This paper proposes an internal clock synchronization algorithm which combines the gossip-based paradigm with a nature-inspired approach coming from the coupled oscillators phenomenon. The proposed solution allows a very large number of clocks to self-synchronize without any central control, despite node departure and arrival. This addresses the needs of an emergent class of large-scale peer-to-peer applications that have to operate without any assumptions on the underlying infrastructure. Empirical evaluation shows extremely good convergence and stability under different network settings. © Springer-Verlag Berlin Heidelberg 2007.
An Adaptive Coupling-Based Algorithm for Internal Clock Synchronization of Large Scale Dynamic Systems / Baldoni, Roberto; A., Corsaro; Querzoni, Leonardo; Scipioni, Sirio; TUCCI PIERGIOVANNI, Sara. - 4803 LNCS:PART 1(2007), pp. 701-716. (Intervento presentato al convegno OTM Confederated International Conferences CoopIS, DOA, ODBASE, GADA, and IS 2007 tenutosi a Vilamoura; Portugal nel 26-28 Novembre 2007) [10.1007/978-3-540-76848-7_47].
An Adaptive Coupling-Based Algorithm for Internal Clock Synchronization of Large Scale Dynamic Systems
BALDONI, Roberto;QUERZONI, Leonardo;SCIPIONI, Sirio;TUCCI PIERGIOVANNI, sara
2007
Abstract
This paper proposes an internal clock synchronization algorithm which combines the gossip-based paradigm with a nature-inspired approach coming from the coupled oscillators phenomenon. The proposed solution allows a very large number of clocks to self-synchronize without any central control, despite node departure and arrival. This addresses the needs of an emergent class of large-scale peer-to-peer applications that have to operate without any assumptions on the underlying infrastructure. Empirical evaluation shows extremely good convergence and stability under different network settings. © Springer-Verlag Berlin Heidelberg 2007.File | Dimensione | Formato | |
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