Title :
On Nonlinear
Filtering for Discrete-Time Stochastic Systems With Missing Measurements
Author :
Shen, Bo ; Wang, Zidong ; Shu, Huisheng ; Wei, Guoliang
Author_Institution :
Sch. of Inf. Sci. & Technol., Donghua Univ., Shanghai
Abstract :
In this paper, the H infin filtering problem is investigated for a general class of nonlinear discrete-time stochastic systems with missing measurements. The system under study is not only corrupted by state-dependent white noises but also disturbed by exogenous inputs. The measurement output contains randomly missing data that is modeled by a Bernoulli distributed white sequence with a known conditional probability. A filter of very general form is first designed such that the filtering process is stochastically stable and the filtering error satisfies H infin performance constraint for all admissible missing observations and nonzero exogenous disturbances under the zero-initial condition. The existence conditions of the desired filter are described in terms of a second-order nonlinear inequality. Such an inequality can be decoupled into some auxiliary ones that can be solved independently by taking special form of the Lyapunov functionals. As a consequence, a linear time-invariant filter design problem is discussed for the benefit of practical applications, and some simplified conditions are obtained. Finally, two numerical simulation examples are given to illustrate the main results of this paper.
Keywords :
Lyapunov methods; discrete time filters; error statistics; linear systems; nonlinear filters; stability; statistical distributions; stochastic processes; white noise; Lyapunov functional; conditional probability; filtering error; linear time-invariant filter design problem; missing measurement data; nonlinear Hinfin filtering problem; nonlinear discrete-time stochastic system; second-order nonlinear inequality; state-dependent Bernoulli distributed white noise; stochastic stability; zero-initial condition; Automatic control; Circuit stability; Eigenvalues and eigenfunctions; Filtering; Linear algebra; Linear matrix inequalities; Matrices; Rivers; Robust control; Stochastic systems; $H_{infty}$ filtering; Discrete-time systems; missing measurements; nonlinear systems; stochastic stability; stochastic systems;
Journal_Title :
Automatic Control, IEEE Transactions on
DOI :
10.1109/TAC.2008.930199