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Gestion adaptative des ressources dans les reseaux mailles sans fil a multiples-radios multiples-canaux.

机译:无线多无线电多信道网络中的资源自适应管理。

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摘要

In the last few years, Wireless Mesh Networks (WMNs) area brought a new field of advanced research among network specialized scientists. This is due to the many advantages which WMN technology offers, such as: easy and inexpensive installation, reliable connectivity and flexible interoperability with other existing networks (Wi-Fi, WiMax, Cellular, Sensors, WPAN networks, etc.). However, several problems still remain to be solved such as the scalability, the security, the quality of service (QoS), the resources management, etc. These problems persist for WMNs, therefore the researchers propose to improve the existing protocols or to conceive new protocols for WMNs.;In the first part, we propose a distributed admission control scheme for WMNs, namely, Routing on Cliques (a clique is defined as a subset of logical links that interfere with each other) Admission Control (RCAC). Particularly, we propose an analytical model to compute the appropriate acceptance ratio and guarantee that the packet loss probability in the network does not exceed a threshold value. The model also allows computing end-to-end delay to process flow requests with delay constraints.;In the second part, we design an efficient scheduler for Mesh Deterministic Access (MDA) in IEEE 802.11s-based WMNs, called Enhanced Differentiated-MDA (ED-MDA) to support voice and video applications with strict requirements on delay and on blocking/dropping probability. ED-MDA together with Enhanced Admission Control, namely EAC, reserves the minimum amount of necessary resources while maintaining an acceptable handoff call dropping and high resource utilization.;The final section addresses handoff-aware channel assignment (CA) problem in Multiple Radios WMNs (MR-WMNs). In this section, we first propose a multi-objective optimization model that, besides maximizing throughput, improves fairness and handoff experience of mesh clients. In this model, the Jain's index is used to maximize users' fairness and to allow same channel assignments to links involved in the same high handoff traffic, thus reducing handoff-triggered re-routing characterized by its high latency. Second, we solved this model to obtain exact solutions by the CPLEX software for a limited number of nodes. We therefore propose to use centralized heuristics/meta-heuristics algorithms as an offline CA process to obtain near-optimal solutions for larger instances (real size network). Moreover, in order to adapt to traffic dynamics caused especially by user handoffs, an online CA scheme is proposed that carefully re-assigns channels to interfaces with the purpose of continuously minimizing the re-routing overhead/latency during user handoffs. This online scheme is improved using load balancing.;In order to solve some of the current limitations met in the wireless networks and to improve QoS of real time multimedia applications in such networks, our research will be divided primarily into three parts: traffic admission control, traffic differentiation and handoff-aware channel assignment schemes.;Keywords: Wireless mesh network, admission control, service differentiation, channel assignment, handoff, network management, quality of service, metaheuristics.
机译:在过去的几年中,无线网状网络(WMN)领域为网络专业科学家带来了高级研究的新领域。这归因于WMN技术提供的许多优势,例如:简便且廉价的安装,可靠的连接以及与其他现有网络(Wi-Fi,WiMax,蜂窝,传感器,WPAN网络等)的灵活互操作性。但是,仍然需要解决一些问题,例如可伸缩性,安全性,服务质量(QoS),资源管理等。这些问题对于WMN仍然存在,因此研究人员建议改进现有协议或构思新的协议。在第一部分中,我们提出了一种用于WMN的分布式准入控制方案,即“按组路由”(按组定义为相互干扰的逻辑链接的子集),准入控制(RCAC)。特别地,我们提出一种分析模型来计算适当的接受率,并保证网络中的丢包概率不超过阈值。该模型还允许计算端到端延迟,以处理具有延迟约束的流请求。在第二部分中,我们为基于IEEE 802.11s的WMN中的网格确定性访问(MDA)设计了一种有效的调度程序,称为增强型差分MDA。 (ED-MDA)支持对延迟和阻塞/掉线概率有严格要求的语音和视频应用。 ED-MDA与增强型准入控制(EAC)一起保留了最少数量的必要资源,同时保持了可接受的切换呼叫掉线和高资源利用率。最后一部分解决了多个无线WMN中的切换感知信道分配(CA)问题( MR-WMN)。在本节中,我们首先提出一个多目标优化模型,该模型除了最大化吞吐量之外,还可以改善网格客户端的公平性和切换体验。在此模型中,Ja那教的索引用于最大程度地提高用户的公平性,并允许将相同的信道分配给涉及相同高切换业务量的链路,从而减少以高延迟为特征的切换触发的重新路由。其次,我们解决了该模型,以通过CPLEX软件为有限数量的节点获得准确的解决方案。因此,我们建议使用集中式启发式算法/元启发式算法作为脱机CA流程,以获取大型实例(实际规模的网络)的近似最佳解决方案。此外,为了适应特别是由用户切换引起的业务量动态,提出了一种在线CA方案,该方案仔细地重新分配信道到接口,以在用户切换期间持续最小化重新路由开销/等待时间。为了解决此无线方案在无线网络中遇到的一些局限性并提高此类网络中实时多媒体应用的QoS,我们的研究主要分为三个部分:流量接纳控制关键词:无线网状网络,准入控制,服务区分,信道分配,切换,网络管理,服务质量,元启发式算法。

著录项

  • 作者

    Rezgui, Jihene.;

  • 作者单位

    Universite de Montreal (Canada).;

  • 授予单位 Universite de Montreal (Canada).;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 198 p.
  • 总页数 198
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 肿瘤学;
  • 关键词

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