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首页> 外文期刊>Operations Research: The Journal of the Operations Research Society of America >Managing redundancy in distributed computer networks: A state transition graph approach for the stashing problem
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Managing redundancy in distributed computer networks: A state transition graph approach for the stashing problem

机译:管理分布式计算机网络中的冗余:用于存储问题的状态转移图方法

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摘要

Managing redundant information is becoming an important issue in today's increasingly large distributed computer networks. As total redundancy is extremely costly to achieve, it has been proposed to keep perfectly updated information only at the servers, while keeping old copies of that information on local computers. For such copies to be useful, a maximum lifetime length is assigned to them. Before the lifetime has elapsed, the local devices must be stashed with a new updated copy. The problem of optimizing the updates so that the maximum lifetime length constraints are respected has been previously formulated as a binary problem and proved to be NP-hard through a reduction to the Steiner tree problem in graphs. In this paper we explore the properties of another formulation, based on a state transition graph approach. We prove that only a subset of states and transitions will be in the optimal solution and that, thanks to those properties, it is possible to greatly reduce the size of the graph. A solution algorithm that is based on an efficient evaluation of similar Steiner tree problems with similar properties is presented. We discuss extensions of this problem to future applications of broadband multicast services. [References: 15]
机译:在当今日益庞大的分布式计算机网络中,管理冗余信息已成为重要的问题。由于实现完全冗余非常昂贵,因此建议仅在服务器上保留完全更新的信息,同时将这些信息的旧副本保留在本地计算机上。为了使此类副本有用,已为其分配了最大生存期长度。在生命周期结束之前,必须使用新的更新副本来存放本地设备。先前已将优化更新以遵守最大生命周期长度约束的问题描述为二进制问题,并通过将图中的Steiner树问题简化为NP-难问题。在本文中,我们基于状态转移图方法探索另一种配方的特性。我们证明,状态和转移的子集将处于最佳解决方案中,并且由于这些特性,可以极大地减小图形的大小。提出了一种基于具有相似属性的相似Steiner树问题的有效评估的求解算法。我们讨论将这个问题扩展到宽带多播服务的未来应用。 [参考:15]

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