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A Epidemic Style Super-node Election Method Based on Self-information Theory

机译:基于自信息理论的疫情样式超节点选举方法

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Many distributed applications such as cloud computings, grids use peer-to-peer (P2P) paradigm as the lower service. In P2P technology, the super-node paradigm can lead to improved efficiency, without compromising the decentralized nature of P2P networks. So the above applications adopt super-node paradigm to provide services. However, due to inherent dynamism, decentralisation, scale and complexity of P2P environments, self-managing super-node selection is a challenging problem. This paper present a super-node election protocol based on self-information theory and gossiping technology(SPSI). In SPSI, every node has a information vector (VI), and SPSI uses a weighted mean mechanism based on VI to promote the "best" nodes to super-node status. As we know we are the first to use self-information theory to select super-node. The paper also includes extensive simulation experiments to prove the efficiency, scalability and robustness of SPSI.
机译:许多分布式应用程序,如云计算,网格使用点对点(P2P)范例作为较低的服务。在P2P技术中,超级节点范例可以提高效率,而不会影响P2P网络的分散性。因此,上述应用程序采用超级节点范例提供服务。然而,由于固有的活力,分散,规模和P2P环境的复杂性,自我管理的超节点选择是一个具有挑战性的问题。本文基于自我信息理论和八卦技术(SPSI)的超级节点选举协议。在SPSI中,每个节点都有一个信息矢量(VI),SPSI使用基于VI的加权平均机制来推广“最佳”节点到超级节点状态。正如我们所知,我们是第一个使用自我信息理论选择超级节点的人。本文还包括广泛的模拟实验,以证明SPSI的效率,可扩展性和鲁棒性。

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