TY - JOUR
T1 - Performance evaluation for active disturbance rejection with high-order line extended state observer
AU - Zhang, Jiao
AU - Yang, Xu
AU - Liu, Yuan Xiang
AU - Yao, Xiao Xian
N1 - Publisher Copyright:
©, 2015, Northeast University. All right reserved.
PY - 2015/7/1
Y1 - 2015/7/1
N2 - Based on the linear extended state observer(LESO), a high-order LESO of high-gain form for the secondorder plant is proposed. The convergence of the state estimation error of HLESO and the stability of high-order liner active disturbance rejection control(HLADRC) is proved. Simultaneously, robustness for input gain uncertainty and model uncertainty are analyzed based on the two-degree-of-freedom(2dof) closed-loop transfer function and frequency response. Then, the region of parameter b where the closed-loop system is stable and the relationship between the dynamic characteristics of rejection for external disturbance and controller bandwidth is discussed. Finally, simulation experiment is carried out by comparing with liner liner active disturbance rejection control. The results show that the HLADRC has a stronger anti-disturbance ability and convergence performance, but in this case the LADRC has a better robust stability and performance, establishing both the conceptual and pactical foundation for engineering design.
AB - Based on the linear extended state observer(LESO), a high-order LESO of high-gain form for the secondorder plant is proposed. The convergence of the state estimation error of HLESO and the stability of high-order liner active disturbance rejection control(HLADRC) is proved. Simultaneously, robustness for input gain uncertainty and model uncertainty are analyzed based on the two-degree-of-freedom(2dof) closed-loop transfer function and frequency response. Then, the region of parameter b where the closed-loop system is stable and the relationship between the dynamic characteristics of rejection for external disturbance and controller bandwidth is discussed. Finally, simulation experiment is carried out by comparing with liner liner active disturbance rejection control. The results show that the HLADRC has a stronger anti-disturbance ability and convergence performance, but in this case the LADRC has a better robust stability and performance, establishing both the conceptual and pactical foundation for engineering design.
KW - Frequencydomain characteristics
KW - High-order line extended state observer
KW - Linear active disturbance rejection control(LADRC)
KW - Robustness
UR - http://www.scopus.com/inward/record.url?scp=84946107723&partnerID=8YFLogxK
U2 - 10.13195/j.kzyjc.2014.0563
DO - 10.13195/j.kzyjc.2014.0563
M3 - Article
AN - SCOPUS:84946107723
SN - 1001-0920
VL - 30
SP - 1162
EP - 1170
JO - Kongzhi yu Juece/Control and Decision
JF - Kongzhi yu Juece/Control and Decision
IS - 7
ER -