Title :
A general theory for analysis and design of robust pole clustering in subregions of the complex plane
Author :
Wang, Sheng-Guo ; Shieh, Leang S.
Author_Institution :
Dept. of Electr. Eng., Houston Univ., TX, USA
fDate :
29 June-1 July 1994
Abstract :
This paper presents a general theory for analysis and design of robust pole clustering in a very general subregion Ω of the complex plane for uncertain systems with unstructured or structured uncertainties. The pole clustering regions of interest cover any Ω-transformable and non-Ω-transformable Ω-regions which are broader than those reported in the literature. Discussions regarding robust D-stability (robust pole clustering) and quadratic D-stability (quadratic pole clustering) are presented. Based on the Rayleigh principle, three new approaches are developed for analysis of robust pole clustering in a general subregion Ω of the complex plane. By applying these analysis results, an output-feedback robust D-stability design method is developed for a general regional-pole placement of uncertain systems.
Keywords :
control system analysis; control system synthesis; feedback; poles and zeros; robust control; uncertain systems; Ω-transformable regions; Rayleigh principle; complex plane; general regional-pole placement; general theory; nonΩ-transformable regions; output-feedback robust D-stability design method; quadratic D-stability; quadratic pole clustering; robust pole clustering; structured uncertainties; uncertain systems; unstructured uncertainties; Control systems; Design methodology; Frequency domain analysis; Programmable logic arrays; Robust control; Robust stability; Robustness; Transient response; Uncertain systems; Uncertainty;
Conference_Titel :
American Control Conference, 1994
Print_ISBN :
0-7803-1783-1
DOI :
10.1109/ACC.1994.751815