Energy Storage System and Multilevel Inverter for Electric Vehicles Applicat

Authors

  • Dr. Shiv Kumar Sonkar, Rishabh Kumar Sonkar

Keywords:

Multilevel Inverter, PWM, Boost Factor, Electric Vehicles

Abstract

A multilevel inverter is a power electronic device that is used for high-voltage and high-power applications because of its characteristic of generating a sinusoidal voltage based on several DC voltage levels. It provides good quality output resulting in lower harmonic distortion in the output. This topology is designed based on switched-capacitor voltage pump techniques, and the number of output voltage levels is defined by the number of switched-capacitor cells cascaded. Only one DC voltage source is needed, and the problem of voltage balancing across the capacitors is also avoided. A small input voltage can be used to generate a boosted output voltage by switching the capacitors in parallel and in series. The basic MLIs are cascaded H-bridge (CHB), neutral point clamped, and flying capacitor inverters. In addition, the inverters inherit various advantages of the original structure, such as a high boost factor of 6, self-balanced capacitor voltages, and reduced voltage ripples. Circuit description, operation principle, hybrid PWM modulation, and capacitor voltage ripples are analyzed. The capacitor voltages are self-balanced as they are connected in parallel with the input voltage source for several instances in every fundamental cycle.

References

Y. Q. Wang, Y. S. Yuan, G. Li, Y. M. Ye, K. W. Wang, and J. Liang, “A T-type switched-capacitor multilevel inverter with low voltage stress and self-balancing,” IEEE Transactions on Circuits and Systems I: Regular Papers, vol. 68, no. 5, pp. 2257–2270, May 2021.

Ruijie Sun, Yuanmao Ye, and Xiaolin Wang, “A novel five-level boosting inverter with self-balancing switched-capacitor for electric vehicles,” 8th International Conference on Power Electronics Systems and Applications (PESA), IEEE, 2020.

Y. Q. Wang, Y. S. Yuan, G. Li, T. J. Chen, K. W. Wang, and J. Liang, “A generalized multilevel inverter based on T-type switched capacitor module with reduced devices,” Energies, vol. 13, no. 17, p. 4406, Aug. 2020.

S. Habib, M. M. Khan, F. Abbas, A. Ali, M. T. Faiz, and F. Ehsan et al., “Contemporary trends in power electronics converters for charging solutions of electric vehicles,” CSEE Journal of Power and Energy Systems, vol. 6, no. 4, pp. 911–929, Dec. 2020.

P. Wang, S. J. Ma, S. Akram, K. Zhou, Y. D. Chen, and M. T. Nazir, “Design of Archimedes spiral antenna to optimize partial discharge detection of inverter-fed motor insulation,” IEEE Access, vol. 8, pp. 193202–193213, Nov. 2020.

J. Zeng, W. J. Lin, D. H. Cen, and J. F. Liu, “Novel K-type multilevel inverter with reduced components and self-balance,” IEEE Journal of Emerging and Selected Topics in Power Electronics, vol. 8, no. 4, pp. 3434–3454, Dec. 2020.

W. J. Lin, J. Zeng, J. F. Liu, Z. Yan, and R. Hu, “Generalized symmetric step-up multilevel inverter using crisscross capacitor unit,” IEEE Transactions on Industrial Electronics, vol. 67, no. 9, pp. 7439–7450, Sep. 2020.

K. P. Panda, P. R. Bana, and G. Panda, “A switched-capacitor self-balanced high-gain multilevel inverter employing a single DC source,” IEEE Transactions on Circuits and Systems II: Express Briefs, vol. 67, no. 12, pp. 3192–3196, Dec. 2020.

M. Ghodsi and S. M. Barakati, “New generalized topology of asymmetric modular multilevel inverter based on six-switch H-bridge,” International Journal of Circuit Theory and Applications, vol. 48, no. 5, pp. 789–808, May 2020.

M. Ghodsi and S. M. Barakati, “A generalized cascaded switched-capacitor multilevel converter structure and its optimization analysis,” IEEE Journal of Emerging and Selected Topics in Power Electronics, vol. 8, no. 4, pp. 4306–4317, Dec. 2020.

Abderezak Lashab, Deszo Sera, Frederik Hahn, Luis Camurça, Yacine M. Liserre, and Josep M. Guerrero, “Cascaded multilevel PV inverter with improved harmonic performance during power imbalance between power cells,” IEEE Transactions on Industry Applications, vol. 56, no. 3, May/June 2020.

W. Peng, Q. Ni, X. Qiu, and Y. Ye, “Seven-level inverter with self-balanced switched-capacitor and its cascaded extension,” IEEE Transactions on Power Electronics, vol. 34, no. 12, pp. 11889–11896, Dec. 2019.

M. Saedian, M. E. Alabi, M. Hosseini, J. Adabi, and E. Pouresmaeil, “A novel step-up single source multilevel inverter: Topology, operating principle and modulation,” IEEE Transactions on Power Electronics, vol. 34, no. 4, pp. 3269–3282, Apr. 2019.

J. Liu, W. Lin, J. Wu, and J. Zeng, “A novel nine-level quadruple boost inverter with inductive load ability,” IEEE Transactions on Power Electronics, vol. 34, no. 5, pp. 4014–4018, May 2019.

W. Peng, Q. Ni, X. Qiu, and Y. Ye, “Seven-level inverter with self-balanced switched-capacitor and its cascaded extension,” IEEE Transactions on Power Electronics, vol. 34, no. 12, pp. 11889–11896, Dec. 2019.

Downloads

How to Cite

Dr. Shiv Kumar Sonkar, Rishabh Kumar Sonkar. (2023). Energy Storage System and Multilevel Inverter for Electric Vehicles Applicat. International Journal of Research & Technology, 11(3), 98–103. Retrieved from https://ijrt.org/j/article/view/695

Similar Articles

<< < 1 2 3 4 5 6 7 8 > >> 

You may also start an advanced similarity search for this article.