S. Wankhade, and N. D. Gondhalekar, “A modified cascaded H-bridge multilevel inverter for solar applications,” in 2014 International Conference on Green Computing Communication and Electrical Engineering (ICGCCEE), IEEE, 2014, pp. 1–7.
  • K. Thakre, K. B. Mohanty, V. Kommukuri, and R. N. Mishra, “Symmetrical and asymmetrical multilevel inverter using less number of switches,” in TENCON 2017–2017 IEEE Region 10 Conference, IEEE, 2017, pp. 1032–1036.
  • G. Prakash, C. Subramani, C. Bharatiraja, and M. Shabin, “A low cost single phase grid connected reduced switch PV inverter based on time frame switching scheme,” Int. J. Electr. Power Energy Syst., Vol. 77, pp. 100–111, 2016. doi: 10.1016/j.ijepes.2015.11.028
  • I. Colak, E. Kabalci, and R. Bayindir, “Review of multilevel voltage source inverter topologies and control schemes,” Energy Convers. Manage., Vol. 52, no. 2, pp. 1114–1128, 2011. doi: 10.1016/j.enconman.2010.09.006
  • S. Khomfoi, N. Praisuwanna, and L. M. Tolbert, “A hybrid cascaded multilevel inverter application for renewable energy resources including a reconfiguration technique,” in Energy Conversion Congress and Exposition (ECCE), Atlanta, GA, 2010, pp. 3998–4005.
  • E. Babaei, and S. S. Gowgani, “Hybrid multilevel inverter using switched capacitor units,” IEEE Trans. Ind. Electron., Vol. 61, no. 9, pp. 4614–4621, 2014. doi: 10.1109/TIE.2013.2290769
  • M. Hagiwara, K. Nishimura, and H. Akagi, “A medium-voltage motor drive with a modular multilevel PWM inverter,” IEEE Trans. Power Electron., Vol. 25, no. 7, pp. 1786–1799, 2010. doi: 10.1109/TPEL.2010.2042303
  • M. M. Biswas, S. Podder, and M. Z. R. Khan, “Modified H-bridge multilevel inverter for photovoltaic micro-grid systems,” in 2016 9th International Conference on Electrical and Computer Engineering (ICECE), IEEE, 2016, pp. 377–380.
  • M. Hasan, S. Mekhilef, and M. Ahmed, “Three-phase hybrid multilevel inverter with less power electronic components using space vector modulation,” IET Power Electron., Vol. 7, no. 5, pp. 1256–1265, 2014. doi: 10.1049/iet-pel.2013.0237
  • A. Masaoud, H. W. Ping, S. Mekhilef, and H. O. Belkamel, “A new five-level single-phase inverter employing a space vector current control,” Electr. Power Compon. Syst., Vol. 42, no. 11, pp. 1121–1130, 2014. doi: 10.1080/15325008.2014.921946
  • A. Masaoud, H. W. Ping, S. Mekhilef, and A. Taallah, “Novel configuration for multilevel DC-link three-phase five-level inverter,” IET Power Electron., Vol. 7, no. 12, pp. 3052–3061, 2014. doi: 10.1049/iet-pel.2013.0812
  • M. D. Siddique, S. Mekhilef, N. M. Shah, A. Sarwar, A. Iqbal, M. Tayyab, and M. K. Ansari, “Low switching frequency based asymmetrical multilevel inverter topology with reduced switch count,” IEEE. Access., Vol. 7, pp. 86374–86383, 2019. doi: 10.1109/ACCESS.2019.2925277
  • M. D. Siddique, S. Mekhilef, N. M. Shah, A. Sarwar, A. Iqbal, and M. A. Memon, “A new multilevel inverter topology with reduce switch count,” IEEE. Access., Vol. 7, pp. 58584–58594, 2019. doi: 10.1109/ACCESS.2019.2914430
  • P. R. Kumar, R. S. Kaarthik, K. Gopakumar, J. I. Leon, and L. G. Franquelo, “Seventeen-level inverter formed by cascading flying capacitor and floating capacitor H-bridges,” IEEE Trans. Power Electron., Vol. 30, no. 7, pp. 3471–3478, 2015. doi: 10.1109/TPEL.2014.2342882
  • C. I. Odeh, and D. B. Nnadi, “Single-phase, 17-level hybridized cascaded multi-level inverter,” Electr. Power Compon. Syst., Vol. 41, no. 2, pp. 182–196, 2013. doi: 10.1080/15325008.2012.738352
  • A. Kshirsagar, R. S. Kaarthik, A. Rahul, K. Gopakumar, L. Umanand, S. K. Biswas, and C. Cecati, “17-level inverter with low component count for open-end induction motor drives,” IET Power Electron., Vol. 11, no. 5, pp. 922–929, 2018. doi: 10.1049/iet-pel.2017.0492
  • E. Babaei, and S. S. Gowgani, “Hybrid multilevel inverter using switched capacitor units,” IEEE Trans. Ind. Electron., Vol. 61, no. 9, pp. 4614–4621, 2014. doi: 10.1109/TIE.2013.2290769
  • S. Majhee, T. Roy, A. Chakraborty, and T. N. Sekhar, “Analysis and development of a novel step-up 17 level switched capacitor multilevel inverter for renewable energy conversion system.” In 2019 IEEE International Conference on Electrical, Computer and Communication Technologies (ICECCT), IEEE, Feb., 2019, pp. 1–6.
  • B. Mahato, S. Majumdar, and K. C. Jana, “Single-phase modified T-type–based multilevel inverter with reduced number of power electronic devices,” Int. Trans. Electr. Energy Syst., Vol. 29, no. 11, e12097, 2019. doi: 10.1002/2050-7038.12097
  • M. M. Zaid, and J. S. Ro, “Switch Ladder modified H-bridge multilevel inverter with novel pulse width modulation technique,” IEEE. Access., Vol. 7, pp. 102073–102086, 2019. doi: 10.1109/ACCESS.2019.2930720
  • A. Chappa, S. Gupta, L. K. Sahu, S. P. Gautam, and K. K. Gupta, “Symmetrical and asymmetrical reduced device multilevel inverter topology,” IEEE. J. Emerg. Sel. Top. Power. Electron., Vol. 7, ISSN: 2168–6785, doi:10.1109/JESTPE.2019.2955279, 2019.

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