Title :
Robust control of identified reduced-interval transfer function
Author :
Lew, Jiann-Shiun ; Lim, Kyong B.
Author_Institution :
Center of Excellence in Inf. Syst., Tennessee State Univ., Nashville, TN, USA
fDate :
9/1/2000 12:00:00 AM
Abstract :
We propose and demonstrate the use of a reduced-interval transfer function for robust control design of a system with parametric uncertainty. A singular value decomposition technique is used to model a system with parametric uncertainty via an interval transfer function, where each interval represents one bounded uncertainty parameter. The interval lengths can be used to determine the number of intervals of the reduced-interval transfer function, which is used to form an uncertainty structure for application in robust control such as μ-synthesis. A major benefit of working with a reduced-interval model is the simplicity and computational efficiency in analyzing and designing the robust controller. Also the order of the designed controller may be significantly reduced by using a reduced-interval model. To verify the system performance of the designed controller based on the reduced-interval model, we present a combined algorithm consisting of a sensitivity analysis and interval polynomial techniques
Keywords :
Control system analysis; Control system synthesis; Polynomials; Robust control; Sensitivity analysis; Singular value decomposition; Uncertain systems; μ-synthesis; bounded uncertainty; computational efficiency; identified reduced-interval transfer function; interval polynomial techniques; parametric uncertainty; robust control design; Aerodynamics; Algorithm design and analysis; Computational efficiency; Polynomials; Robust control; Sensitivity analysis; Singular value decomposition; Transfer functions; Uncertain systems; Uncertainty;
Journal_Title :
Control Systems Technology, IEEE Transactions on