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Convergence Results on Pulse Coupled Oscillator Protocols in Locally Connected Networks

机译:本地连接网络中脉冲耦合振荡器协议的收敛结果

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This paper provides new insights on the convergence of a locally connected network of pulse coupled oscillator (PCOs) (i.e., a bioinspired model for communication networks) to synchronous and desynchronous states, and their implication in terms of the decentralized synchronization and scheduling in communication networks. Bioinspired techniques have been advocated by many as fault-tolerant and scalable alternatives to produce self-organization in communication networks. The PCO dynamics, in particular, have been the source of inspiration for many network synchronization and scheduling protocols. However, their convergence properties, especially in locally connected networks, have not been fully understood, prohibiting the migration into mainstream standards. This paper provides further results on the convergence of PCOs in locally connected networks and the achievable convergence accuracy under propagation delays. For synchronization, almost sure convergence is proved for three nodes and accuracy results are obtained for general locally connected networks, whereas for scheduling (or desynchronization), results are derived for locally connected networks with mild conditions on the overlapping set of maximal cliques. These issues have not been fully addressed before in the literature.
机译:本文提供了关于脉冲耦合振荡器(PCO)本地连接网络(即通信网络的生物启发模型)收敛到同步和非同步状态的新见解,以及它们在通信网络中的分散同步和调度方面的意义。 。许多人都主张采用生物启发技术作为容错和可扩展的替代方案,以在通信网络中产生自组织。尤其是PCO动态特性已成为许多网络同步和调度协议的灵感来源。但是,它们的融合特性,尤其是在本地连接的网络中,尚未得到充分了解,从而阻碍了向主流标准的迁移。本文提供了有关本地连接网络中PCO的收敛性以及传播延迟下可实现的收敛精度的进一步结果。对于同步,几乎可以肯定地证明了三个节点的收敛性,并且为一般的本地连接网络获得了准确的结果,而对于调度(或不同步),则得出了在最大派别的重叠集上具有温和条件的本地连接网络的结果。这些问题以前没有在文献中得到充分解决。

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