分层作为优化分解:框架和例子

M. Chiang, S. Low, R. Calderbank, J. Doyle
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引用次数: 10

摘要

分层体系结构中的网络协议历来主要是在ad-hoc基础上获得的。最近的研究表明,网络协议可以整体分析和系统地设计为网络效用最大化(NUM)形式的一些全局优化问题的分布式解决方案,从而深入了解它们优化的内容和网络协议栈的结构。本文简要介绍了最近对“分层”作为“优化分解”的系统理解的努力,其中整个通信网络由广义NUM问题建模,每层对应一个分解的子问题,层之间的接口被量化为协调子问题的优化变量的函数。不同的分解导致不同的分层体系结构。我们总结了几个横向分解为分布式计算和纵向分解为功能模块的例子,如拥塞控制、路由、调度、随机访问、电源控制和编码。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Layering As Optimization Decomposition: Framework and Examples
Network protocols in layered architectures have historically been obtained primarily on an ad-hoc basis. Recent research has shown that network protocols may instead be holistically analyzed and systematically designed as distributed solutions to some global optimization problems in the form of Network Utility Maximization (NUM), providing insight into what they optimize and structures of the network protocol stack. This paper presents a short survey of the recent efforts towards a systematic understanding of 'layering' as 'optimization decomposition', where the overall communication network is modeled by a generalized NUM problem, each layer corresponds to a decomposed subproblem, and the interfaces among layers are quantified as functions of the optimization variables coordinating the sub-problems. Different decompositions lead to alternative layering architectures. We summarize several examples of horizontal decomposition into distributed computation and vertical decomposition into functional modules such as congestion control, routing, scheduling, random access, power control, and coding.
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