Neural networks for adaptive control coordination of PSSs and FACTS devices in multimachine power system TT Nguyen, R Gianto IET Generation, transmission & distribution 2 (3), 355-372, 2008 | 80 | 2008 |
Optimisation-based control coordination of PSSs and FACTS devices for optimal oscillations damping in multi-machine power system TT Nguyen, R Gianto IET Generation, Transmission & Distribution 1 (4), 564-573, 2007 | 68 | 2007 |
Steady‐state model of DFIG‐based wind power plant for load flow analysis R Gianto IET Renewable Power Generation 15 (8), 1724-1735, 2021 | 26 | 2021 |
A new method for load flow solution of electric power distribution system R Gianto, KH Khwee International Review of Electrical Engineering 11 (5), 535-541, 2016 | 25 | 2016 |
Optimal design for control coordination of power system stabilisers and flexible alternating current transmission system devices with controller saturation limits TT Nguyen, R Gianto IET generation, transmission & distribution 4 (9), 1028-1043, 2010 | 23 | 2010 |
Two-port network model of fixed-speed wind turbine generator for distribution system load flow analysis R Gianto, KH Khwee, H Priyatman, M Rajagukguk TELKOMNIKA (Telecommunication Computing Electronics and Control) 17 (3 …, 2019 | 20 | 2019 |
Application of optimization method for control co-ordination of PSSs and FACTS devices to enhance small-disturbance stability Nguyen, Gianto 2005/2006 IEEE/PES Transmission and Distribution Conference and Exhibition …, 2006 | 20 | 2006 |
T-circuit model of asynchronous wind turbine for distribution system load flow analysis R Gianto International Energy Journal 19 (2), 2019 | 18 | 2019 |
A new T-circuit model of wind turbine generator for power system steady state studies R Gianto, KH Khwee Bulletin of Electrical Engineering and Informatics 10 (2), 550-558, 2021 | 17 | 2021 |
Stability improvement of electromechanical oscillations by control co-ordination of PSSs and FACTS devices in multi-machine systems TT Nguyen, R Gianto 2007 IEEE Power Engineering Society General Meeting, 1-7, 2007 | 15 | 2007 |
Steady state model of wind power plant for load flow study R Gianto 2020 International Seminar on Intelligent Technology and Its Applications …, 2020 | 10 | 2020 |
Constant voltage model of DFIG-based variable speed wind turbine for load flow analysis R Gianto Energies 14 (24), 8549, 2021 | 9 | 2021 |
Trust‐Region Method for Load Flow Solution of Three‐Phase Unbalanced Electric Power Distribution System R Gianto, Purwoharjono Journal of Electrical and Computer Engineering 2022 (1), 5415300, 2022 | 8 | 2022 |
Integration of DFIG-based variable speed wind turbine into load flow analysis R Gianto 2021 International Seminar on Intelligent Technology and Its Applications …, 2021 | 7 | 2021 |
Modeling of SCIG-Based Variable Speed Wind Turbine in Power Factor Control Mode for Load Flow Analysis R Gianto, A Elbani European Journal of Electrical Engineering and Computer Science 5 (6), 43-48, 2021 | 6 | 2021 |
Integrasi Model Pembangkit Listrik Tenaga Angin Pada Analisis Aliran Daya Sistem Tenaga R Gianto Jurnal Rekayasa Elektrika 16 (3), 161-167, 2020 | 6 | 2020 |
Steady-State Load Flow Model of DFIG Wind Turbine Based on Generator Power Loss Calculation R Gianto, Purwoharjono, F Imansyah, R Kurnianto, Danial Energies 16 (9), 3640, 2023 | 5 | 2023 |
Constant power factor model of DFIG-based wind turbine for steady state load flow studies R Gianto Energies 15 (16), 6077, 2022 | 5 | 2022 |
Pemodelan Pembangkit Listrik Tenaga Angin Kecepatan Tetap Untuk Analisis Aliran Daya R Gianto Jurnal Nasional Teknik Elektro, 8-15, 2019 | 5 | 2019 |
Two-port network model of wind turbine generator for three-phase unbalanced distribution system load flow analysis R Gianto, P Purwoharjono Bulletin of Electrical Engineering and Informatics 11 (1), 9-19, 2022 | 4 | 2022 |