Pilalum, P.; Taksana, R.; Chitgreeyan, N.; Sa-nga-ngam, W.; Marsong, S.; Buayai, K.; Kerdchuen, K.; Kongjeen, Y.; Bhumkittipich, K.
Mitigation of Voltage Magnitude Profiles Under High-Penetration-Level Fast-Charging Stations Using Optimal Capacitor Placement Integrated with Renewable Energy Resources in Unbalanced Distribution Networks. Smart Cities 2025, 8, 102.
https://doi.org/10.3390/smartcities8040102
AMA Style
Pilalum P, Taksana R, Chitgreeyan N, Sa-nga-ngam W, Marsong S, Buayai K, Kerdchuen K, Kongjeen Y, Bhumkittipich K.
Mitigation of Voltage Magnitude Profiles Under High-Penetration-Level Fast-Charging Stations Using Optimal Capacitor Placement Integrated with Renewable Energy Resources in Unbalanced Distribution Networks. Smart Cities. 2025; 8(4):102.
https://doi.org/10.3390/smartcities8040102
Chicago/Turabian Style
Pilalum, Pongsuk, Radomboon Taksana, Noppanut Chitgreeyan, Wutthichai Sa-nga-ngam, Supapradit Marsong, Krittidet Buayai, Kaan Kerdchuen, Yuttana Kongjeen, and Krischonme Bhumkittipich.
2025. "Mitigation of Voltage Magnitude Profiles Under High-Penetration-Level Fast-Charging Stations Using Optimal Capacitor Placement Integrated with Renewable Energy Resources in Unbalanced Distribution Networks" Smart Cities 8, no. 4: 102.
https://doi.org/10.3390/smartcities8040102
APA Style
Pilalum, P., Taksana, R., Chitgreeyan, N., Sa-nga-ngam, W., Marsong, S., Buayai, K., Kerdchuen, K., Kongjeen, Y., & Bhumkittipich, K.
(2025). Mitigation of Voltage Magnitude Profiles Under High-Penetration-Level Fast-Charging Stations Using Optimal Capacitor Placement Integrated with Renewable Energy Resources in Unbalanced Distribution Networks. Smart Cities, 8(4), 102.
https://doi.org/10.3390/smartcities8040102