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Topology and routing optimization for congestion minimization in optical wireless networks

机译:拓扑和路由优化,可最大程度地减少光无线网络中的拥塞

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摘要

Optical wireless networks have appealing features such as very high broadband data rates and cost effectiveness. They represent a potential alternative to the last mile (first mile) wireless access problem. However, they are also highly vulnerable to external disturbances such as adverse weather and building sway. In this paper, we develop robust and efficient methods for outdoor optical wireless networks by jointly considering topology optimization and survivability strategies. We propose linearized congestion minimization schemes with working and protection paths (LCM-WP), in which a mixed integer linear program is formulated to choose the optimal working and protection paths for every OD pair such that the network congestion is minimized. In particular, the objective is to minimize the maximum amount of traffic on the links. To solve realistically sized problems, we consider a restricted version of the LCM-WP, in which only limited sets of candidate working and protection paths are considered. A simple algorithm is developed to find candidate working and protection paths for each origin-destination (OD) pair. Implementation of our LCM-WP schemes demonstrates the efficiency of our approach in terms of the number of constraints and solution time. It also shows that our approach is applicable to realistically sized networks.
机译:光学无线网络具有吸引人的功能,例如非常高的宽带数据速率和成本效益。它们代表了最后一英里(第一英里)无线访问问题的潜在替代方案。但是,它们也极易受到外部干扰的影响,例如恶劣的天气和建筑物的摇摆。在本文中,我们通过共同考虑拓扑优化和生存策略,为室外光无线网络开发了鲁棒而高效的方法。我们提出了具有工作和保护路径的线性化拥塞最小化方案(LCM-WP),其中制定了一个混合整数线性程序,以为每个OD对选择最佳的工作和保护路径,从而使网络拥塞最小化。特别地,目标是使链路上的最大业务量最小化。为了解决实际大小的问题,我们考虑使用受限版本的LCM-WP,其中仅考虑了有限的候选工作路径和保护路径。开发了一种简单的算法来为每个始发地(OD)对找到候选的工作和保护路径。我们的LCM-WP方案的实施在约束数量和解决时间方面证明了我们方法的效率。这也表明我们的方法适用于实际规模的网络。

著录项

  • 来源
    《Optical Switching and Networking 》 |2010年第3期| P.95-107| 共13页
  • 作者单位

    EEE Department, The University of Melbourne, Victoria 3010, Australia Electrical and Electronic Engineering (EEE) Department, The University of Melbourne, Australia;

    rnIMEC Nederland, The Netherlands Electrical and Electronic Engineering (EEE) Department, The University of Melbourne, Australia;

    rnEindhoven University of Technology, The Netherlands;

    rn418 Hillview Dr. Apt 301, Linthicum, MD, 21090, United States Electrical and Electronic Engineering (EEE) Department, The University of Melbourne, Australia;

    rnElectronic Engineering Department, City University of Hong Kong, Kowloon, Hong Kong Electrical and Electronic Engineering (EEE) Department, The University of Melbourne, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    optical wireless; mixed integer linear programming; topology control; routing; survivable networks;

    机译:光学无线;混合整数线性规划拓扑控制;路由;生存网络;

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