Optimal resource allocation on heterogeneous complex transport networks

Weikai Liu, Z. Guan, Ruiquan Liao
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引用次数: 3

Abstract

In recent years, for the investigation of traffic-flow dynamics on complex networks, many existing works have focused on improving the networks resilience of congestion to enhance the transport capacity of the networks. The study in this direction can be roughly classified into two categories. One involves adjusting the topology structure of the underlying network and the other designing better routing strategies. However, the crucial role taken by the distribution of resources is largely ignored. In this paper, the problem of optimal resource allocation on heterogeneous complex transport networks is studied. An explicit analytical solution is provided, which is based on M/M/1 queueing theory and optimization principle, provided that the network structure and routing strategy are given. Finally, an order parameter simulation example by comparing results with those obtained via simple resource allocation in large Barabasi-Albert (BA) scale-free network is provided to illustrate the effectiveness of the theoretical results.
异构复杂传输网络的最优资源配置
近年来,对于复杂网络交通流动力学的研究,许多现有的工作都侧重于提高网络的拥堵弹性,以提高网络的运输能力。这方面的研究大致可以分为两类。一种是调整底层网络的拓扑结构,另一种是设计更好的路由策略。然而,资源分配所起的关键作用在很大程度上被忽视了。研究了异构复杂运输网络中的资源优化配置问题。在给出网络结构和路由策略的前提下,给出了基于M/M/1排队理论和优化原理的显式解析解。最后,通过与大型Barabasi-Albert (BA)无标度网络中简单资源分配结果的对比,给出了一个阶参数仿真实例,验证了理论结果的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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