DocumentCode
3328775
Title
Optimal Distributed Decision Over Wireless Sensor Networks Affected by Multipath Fading
Author
Scutari, Gesualdo ; Barbarossa, Sergio
Author_Institution
Dipt. INFOCOM, Univ. of Rome La Sapienza, Rome
fYear
2007
fDate
12-14 Dec. 2007
Firstpage
245
Lastpage
248
Abstract
The design of sensor networks capable of reaching a consensus on a globally optimal decision test, without the need for a fusion center, is a problem that has received considerable attention in the last years. Many consensus algorithms have been proposed, with convergence conditions depending on the graph describing the interaction among the nodes. In most works, the graph is undirected and there are no propagation delays. Only recently, the analysis has been extended to consensus algorithms incorporating a homogeneous delay. The more realistic case of inhomogeneous delays has been considered only for agreement algorithms, whose goal is to make all nodes able to reach a common value, but without the need to force such a final value to coincide with a prescribed globally optimal decision function. In this work, we propose a consensus algorithm where each node converges to a globally optimal decision statistic, valid for a wideband wireless network, where the link between each pair of nodes is a multipath, frequency-selective, channel. The main contribution of the paper is to derive necessary and sufficient conditions on the network topology and sufficient conditions on the channel transfer functions guaranteeing the exponential convergence of the proposed algorithm to a globally optimal decision value, for any bounded delay condition.
Keywords
decision theory; directed graphs; fading channels; multipath channels; telecommunication network topology; wireless sensor networks; consensus algorithms; digraphs; frequency-selective channel; homogeneous delay; multipath fading channel; network topology; optimal distributed decision statistic; wireless sensor networks; Algorithm design and analysis; Convergence; Fading; Propagation delay; Sensor fusion; Statistics; Sufficient conditions; Testing; Wideband; Wireless sensor networks;
fLanguage
English
Publisher
ieee
Conference_Titel
Computational Advances in Multi-Sensor Adaptive Processing, 2007. CAMPSAP 2007. 2nd IEEE International Workshop on
Conference_Location
St. Thomas, VI
Print_ISBN
978-1-4244-1713-1
Electronic_ISBN
978-1-4244-1714-8
Type
conf
DOI
10.1109/CAMSAP.2007.4498011
Filename
4498011
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