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Alternative Distributed Algorithms for Network Utility Maximization: Framework and Applications

机译:网络效用最大化的替代分布式算法:框架和应用

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摘要

Network utility maximization (NUM) problem formulations provide an important approach to conduct network resource allocation and to view layering as optimization decomposition. In the existing literature, distributed implementations are typically achieved by means of the so-called dual decomposition technique. However, the span of decomposition possibilities includes many other elements that, thus far, have not been fully exploited, such as the use of the primal decomposition technique, the versatile introduction of auxiliary variables, and the potential of multilevel decompositions. This paper presents a systematic framework to exploit alternative decomposition structures as a way to obtain different distributed algorithms, each with a different tradeoff among convergence speed, message passing amount and asymmetry, and distributed computation architecture. Several specific applications are considered to illustrate the proposed framework, including resource-constrained and direct-control rate allocation, and rate allocation among QoS classes with multipath routing. For each of these applications, the associated generalized NUM formulation is first presented, followed by the development of novel alternative decompositions and numerical experiments on the resulting new distributed algorithms. A systematic enumeration and comparison of alternative vertical decompositions in the future will help complete a mathematical theory of network architectures.
机译:网络效用最大化(NUM)问题公式提供了进行网络资源分配并将分层视为优化分解的重要方法。在现有文献中,典型地通过所谓的双重分解技术来实现分布式实现。但是,分解可能性的范围包括到目前为止尚未充分开发的许多其他元素,例如原始分解技术的使用,辅助变量的通用引入以及多级分解的潜力。本文提出了一个系统框架,该框架利用替代分解结构作为获得不同分布式算法的方法,每个算法在收敛速度,消息传递量和不对称性以及分布式计算体系结构之间都有不同的权衡。考虑了几个特定的​​应用来说明所提出的框架,包括资源受限和直接控制的速率分配,以及具有多路径路由的QoS类之间的速率分配。对于这些应用中的每一个,首先介绍相关的广义NUM公式,然后开发新的替代分解方法,并对所得的新分布式算法进行数值实验。将来对替代垂直分解的系统枚举和比较将有助于完成网络体系结构的数学理论。

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