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An Efficient Control Mechanism for Self-Organizing Overlay Networks of Large-Scale P2P Systems

机译:大型P2P系统自组织覆盖网络的有效控制机制

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P2P (Peer to Peer) has a great potential to handle highly-distributed computing resources and is expected to be a key technology to realize ubiquitous computing environments over the Internet. However, P2P systems tend to waste the network bandwidth for resource acquisition because of their decentralized resource management. This paper presents an efficient control mechanism for self-organizing overlay networks of large-scale P2P systems, and evaluate its performance in detail. The overlay network is configured by making local clusters reflect current interests of individual peers and connecting them together based on their similarity. As a result, the overlay network provides the resource exploitation space for some specific interests. In addition, the overlay network can dynamically be reconfigured based on the change in the interests of individual peers across time so that more useful peers at that time can be reconnected closer to their client peers. Therefore, multicasting of resource requesting messages can be carried out only over peers with similar interests that are dynamically connected through the overlay network, resulting in a remarkable decrease in both messages for resource acquisition and hops a resource requesting query travels to reach the peer that satisfies the request. Experimental results indicate that the proposed mechanism can realize effective self-organization of the overlay network in which useful peers are dynamically relocated around client peers. In addition, the adaptive allocation of links to peers according to their capability works well to keep the higher performance and fault-tolerance of the self-organizing overlay network.
机译:P2P(点对点)在处理高度分散的计算资源方面具有巨大潜力,并且有望成为在Internet上实现无处不在的计算环境的关键技术。但是,由于P2P系统分散了资源管理,因此往往会浪费网络带宽来获取资源。本文提出了一种用于自组织大型P2P系统覆盖网络的有效控制机制,并对其性能进行了详细评估。通过使本地群集反映各个对等节点的当前兴趣,并根据它们的相似性将它们连接在一起,来配置覆盖网络。结果,覆盖网络为某些特定兴趣提供资源开发空间。此外,可以根据各个对等点随时间变化的兴趣动态地重新配置覆盖网络,以便可以在那时将更有用的对等点重新连接到更接近其客户端对等点的位置。因此,只能在通过覆盖网络动态连接的具有相似兴趣的对等方上进行资源请求消息的多播,从而导致用于资源获取的两条消息均显着减少,并希望资源请求查询传播到满足条件的对等方请求。实验结果表明,所提出的机制可以实现覆盖网络的有效自组织,在覆盖网络中有用的对等体可以在客户端对等体周围动态地重新定位。此外,根据对等体的能力对对等体进行链路自适应分配可以很好地保持自组织覆盖网络的更高性能和容错能力。

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