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The CoQUOS Approach to Continuous Queries in Unstructured Overlays

机译:CoQUOS方法用于非结构化覆盖中的连续查询

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The current peer-to-peer (P2P) content distribution systems are constricted by their simple on-demand content discovery mechanism. The utility of these systems can be greatly enhanced by incorporating two capabilities, namely a mechanism through which peers can register their long term interests with the network so that they can be continuously notified of new data items, and a means for the peers to advertise their contents. Although researchers have proposed a few unstructured overlay-based publish-subscribe systems that provide the above capabilities, most of these systems require intricate indexing and routing schemes, which not only make them highly complex but also render the overlay network less flexible toward transient peers. This paper argues that for many P2P applications, implementing full-fledged publish-subscribe systems is an overkill. For these applications, we study the alternate continuous query paradigm, which is a best-effort service providing the above two capabilities. We present a scalable and effective middleware, called CoQUOS, for supporting continuous queries in unstructured overlay networks. Besides being independent of the overlay topology, CoQUOS preserves the simplicity and flexibility of the unstructured P2P network. Our design of the CoQUOS system is characterized by two novel techniques, namely cluster-resilient random walk algorithm for propagating the queries to various regions of the network and dynamic probability-based query registration scheme to ensure that the registrations are well distributed in the overlay. Further, we also develop effective and efficient schemes for providing resilience to the churn of the P2P network and for ensuring a fair distribution of the notification load among the peers. This paper studies the properties of our algorithms through theoretical analysis. We also report series of experiments evaluating the effectiveness and the costs of the proposed schemes.
机译:当前的点对点(P2P)内容分发系统受到其简单的按需内容发现机制的限制。通过合并两项功能,可以大大增强这些系统的实用性,即一种机制,通过该机制,对等方可以在网络上注册其长期利益,以便可以连续地向他们通知新的数据项;以及一种使对等方宣传其数据的方法。内容。尽管研究人员提出了一些提供上述功能的非结构化,基于覆盖的发布-订阅系统,但其中大多数系统都需要复杂的索引和路由方案,这不仅使它们变得非常复杂,而且使覆盖网络对瞬态对等体的灵活性降低。本文认为,对于许多P2P应用程序而言,实施成熟的发布-订阅系统是过大的选择。对于这些应用程序,我们研究备用连续查询范例,这是一种提供上述两种功能的尽力而为服务。我们提出了一种可扩展且有效的中间件,称为CoQUOS,用于支持非结构化覆盖网络中的连续查询。除了独立于覆盖拓扑之外,CoQUOS还保留了非结构化P2P网络的简单性和灵活性。我们对CoQUOS系统的设计具有两种新颖的技术,即用于将查询传播到网络各个区域的集群弹性随机游走算法和基于动态概率的查询注册方案,以确保注册在覆盖层中分布良好。此外,我们还开发了有效且高效的方案,以为P2P网络的流失提供弹性,并确保对等方之间的通知负载公平分配。本文通过理论分析研究了我们算法的性质。我们还报告了一系列实验,评估了所提议方案的有效性和成本。

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