Optimal bandwidth allocation with dynamic multi-path routing for non-critical traffic in AFDX networks

A. Jouy, Jianguo Yao, G. Zhu
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引用次数: 5

Abstract

Avionic networks exerting the Avionics Full-Duplex Switched Ethernet (AFDX) protocol utilize a small amount of the bandwidth to transmit critical traffics. As there is an increasing demand on data exchange for non critical applications, it is of great interest to make use of the physically available capability of the network through optimal bandwidth allocation. In this paper, the problem of bandwidth allocation in AFDX networks is treated in the framework of Network Utility Maximization (NUM). In the present work, multi-path routing is used for non-critical applications to explore the available bandwidth and to improve system performance. The optimization problem is decomposed into a rate update subproblem and a traffic routing subproblem linked together by a pricing dynamic system. A distributed algorithm for bandwidth allocation with multi-path routing is developed and the convergence of the algorithm is proven using Lyapunov stability theory. Some issues related to the implementation of the devolved algorithm in the context of real AFDX networks are addressed and the corresponding solutions are provided. Finally, TrueTime based simulations conform the viability and the applicability of the proposed approach.
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基于动态多路径路由的AFDX网络非关键流量的最优带宽分配
利用航空电子全双工交换以太网(AFDX)协议的航空电子网络利用少量带宽来传输关键业务。由于非关键应用程序对数据交换的需求不断增加,因此通过优化带宽分配来利用网络的物理可用能力是一个非常有趣的问题。本文在网络效用最大化(NUM)的框架下研究了AFDX网络中的带宽分配问题。在本工作中,多路径路由用于非关键应用,以探索可用带宽并提高系统性能。将优化问题分解为费率更新子问题和流量路由子问题,通过定价动态系统连接在一起。提出了一种具有多路径路由的分布式带宽分配算法,并利用李雅普诺夫稳定性理论证明了该算法的收敛性。在实际的AFDX网络环境中,讨论了下放算法实现中的一些问题,并给出了相应的解决方案。最后,基于TrueTime的仿真验证了所提方法的可行性和适用性。
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