Title
H∞ filtering for multiple channel systems with varying delays, consecutive packet losses and randomly occurred nonlinearities.
Abstract
In this paper, we deal with the H∞ filtering problem for a class of multiple channel network-based systems. The system under consideration contains random varying delays, consecutive packet losses, as well as sector-bounded nonlinearities with random occurrence. A group of mutually independent stochastic variables satisfying Bernoulli distributions is introduced to model the addressed system. A linear full-order filter is designed such that, in the presence of all admissible time delays, packet losses and random nonlinearities, the dynamics of the filtering error is guaranteed to be exponentially stable in the mean square sense, and the prescribed H∞ disturbance rejection attenuation level is also achieved. Sufficient conditions are established for the existence of the desired filters. The explicit expression of the desired filter gains can be obtained by solving the feasibility of a linear matrix inequality (LMI). The illustrative examples are given to demonstrate the effectiveness of the proposed method.
Year
DOI
Venue
2014
10.1016/j.sigpro.2014.05.002
Signal Processing
Keywords
Field
DocType
H∞ filter,Networked control system,Consecutive packet loss,Varying delay,Randomly occurred nonlinearity,Linear matrix inequality
Mathematical optimization,Networked control system,Control theory,Network packet,Filter (signal processing),Filtering problem,Exponential stability,Linear matrix inequality,Mathematics,Independence (probability theory),Bernoulli's principle
Journal
Volume
ISSN
Citations 
105
0165-1684
7
PageRank 
References 
Authors
0.47
17
2
Name
Order
Citations
PageRank
Xiu-Ying Li1110.88
Shuli Sun273452.41