3,461
Views
1
CrossRef citations to date
0
Altmetric
ELECTRICAL & ELECTRONIC ENGINEERING

Design of an Electronic Load Controller for Micro Hydro Power Plant Using Fuzzy-PI Controller

, , , & | (Reviewing editor)
Article: 2057115 | Received 17 Nov 2021, Accepted 06 Mar 2022, Published online: 31 Mar 2022

References

  • Anaza, S. O., Abdulazeez, M. S., Yisah, Y. A., Yusuf, Y. O., Salawu, B. U., & Momoh, S. U. (2017). Micro hydro-electric energy generation- an overview. American Journal of Engineering Research, 6(2), 5–20 https://www.ajer.org/papers/v6(02)/B06020512.pdf.
  • Anurang, Y., Singh, S. N., & Appurva, A. (2015). A fuzzy logic based electronic controller for three-phase alternator. International Journal Of Engineering Technology And Advanced Engineering, 5(3), 514–520 https://1library.net/document/zw59nn7z-fuzzy-logic-based-electronic-load-controller-phase-alternator.html.
  • Chandran, V. P., Murshid, S., & Singh, B. (2021). Improved TOGI-based voltage and frequency control for PMSG feeding single-phase loads in isolated pico-hydro generation. IETE Journal of Research, 67(6), 882–898. https://doi.org/10.1080/03772063.2019.1571953
  • Chaurasia, R., Viral, R., Asija, D., & Bahar, T. (2020). Performance analysis of self-excited induction generator with ELC for the wind energy system. Innovation in Electrical and Electronic Engineering 661 219–236 . https://doi.org/10.1007/978-981-15-4692-1_17
  • Clark, D. M., Gozon, R. C., & Morcilla, R. V. (2016). Analysis and comparison of switching techniques of electronic load controller for micro hydro power plants. Mindanao Journal of Science and Technology, 14(5), 120–130 https://mjst.ustp.edu.ph/index.php/mjst/article/view/102/78.
  • Erika, S. M., Paulo, C. R., & Enio, R. R. (2013). Electronic load controller of a micro hydro generator for stand-alone operation. Institute of Electrical and Electrical Engineers, 2(1), 718–723 doi:10.1109/COBEP.2013.6785194.
  • Karmakar, S. (2020). Artificial neural network-built electronic load controller for three-phase self –excited induction generator feeding single-phase loads. Michael Faraday IET International Summit 2020 185– 190 . https://doi.org/10.1049/icp.2021.1073
  • Kushwah, M., & Patra, A. (2014). PID controller tuning using Ziegler-Nichols method for speed control of DC motor. International Journal of Scientific Engineering and Technology, 3(13), 2924–2929 http://ijsetr.com/uploads/361425IJSETR1550-497.pdf.
  • Nan, W. A., & Aung, Z. Y. (2015). Design of electronic load controller by using combination method for micro-hydro power plant and its control and monitoring program simulation. International Journal of Electrical, Electronics and Data Communication, 3(6), 6–12 http://IJEEDC-IRAJ-DOIONLINE-2257.
  • Ofosu, R. A., Kaberere, K. K., Nderu, J. N., & Kamau, S. I. (2019). Design of BFA-optimized fuzzy electronic load controller for micro hydro power plants. Energy for Sustainable Development, 51, 13–20. https://doi.org/10.1016/j.esd.2019.04.003
  • Ofosu, R. A., Kamau, S. I., Nderu, J. N., Kaberere, K. K., & Muhia, A. M. (2016). Determination of optimal PI gains for Fuzzy-PI controller using Bacterial Foraging Algorithm (BFA. IOSR Journal of Electrical and Electronics Engineering, 11(2), 26–33 https://www.slideshare.net/IOSR/d1102032633.
  • Pandey, M. K. 2010. Analysis of self tuning fuzzy PID internal model control, MSc thesis, Thapar University.
  • Ponnam, Y., Kumar, P. R., & Kumar, V. V. (2014). Electronic load controller for self-exited induction generator using fuzzy logic controller. IOSR Journal of Electrical and Electronics Engineering, 5(3), 49–53. https://doi.org/10.9790/1676-534954
  • Praptodiyono, S., Maghfiroh, H., Nizam, M., Hermanu, C., & Wibowo, A. (2021). Design and prototyping of electronic load controller for pico hydropower system. Jurnal Ilmiah Teknik Elektro Komputer Dan Informatika (JITEKI), 7(3), 2338–3070. https://doi.org/10.26555/jitek.v7i3.22271
  • Raj, M. P., & Kumar, K. R. (2014). Fuzzy logic control strategy for stand-alone self-excited induction generator for a variable speed wind turbine. International Journal of Innovative Research in Science, Engineering and Technology, 3(1), 847–853 http://www.ijirset.com/upload/2014/icets/189_EE466.pdf.
  • Sanampudi, N., & Kanakasabapathy, P. 2020. Integrated voltage control and frequency regulation for stand-alone micro-hydro power plant 46 (10), 5027–503 https://doi.org/10.1016/j.matpr.2020.10.403 .
  • Singh, B., Murthy, S. S., & Sushma, G. (2006). Analysis and design of electronic load controller for self-excited induction generators. IEEE Transactions on Energy Conversion, 21(1), 293–295. https://doi.org/10.1109/TEC.2005.847950
  • Wang-Xiao, K., Zhong-Liang, S., Wnglei, & Dong-qing, F. 2008. Design and research based on fuzzy self-tuning PID using MATLAB. Proceedings of international conference on advanced computing theory and engineering Massachusetts, United States (IEEE Computer Society).
  • Yadav, A., Singh, S. N., & Appan, A. (2015). A fuzzy logic based electronic load controller for three phase alternators. International Journal of Emerging Technology and Advanced Technology, 5(3), 514–520 https://ijetae.com/files/Volume5Issue3/IJETAE_0315_94.pdf.