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A Self-Organization Mechanism Based on Cross-Entropy Method for P2P-Like Applications

机译:基于交叉熵方法的自组织机制,在P2P类应用中

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摘要

P2P-like applications are quickly gaining popularity in the Internet. Such applications are commonly modeled as graphs with nodes and edges. Usually nodes represent running processes that exchange information with each other through communication channels as represented by the edges. They often need to autonomously determine their suitable working mode or local status for the purpose of improving performance, reducing operation cost, or achieving system-level design goals. In order to achieve this objective, the concept of status configuration is introduced in this article and a mathematical correspondence is further established between status configuration and an optimization index (OI), which serves as a unified abstraction of any system design goals. Guided by this correspondence and inspired by the cross-entropy algorithm, a cross-entropy-driven self-organization mechanism (CESM) is proposed in this article. CESM exhibits the self-organization property since desirable status configurations that lead to high OI values will quickly emerge from purely localized interactions. Both theoretical and experimental analysis have been performed. The results strongly indicate that CESM is a simple yet effective technique which is potentially suitable for many P2P-like applications.
机译:类似P2P的应用程序在Internet中迅速流行。通常将此类应用程序建模为带有节点和边的图。通常,节点代表正在运行的进程,这些进程通过边缘所代表的通信通道彼此交换信息。他们通常需要自主确定合适的工作模式或本地状态,以提高性能,降低运营成本或实现系统级设计目标。为了实现此目标,本文引入了状态配置的概念,并在状态配置和优化指标(OI)之间建立了数学对应关系,该指标可作为任何系统设计目标的统一抽象。在这种对应关系的指导下,在交叉熵算法的启发下,本文提出了一种交叉熵驱动的自组织机制(CESM)。 CESM具有自组织特性,因为导致高OI值的理想状态配置将很快从纯粹的局部交互中出现。理论和实验分析均已进行。结果强烈表明,CESM是一种简单而有效的技术,可能适用于许多类似P2P的应用程序。

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