Title :
Generalized design of disturbance observer for non-minimum phase system using an H-infinity approach
Author :
Hyung-Tae Seo ; Kyung-Soo Kim ; Soohyun Kim
Author_Institution :
Dept. of Mech. Eng., KAIST, Daejeon, South Korea
Abstract :
In the paper, a generalized design of a disturbance observer formulated in the transfer function domain is presented for a class of single-input single-output (SISO) linear systems. Since conventional approaches seem to have difficulties in handling all general cases and the Linear Matrix Inequalities (LMI) based H-infinity optimization problem can deal with all linear plants, the proposed disturbance observer is generally designed using an H-infinity approach. First, a general frame of a disturbance observer is proposed when control input and system output are available. Then, from the frame, the H-infinity optimization problem for minimizing L2-norm of a weighted disturbance estimation error is formulated. Furthermore, it will be shown that the proposed design methodology contains conventional approaches by deriving the robust stability condition of overall closed-loop using coprime factorization. Through numerical examples, the effectiveness and advantages of the proposed approach will be demonstrated.
Keywords :
H∞ optimisation; estimation theory; linear matrix inequalities; linear systems; matrix decomposition; observers; robust control; transfer functions; LMI based H infinity optimization problem; SISO linear systems; closed loop; control input; coprime factorization; disturbance observer; generalized design; linear matrix inequalities; nonminimum phase system; robust stability condition; single input single output linear systems; system output; transfer function domain; weighted disturbance estimation error; H infinity control; Hafnium; Robustness; Disturbance observer; Generalized plant; LFT; LMI; Non-minimum phase system;
Conference_Titel :
Control, Automation and Systems (ICCAS), 2013 13th International Conference on
Conference_Location :
Gwangju
Print_ISBN :
978-89-93215-05-2
DOI :
10.1109/ICCAS.2013.6703853