In this paper, we propose a distributed method to control the connectivity of wireless ad hoc networks taking into account the impairments resulting from the propagation through realistic channel models incorporating fading, noise and packet collision. We illustrate a mechanism to estimate the algebraic connectivity of the expected graph and we show that the method is robust against random packet drops. Then, we show how the algebraic connectivity of the expected graph Laplacian depends on the transmit power of each node. The interesting result is that there exists an optimal power that maximizes the algebraic connectivity, as a tradeoff between the degree of each node and the number of collisions. Finally, we propose a distributed algorithm to evaluate the optimal transmission power that maximizes the network connectivity in the presence of realistic MAC protocols. © 2013 EURASIP.

Distributed control of wireless ad-hoc networks connectivity incorporating realistic channel models / DI LORENZO, Paolo; Barbarossa, Sergio. - (2013), pp. 1-5. (Intervento presentato al convegno 2013 21st European Signal Processing Conference, EUSIPCO 2013 tenutosi a Marrakech; Morocco nel 9 September 2013 through 13 September 2013).

Distributed control of wireless ad-hoc networks connectivity incorporating realistic channel models

DI LORENZO, PAOLO;BARBAROSSA, Sergio
2013

Abstract

In this paper, we propose a distributed method to control the connectivity of wireless ad hoc networks taking into account the impairments resulting from the propagation through realistic channel models incorporating fading, noise and packet collision. We illustrate a mechanism to estimate the algebraic connectivity of the expected graph and we show that the method is robust against random packet drops. Then, we show how the algebraic connectivity of the expected graph Laplacian depends on the transmit power of each node. The interesting result is that there exists an optimal power that maximizes the algebraic connectivity, as a tradeoff between the degree of each node and the number of collisions. Finally, we propose a distributed algorithm to evaluate the optimal transmission power that maximizes the network connectivity in the presence of realistic MAC protocols. © 2013 EURASIP.
2013
2013 21st European Signal Processing Conference, EUSIPCO 2013
ad hoc networks; collisions; expected connectivity; stochastic approximation
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
Distributed control of wireless ad-hoc networks connectivity incorporating realistic channel models / DI LORENZO, Paolo; Barbarossa, Sergio. - (2013), pp. 1-5. (Intervento presentato al convegno 2013 21st European Signal Processing Conference, EUSIPCO 2013 tenutosi a Marrakech; Morocco nel 9 September 2013 through 13 September 2013).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/772177
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