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首页> 外文期刊>Journal of grid computing >Capability-Aware Information Aggregation in Peer-to-Peer Grids Methods, Architecture, and Implementation
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Capability-Aware Information Aggregation in Peer-to-Peer Grids Methods, Architecture, and Implementation

机译:对等网格中的能力感知信息聚合方法,体系结构和实现

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摘要

Information aggregation is the process of summarizing information across the nodes of a distributed system. We present a hierarchical information aggregation system sensitive data delivery using a broad range of propagation strategies. Our solution combines the advantages of approaches based on Distributed Hash Tables (DHTs) (i.e., load balancing and self-maintenance) and hierarchical approaches (i.e., respecting administrative boundaries and resource limitations). Our approach is integrated into our Peer-to-Peer Grid platform COHESION. We substantiate its effectiveness through performance measurements and demonstrate its applicability through a graphical monitoring solution leveraging our aggregation system.tailored for Peer-toPeer Grids which typically exhibit a high degree of volatility and heterogeneity of resources. Aggregation is performed in a scalable yet efficient way by merging data along the edges of a logical self-healing tree with each inner node providing a. summary view of the information delivered by the nodes of the corresponding subtree. We describe different tree management methods suitable for high-efficiency and high-scalability scenarios that take host capability and stability diversity into account to attenuate the impact of slow and/or unstable hosts. We propose an architecture covering all three phases of the aggregation process: Data gathering through a highly extensible sens_ing framework, data aggregation using reusable, fully isolated reduction networks, and application
机译:信息聚合是在分布式系统的各个节点之间汇总信息的过程。我们提出了使用广泛传播策略的分层信息聚合系统敏感数据传递。我们的解决方案结合了基于分布式哈希表(DHT)的方法(即负载平衡和自我维护)和分层方法(即尊重管理边界和资源限制)的优势。我们的方法已集成到我们的对等网格平台COHESION中。我们通过性能测量来证实其有效性,并通过利用我们的聚合系统的图形监控解决方案来证明其适用性。该解决方案专为通常表现出高度波动性和资源异质性的点对点网格而设计。通过沿逻辑自愈树的边缘合并数据,并且每个内部节点提供a,以可伸缩但有效的方式执行聚合。相应子树的节点传递的信息的摘要视图。我们描述了适用于高效率和高可扩展性方案的不同树管理方法,这些方法考虑了主机功能和稳定性多样性,以减轻慢速和/或不稳定主机的影响。我们提出了一种架构,涵盖了聚合过程的所有三个阶段:通过高度可扩展的传感框架收集数据,使用可重用,完全隔离的还原网络进行数据聚合以及应用

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