Title :
H∞ filtering for networked control systems with quantization and multiple packet dropouts
Author :
Huaicheng Yan ; Zhenzhen Su ; Hongbo Shi ; Hao Zhang
Author_Institution :
Key Lab. of Adv. Control & Optimization for Chem. Processes of Minist. of Educ., East China Univ. of Sci. & Technol., Shanghai, China
Abstract :
This paper addresses the H∞ filtering problem for networked control systems with quantization and multiple packet dropouts. The effects of measurement channel and control channel quantization as well as packet dropouts are considered simultaneously due to limited communication capacity and unreliable communication links. Stochastic variables satisfying the Bernoulli random binary distribution are utilized to model the multiple packet dropouts. Sufficient conditions are proposed such that the filtering error system is exponentially mean-square stable while the H∞ disturbance rejection attenuation constraint is satisfied. Then, the explicit expression of the desired filter gains is described in terms of the solution to linear matrix inequalities (LMIs). Finally, a numerical example is employed to demonstrate the effectiveness of the proposed filter design approach.
Keywords :
H∞ control; asymptotic stability; filtering theory; linear matrix inequalities; networked control systems; stochastic systems; Bernoulli random binary distribution; H∞ disturbance rejection attenuation constraint; H∞ filtering; LMI; communication capacity; communication link; control channel quantization; exponentially mean-square stability; filter design approach; filtering error system; linear matrix inequalities; measurement channel; networked control system; packet dropout; stochastic variable; Delays; Linear matrix inequalities; Networked control systems; Quantization (signal); Robustness; Sensors; Symmetric matrices; H∞ filtering; multiple packet dropouts; networked control systems; quantization;
Conference_Titel :
Control Automation Robotics & Vision (ICARCV), 2012 12th International Conference on
Conference_Location :
Guangzhou
Print_ISBN :
978-1-4673-1871-6
Electronic_ISBN :
978-1-4673-1870-9
DOI :
10.1109/ICARCV.2012.6485371