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An optimal routing strategy for transport networks with minimal transmission cost and high network capacity

机译:具有最小传输成本和高网络容量的传输网络的最佳路由策略

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摘要

This paper proposes a routing strategy by minimizing an integrated transmission cost including route cost, distance cost, and traffic pressure cost, which are quantified based on the available transportation routes and travel distance of edges, and the degree of nodes, respectively. In the routing strategy, an arriving rate function is proposed based on the characteristics of heterogeneous traffic demand of nodes, and two parameters, congestion parameter and cost importance parameter are proposed to evaluate the importance of different transmission costs. By tuning the parameters, an optimal routing strategy with high capacity is obtained for different applications. The numerical results on theoretical networks (Watts-Strogatz small-world network and Barabasi-Albert network) and real networks (the bus and metro network in Beijing, China) show that the generated new routing strategy can significantly improve the system capacity and operation efficiency. Moreover, the significance of the proposed parameters on evaluating the importance of different transmission costs is precisely proved based on the experimental results, which indicates the effectiveness of the proposed routing strategy. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文通过最小化包括路径成本,距离成本和业务压力成本的集成传输成本来提出路由策略,这些传输成本基于可用的运输路线和边缘的行进距离以及节点的程度来定量。在路由策略中,提出了基于节点的异构交通需求特征的到达率函数,以及两个参数,拥塞参数和成本重要性参数,以评估不同传输成本的重要性。通过调整参数,针对不同的应用获得具有高容量的最佳路由策略。在理论网络(Watts-Strogatz小世界网络和Barabasi-Albert网络)和真实网络(北京的总线网络)的数值结果表明,生成的新路由策略可以显着提高系统能力和运营效率。此外,基于实验结果,精确证明了所提出参数对评估不同传输成本的重要性的重要性,这表明了所提出的路由策略的有效性。 (c)2019 Elsevier B.v.保留所有权利。

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