Skip to main content
Have a personal or library account? Click to login
A Lyapunov-stable interval type-2 fuzzy PID controller design for ultra-lift Luo converter Cover

A Lyapunov-stable interval type-2 fuzzy PID controller design for ultra-lift Luo converter

By:   
Open Access
|Jun 2026

References

  1. F. L. Luo and H. Ye, “Ultra-lift Luo-converter” International Conference on Power System Technology, Singapore, pp. 81-86 vol.1, 2004.
  2. A. Gani, “PD-type-2 fuzzy neural network based control of a super-lift Luo converter designed for sustainable future energy applications”, Intelligent and Fuzzy Systems. INFUS 2023. Lecture Notes in Networks and Systems, vol.758. Springer, Cham. 2023.
  3. F. L. Luo, H. Ye, and M.H. Rashid, “DC/DC conversion techniques and nine series Luo-converters”, in Power electronics handbook Devices, Circuits and Applications. Amsterdam, The Netherlands: Elsevier, 2011.
  4. S. A. Tekin and A. Gani, “Design and stochastic perfor-mance analysis of non-ideal ultra-lift Luo converter: A Monte Carlo approach”, Journal of Electrical Engineering, vol.77, no.1, pp.89-96, 2026.
  5. A. Gani, H. Acikgoz, O.F. Kececioglu, E. Kilic, and M. Şekkeli, “A simulation study on controlling excitation current of synchronous motor and reactive power compensation via PSO based PID and PID controllers”, Journal of Intelligent Systems with Applications, vol.1, no.2, pp.103-110, 2018.
  6. M. Biglarbegian, W. W. Melek and J. M. Mendel, “A practical approach for design of PD and PI like interval type-2 TSK fuzzy controllers”, IEEE International Conference on Systems, Man and Cybernetics, pp.255-261,2009.
  7. A. Gani, O. F. Kececioglu, H. Acikgoz and M. Sekkeli, “Fuzzy logic controller design based on Sugeno inference method for nonlinear inverted pendulum dynamical system”, Sigma Journal of Engineering and Natural Sciences, vol.8, no.1, pp.19-30, 2017.
  8. A. M. El-Nagar and M. El-Bardini, “Practical implementation for the interval type-2 fuzzy PID controller using a low cost microcontroller”, Ain Shams Engineering Journal, vol.5 no.2, pp. 475-487, 2014.
  9. A. Sakalli, T. Kumbasar, E. Yesil and H. Hagras, “Analysis of the performance of type-1, self-tuning type-1 and interval type-2 fuzzy PID controller on the magnetic levitation system”, International Conference on Fuzzy Systems, pp.1859-1866,2014.
  10. S. Mahalakshmi and P. Nammalvar, “Implementation of ultra-lift Luo converter for electric vehicle application”, International Journal of Advanced Research in Electrical, Electronics and Instrumentation Engineering, vol.6, no.3, pp. 1968-1975, 2017.
  11. A. Sharifian, S. F. Sasansara, M. J. Ghadi, S. Ghavidel, L. Li and J. Zhang, “Dynamic performance improvement of an ultra-lift Luo DC-DC converter by using a type-2 fuzzy neural controller”, Computers & Electrical Engineering, vol. 69, pp. 171-182, 2018.
  12. J. Raji and V. Kamaraj, “Analysis of stability and dynamic behaviour of ultra-lift Luo Converter”, Journal of Electrical Engineering and Technology, vol.12, no.5, pp. 1970-1979, 2017.
  13. G. M. Suba and M. Kumerasen, “Hybrid RFOA-DDAO based voltage transfer gain enhancement through ultra-lift Luo converter and Cockcroft-Walton multiplier”, International Journal of Intelligent Systems and Applications in Engineering, vol.10, no.1, pp. 17-27, 2022.
  14. J. Raji and V. Kamaraj, “Investigation of ultra-lift Luo-converter with peak, average and hysteresis current-mode control”, Journal of Power Electronics, vol.21, pp.951-963, 2021.
  15. T. M. Babu, K. Chenchireddy, J. Rohini, M. S. Suhas, D. Ajitesh and K. Rahul, “High voltage DC-DC converter with standalone application”, International Journal of Applied Power Engineering, vol. 12, no. 4, pp. 384-390, 2023.
  16. A. Gani. “Robust adaptive DC-voltage regulator design for ultra-lift Luo converter using PD interval type-2 TSK fuzzy controller”, Journal of Electrical Engineering, vol.76, no. 4, pp. 377-385, 2025.
  17. A. V. Kumar and V. Jayalakshmi, “Modelling of ultra-lift Luo converter using PI controller for standalone application”, International Conference on Intelligent and Innovative Technologies in Computing, Electrical and Electronics (IITCEE), Bangalore, India, pp. 1-4, 2024.
  18. A. Gani, “Advanced controller design based on interval type-2 fuzzy neural network for elementary super-lift Luo converter,” Transactions Institute of Measurement and Control, vol.47, no.10, pp. 1953-1963, 2025.
  19. F. L. Luo, and H. Ye. Advanced DC/DC Converters 1st ed. CRC Press, 2003.
  20. V. Kevat, A. Sakhare and S. Mikkili, “Performance analysis of super-lift Luo, ultra-lift Luo, boost, buck-boost, Cuk, Zeta and Sepic DC-DC converters for extracting maximum power,” International. Journal of Ambient Energy, vol.46, no.1, pp. 2476047, 2025.
  21. A. Gani,“Improving dynamic efficiency of photovoltaic generation systems using adaptive type 2 fuzzy‐neural network via EN 50530 test procedure,” International Journal of Circuit Theory and Applications, vol.49, no.11, pp.3922-3940, 2021.
  22. D. Wu, “On the fundamental differences between interval type-2 and type-1 fuzzy logic controllers,” IEEE Transactions on Fuzzy Systems, vol.20, no.5, pp.832-848, 2012.
  23. J. M. Mendel and R.B. John, “Type-2 fuzzy sets made simple,” IEEE Transactions on Fuzzy Systems, vol.10, no.2, pp.117-127, 2002.
  24. O.F. Kececioglu, A. Gani, and M. Şekkeli, “Improved hybrid intelligent controller design for MPPT of stand-alone PV System,” Turkish Journal of Engineering, vol. 5, no. 1, pp. 20-28, 2021.
  25. J. M. Mendel Uncertain Rule-Base Fuzzy Logic Systems: Introduction and New directions. Upper Saddle River, NJ: Prentice-Hall, 2001.
  26. T. Kumbasar, H. Hagras, J. Kacprzyk and W. Pedrycz, An overview on interval type-2 fuzzy PID controllers, The book entitled Springer Handbook of Computational Intelligence, Eds. J. Kacprzyk W. Pedrycz, Springer Verlag, 2015.
  27. H. O. Wang, K. Tanaka and M. F. Griffin, “An approach to fuzzy control of nonlinear systems: stability and design issues,” IEEE Transactions on Fuzzy Systems, vol.4, no.1, pp. 14-23,1996.
  28. J. G. Ziegler, and N.B. Nichols, “Optimum settings for automatic controllers,” Transactions of the American society of mechanical engineers, vol.64, no.8, pp.759-765,1942.
DOI: https://doi.org/10.2478/jee-2026-0030 | Journal eISSN: 1339-309X | Journal ISSN: 1335-3632
Language: English
Page range: 311 - 322
Submitted on: May 17, 2026
Published on: Jun 17, 2026
In partnership with: Paradigm Publishing Services
Publication frequency: 6 issues per year

© 2026 Ahmet Gani, published by Slovak University of Technology in Bratislava
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.