Title :
Quantized
Control for Nonlinear Stochastic Time-Delay Systems With Missing Measurements
Author :
Wang, Zidong ; Shen, Bo ; Shu, Huisheng ; Wei, Guoliang
Author_Institution :
Dept. of Inf. Syst. & Comput., Brunel Univ., Uxbridge, UK
fDate :
6/1/2012 12:00:00 AM
Abstract :
In this paper, the quantized H∞ control problem is investigated for a class of nonlinear stochastic time-delay network-based systems with probabilistic data missing. A nonlinear stochastic system with state delays is employed to model the networked control systems where the measured output and the input signals are quantized by two logarithmic quantizers, respectively. Moreover, the data missing phenomena are modeled by introducing a diagonal matrix composed of Bernoulli distributed stochastic variables taking values of 1 and 0, which describes that the data from different sensors may be lost with different missing probabilities. Subsequently, a sufficient condition is first derived in virtue of the method of sector-bounded uncertainties, which guarantees that the closed-loop system is stochastically stable and the controlled output satisfies H∞ performance constraint for all nonzero exogenous disturbances under the zero-initial condition. Then, the sufficient condition is decoupled into some inequalities for the convenience of practical verification. Based on that, quantized H∞ controllers are designed successfully for some special classes of nonlinear stochastic time-delay systems by using Matlab linear matrix inequality toolbox. Finally, a numerical simulation example is exploited to show the effectiveness and applicability of the results derived.
Keywords :
H∞ control; closed loop systems; control system synthesis; delay systems; distributed parameter systems; linear matrix inequalities; networked control systems; nonlinear control systems; stability; statistical distributions; stochastic systems; uncertain systems; Bernoulli distributed stochastic variables; H∞ performance constraint; Matlab linear matrix inequality toolbox; closed-loop system; data missing phenomena; diagonal matrix; logarithmic quantizers; measured input signals; measured output signals; missing measurements; networked control systems; nonlinear stochastic time-delay systems; nonzero exogenous disturbances; numerical simulation; probabilistic data missing; quantized H∞ control problem; sector-bounded uncertainties; state delays; stochastic stability; zero-initial condition; Delay; Educational institutions; Networked control systems; Quantization; Sensors; Stochastic processes; Stochastic systems; $H_{infty }$ control; data missing; discrete time-delay systems; networked control systems (NCSs); nonlinear systems; quantized control; stochastic systems;
Journal_Title :
Automatic Control, IEEE Transactions on
DOI :
10.1109/TAC.2011.2176362