使用耗散结构使分布式系统与其环境相匹配

J. Dowling, D. Dahlem, J. Sacha
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引用次数: 1

摘要

与计算机系统的大量理论工作相比,分布式系统不是理想化的结构,不受物理世界的限制。它们的设计必须考虑到网络延迟、不同的节点能力、不同的应用程序行为和意外故障等有限的、现实世界的属性。我们在系统环境的一般区域下描述的这些真实世界的属性具有规律性或异质性,通常可以建模为随机过程,通常使用众所周知的分布。本文提出用耗散结构作为模型来捕捉这些随机过程的性质信息。在耗散系统中,代理(或节点)从其本地环境中获取信息,并共同构建结构,以获取系统环境中最近的规则性或异质性的知识。耗散结构是一种很有前途的技术,可以在不需要过多消息传递的情况下在代理之间传递系统环境的知识。这种方法提供了在减少系统环境不确定性的基础上构建更有效的搜索算法的希望
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Matching distributed systems to their environment using dissipative structures
In contrast to a large body of theoretical work on computer systems, distributed systems are not idealised constructions, unconstrained by physical world limitations. They must be designed to account for limiting, real-world properties such as network latency, varying node capabilities, varying application behaviour and unexpected failures. These real-world properties that we describe under the general area of a system's environment have regularities or heterogeneities that can often be modelled as a stochastic process, often using well-known distributions. This paper proposes dissipative structures as a model to capture information about properties of these stochastic processes. In dissipative systems, agents (or nodes) sample information from their local environments and collectively build structures that capture knowledge of recent regularities or heterogeneities in the system's environment. Dissipative structures are a promising technique for transferring knowledge of the system's environment among agents without requiring excessive message passing. This approach offers the promise of building more efficient search algorithms based on reduced uncertainty of the system's environment
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