DocumentCode :
3846678
Title :
Weight Optimization for Consensus Algorithms With Correlated Switching Topology
Author :
Dušan Jakovetić;João ;José M. F.
Author_Institution :
SIPG-Signal and Image Processing Group, Department of Electrical and Computer Engineering, Instituto Superior T?cnico (IST), Institute for Systems and Robotics (ISR), Carnegie Mellon University, Lisboa, Pittsburgh, PortugalPA, USA
Volume :
58
Issue :
7
fYear :
2010
fDate :
7/1/2010 12:00:00 AM
Firstpage :
3788
Lastpage :
3801
Abstract :
We design the weights in consensus algorithms for spatially correlated random topologies. These arise with 1) networks with spatially correlated random link failures and 2) networks with randomized averaging protocols. We show that the weight optimization problem is convex for both symmetric and asymmetric random graphs. With symmetric random networks, we choose the consensus mean-square error (MSE) convergence rate as the optimization criterion and explicitly express this rate as a function of the link formation probabilities, the link formation spatial correlations, and the consensus weights. We prove that the MSE convergence rate is a convex, nonsmooth function of the weights, enabling global optimization of the weights for arbitrary link formation probabilities and link correlation structures. We extend our results to the case of asymmetric random links. We adopt as optimization criterion the mean-square deviation (MSdev) of the nodes´ states from the current average state. We prove that MSdev is a convex function of the weights. Simulations show that significant performance gain is achieved with our weight design method when compared with other methods available in the literature.
Keywords :
"Network topology","Convergence","Protocols","Wireless sensor networks","Distributed algorithms","Algorithm design and analysis","Performance gain","Design methodology","Communication switching","Computer networks"
Journal_Title :
IEEE Transactions on Signal Processing
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2010.2046635
Filename :
5438795
Link To Document :
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