Accesso libero

Reparation of voltage disturbance using PR controller-based DVR in Modern power systems

INFORMAZIONI SU QUESTO ARTICOLO

Cita

Janjic, A., Stajic, Z., Radovic, I., 2011. Power quality requirements for the smart grid design, International journal of circuits, systems and signal processing. 5(6), 643-651,Search in Google Scholar

Danalakshmi, D.; Gopi, R.; Hariharasudan, A.;Otola, I.; Bilan, Y., 2020. Reactive power optimization and price management in microgrid enabled with blockchain. Energies, 13, 23, 6179, DOI: 10.3390/en1323617910.3390/en13236179Search in Google Scholar

Tien, D. V., Gono, R., Leonowicz, Z., 2018. A multifunctional dynamic voltage restorer for power quality improvement, Energies, 11(6), 1351.10.3390/en11061351Search in Google Scholar

Jeyaraj, K., Durairaj, D., Velusamy, A.I.S., 2020. Development and performance analysis of PSO-optimized sliding mode controller–based dynamic voltage restorer for power quality enhancement. International Transactions on Electrical Energy Systems, 30(3), e12243.10.1002/2050-7038.12243Search in Google Scholar

Pandey, A., Agrawal, R., Mandloi, R. S., Sarkar, B., 2017. Sliding mode control of dynamic voltage restorer by using a new adaptive reaching law, Journal of The Institution of Engineers (India): Series B, 98(6), 579-589.10.1007/s40031-017-0289-1Search in Google Scholar

Omar, A.I., Aleem, S.H.A., El-Zahab, E.E., Algablawy, M., Ali, Z.M., 2019. An improved approach for robust control of dynamic voltage restorer and power quality enhancement using grasshopper optimization algorithm, ISA transactions, 95, 110-129.10.1016/j.isatra.2019.05.00131103256Search in Google Scholar

Yan, L., Chen, X., Zhou, X., Sun, H., Jiang, L., 2018. Perturbation compensation-based non-linear adaptive control of ESS-DVR for the LVRT capability improvement of wind farms, IET Renewable Power Generation, 12(13), 1500-1507.10.1049/iet-rpg.2017.0839Search in Google Scholar

Danbumrungtrakul, M., Saengsuwan, T., Srithorn, P., 2017. Evaluation of DVR capability enhancement-zero active power tracking technique, IEEE Access, 5, 10285-10295.10.1109/ACCESS.2017.2706275Search in Google Scholar

Zhang, F., Mu, L., 2019. New protection scheme for internal fault of multi-microgrid, Protection and Control of Modern Power Systems. 4(1), 14.10.1186/s41601-019-0127-3Search in Google Scholar

Hingorani, N.G.. 1995. Introducing custom power, IEEE spectrum, 32(6), 41-48.Search in Google Scholar

Jothibasu, S., Mishra, M.K., 2014. A control scheme for storageless DVR based on characterization of voltage sags, IEEE transactions on power delivery, 29(5), 2261-2269.10.1109/TPWRD.2014.2316598Search in Google Scholar

Rauf AM, Khadkikar, V., 2014. An enhanced voltage sag compensation scheme for dynamic voltage restorer, IEEE transactions on industrial electronics, 62(5), 2683-92.10.1109/TIE.2014.2362096Search in Google Scholar

Dhowmya, Bhatt, Danalakshmi, D, Hariharasudan, A., Lisn M., Grabowska, M., 2021. Forecasting of Energy Demands for Smart Home Applications, Energies 14(4), 1045, DOI: 10.3390/en1404104510.3390/en14041045Search in Google Scholar

Pandey, A, Agrawal, R, Mandloi, R.S., Sarkar, B., 2017. Sliding mode control of dynamic voltage restorer by using a new adaptive reaching law, Journal of The Institution of Engineers (India): Series B, 98(6), 579-89.10.1007/s40031-017-0289-1Search in Google Scholar

Saeed, A.M., Abdel Aleem, S.H., Ibrahim, A.M., El-Zahab, E.E., 2014. Power quality improvement and sag voltage correction by dynamic voltage restorer, Int Rev Autom Control, 7(4), 386-93.Search in Google Scholar

Busada, C.A., Jorge, S.G., Solsona, J.A., 2019. A Synchronous Reference Frame PI Current Controller With Dead Beat Response, IEEE Transactions on Power Electronics, 35(3), 3097-105.10.1109/TPEL.2019.2925705Search in Google Scholar

Surendran, V., Srikanth, V., TG SJ., 2014. Performance improvement of dynamic voltage restorer using proportional-resonant controller, In2014 Power and Energy Systems: Towards Sustainable Energy, 1-5. IEEE.10.1109/PESTSE.2014.6805257Search in Google Scholar

Danalakshmi, D., Kannan, S., Kesavan, V.T., 2018. Reactive power pricing using cloud service considering wind energy, Cluster Computing, 21(1), 767-777.10.1007/s10586-017-0896-2Search in Google Scholar