Title :
Stability of interval matrices using the distance to the set of unstable matrices
Author :
Rojas, J.A. ; Collado, J.M.
Author_Institution :
Fac. de Ingenieria Mecanica y Electr., Univ. Autonoma de Nuevo Leon, Mexico
fDate :
29 June-1 July 1994
Abstract :
We describe sufficient conditions to guarantee stability of interval matrices, based on the distance of the centroid matrix to the set of unstable matrices. We define the centroid matrix as the arithmetic average of the two matrices that define the interval matrix family. First we find the longest distance of the centroid matrix to any of the 2n×n corners of the interval matrix, next, we calculate a lower bound of the distance of the centroid matrix to Q, where Q is the set of the matrices with at least one eigenvalue on the imaginary axis. The result is: If the longest distance from the centroid matrix to any of the 2n×n corners is less than the distance of the centroid matrix to Q, then the interval matrix is stable. The result is the best possible when the uncertainty in every entry is the same. We give numerical examples to illustrate the result.
Keywords :
eigenvalues and eigenfunctions; matrix algebra; stability criteria; centroid matrix; eigenvalue; guaranteed stability; interval matrix stability; unstable matrices; Arithmetic; Artificial intelligence; Eigenvalues and eigenfunctions; Equations; Linear systems; Stability; Sufficient conditions; Testing; Uncertain systems; Uncertainty;
Conference_Titel :
American Control Conference, 1994
Print_ISBN :
0-7803-1783-1
DOI :
10.1109/ACC.1994.751732