학술논문

Combination of Lyapunov and Density Functions for Stability of Rotational Motion
Document Type
Periodical
Source
IEEE Transactions on Automatic Control IEEE Trans. Automat. Contr. Automatic Control, IEEE Transactions on. 56(11):2599-2607 Nov, 2011
Subject
Signal Processing and Analysis
Density functional theory
Trajectory
Observers
Lyapunov method
Noise
Stability criteria
Asymptotic stability
density functions
input-to-state stability
Lyapunov methods
Language
ISSN
0018-9286
1558-2523
2334-3303
Abstract
Lyapunov methods and density functions provide dual characterizations of the solutions of a nonlinear dynamic system. This work exploits the idea of combining both techniques, to yield stability results that are valid for almost all the solutions of the system. Based on the combination of Lyapunov and density functions, analysis methods are proposed for the derivation of almost input-to-state stability, and of almost global stability in nonlinear systems. The techniques are illustrated for an inertial attitude observer, where angular velocity readings are corrupted by non-idealities.