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A Peer-to-peer Decentralized Strategy For Resource Management In Computationalgrids

机译:计算网格中资源管理的点对点分散策略

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This paper presents a peer-to-peer (P2P) approach for the management, in a computational Grid, of those resources that are featured by numerical quantity and thus characterized by a coefficient of utilization, such as percentage of CPU time, disk space, memory space, etc. The proposed approach exploits spatial computing concepts and models a Grid by means of a flat P2P architecture consisting of nodes connected by an overlay network; such a network topology, together with the quantity of resource available in each node, forms a three-dimensional surface, where valleys correspond to nodes with a large quantity of available resource. In this scenario, this paper proposes an algorithm for resource discovery that is based on navigating such a surface, in search of the deepest valley (global minimum, that is, the best node). The algorithm, which aims at fairly distributing among nodes the quantity of leased resource, is based on some heuristics that mimic the laws of kinematics. Experimental results show the effectiveness of the algorithm.
机译:本文提出了一种对等(P2P)方法,用于在计算网格中管理那些具有数量特征并因此具有利用率(例如CPU时间百分比,磁盘空间百分比,所提出的方法利用空间计算概念,并通过由覆盖网络连接的节点组成的平面P2P架构对网格进行建模。这样的网络拓扑与每个节点中可用资源的数量一起形成了一个三维表面,其中山谷对应于具有大量可用资源的节点。在这种情况下,本文提出了一种用于资源发现的算法,该算法基于导航这样的表面,以搜索最深的山谷(全局最小值,即最佳节点)。该算法旨在在节点之间公平分配租赁资源的数量,该算法基于模仿运动学定律的启发式算法。实验结果表明了该算法的有效性。

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