TY - GEN
T1 - Sliding mode control based on power information of boost converter for voltage regulator
AU - Utomo, Teguh
AU - Wedangga, Gede Teguh Adi
AU - Ardhenta, Lunde
N1 - Publisher Copyright:
© 2020 IEEE.
PY - 2020/8/26
Y1 - 2020/8/26
N2 - Nowadays, modern revolution of industry cause most of industry are using DC sources as power supplies. By regulating desired output voltage, DC supplies use power converters. Boost Converter is one of power converters and it has utility to convert DC voltage to higher level than input voltage. The output voltage generated by the boost converter have some faults such as overshoot in output voltage and oscillation such that the slow settling time is generated. Therefore, the sliding mode controller is used on the boost converter to improve the output voltage. The proposed controller is using power information as sliding surface. Based on the proposed controller, the response of output voltage can be improved. PID controller is employed as compared controller. The proposed controller is able to eliminate overshoot at the beginning and able to reach the output voltage reference when some parameters changed. Based the recovery time and voltage deviation, proposed controller has the small value when it compared by PID controller.
AB - Nowadays, modern revolution of industry cause most of industry are using DC sources as power supplies. By regulating desired output voltage, DC supplies use power converters. Boost Converter is one of power converters and it has utility to convert DC voltage to higher level than input voltage. The output voltage generated by the boost converter have some faults such as overshoot in output voltage and oscillation such that the slow settling time is generated. Therefore, the sliding mode controller is used on the boost converter to improve the output voltage. The proposed controller is using power information as sliding surface. Based on the proposed controller, the response of output voltage can be improved. PID controller is employed as compared controller. The proposed controller is able to eliminate overshoot at the beginning and able to reach the output voltage reference when some parameters changed. Based the recovery time and voltage deviation, proposed controller has the small value when it compared by PID controller.
KW - Boost converter
KW - DC sources
KW - PID controller
KW - Power information
KW - Sliding mode controller
UR - https://www.scopus.com/pages/publications/85099544298
U2 - 10.1109/EECCIS49483.2020.9263442
DO - 10.1109/EECCIS49483.2020.9263442
M3 - Conference contribution
AN - SCOPUS:85099544298
T3 - EECCIS 2020 - 2020 10th Electrical Power, Electronics, Communications, Controls, and Informatics Seminar
SP - 37
EP - 42
BT - EECCIS 2020 - 2020 10th Electrical Power, Electronics, Communications, Controls, and Informatics Seminar
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 10th Electrical Power, Electronics, Communications, Controls, and Informatics Seminar, EECCIS 2020
Y2 - 26 August 2020 through 28 August 2020
ER -