Title :
Mean square average consensus of multi-agent systems with time-varying topologies and stochastic communication noises
Author :
Tao, Li ; Jifeng, Zhang
Author_Institution :
Key Lab. of Syst. & Control, Chinese Acad. of Sci., Beijing
Abstract :
This paper investigates the average-consensus problem of first-order discrete-time multi-agent networks in uncertain communication environments. Each agent can only use its own and neighborspsila information with stochastic communication noises to design its control input. To attenuate the noises, a distributed stochastic approximation type protocol is proposed. By using probability limit theory and algebraic graph theory, consensus conditions for this kind of protocols are obtained. A necessary and sufficient condition for mean square average-consensus is given for the case of fixed topologies; and sufficient conditions are given for the case of time-varying topologies. Especially, if the network switches between jointly-containing-spanning-tree, balanced graphs, then the designed protocol can guarantee that each individual state converges in mean square to a common random variable, whose expectation is right the average of the initial states of the whole system.
Keywords :
control engineering computing; control system synthesis; distributed control; graph theory; least mean squares methods; multi-agent systems; stochastic systems; algebraic graph theory; control input design; distributed stochastic approximation; first-order discrete-time networks; mean square average consensus; mean square average-consensus; multiagent systems; probability limit theory; stochastic communication noises; time-varying topologies; uncertain communication environments; Communication system control; Graph theory; Multiagent systems; Network topology; Protocols; Stochastic resonance; Stochastic systems; Sufficient conditions; Time varying systems; Working environment noise; Average-consensus; Distribution coordination; Multi-agent system; Time-varying topology;
Conference_Titel :
Control Conference, 2008. CCC 2008. 27th Chinese
Conference_Location :
Kunming
Print_ISBN :
978-7-900719-70-6
Electronic_ISBN :
978-7-900719-70-6
DOI :
10.1109/CHICC.2008.4605869