DocumentCode :
184700
Title :
Step size analysis in discrete-time dynamic average consensus
Author :
Montijano, Eduardo ; Montijano, Juan I. ; Sagues, Carlos ; Martinez, Sonia
Author_Institution :
Inst. de Investig. en Ing. de Aragon (I3A), Centro Univ. de la Defensa (CUD), Zaragoza, Spain
fYear :
2014
fDate :
4-6 June 2014
Firstpage :
5127
Lastpage :
5132
Abstract :
This paper deals with the problem of reaching the average consensus of a set of time-varying reference signals in a distributed manner. We analyze the approach initially presented in [1], giving an alternative proof of convergence which leads to larger, more realistic bounds on the step sizes that guarantee a steady-state error upper-bounded by a given constant. The interest of the new results appear when the algorithm is used in real networks, where there are constraints in the communication rate between the nodes. We derive the bounds for the cases of fixed and time-varying communication topologies, as well as for different orders of the algorithm. We demonstrate that our bounds always allow substantially bigger step sizes than those in [1], independently of the number of nodes or the topology. Moreover, for a fixed step size and steady-state error, we show how there is a corresponding algorithm that can guarantee that the error is no larger than the desired one, using that step size. Finally, simulation results corroborate the theoretical findings of the paper.
Keywords :
discrete time systems; time-varying systems; discrete-time dynamic average consensus; fixed communication topologies; steady-state error; step size analysis; time-varying communication topologies; time-varying reference signals; Convergence; Eigenvalues and eigenfunctions; Equations; Heuristic algorithms; Network topology; Steady-state; Topology; Agents-based systems; Networked control systems; Sensor fusion;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
American Control Conference (ACC), 2014
Conference_Location :
Portland, OR
ISSN :
0743-1619
Print_ISBN :
978-1-4799-3272-6
Type :
conf
DOI :
10.1109/ACC.2014.6859239
Filename :
6859239
Link To Document :
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