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Channel Assignments Utilizing Partially Overlapping Channels for Wireless Mesh Networks.

机译:利用无线网状网的部分重叠信道进行信道分配。

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摘要

Wireless mesh networking is one of the most promising next generation network technologies. A wireless mesh network is a decentralized, self-organizing, self-configuring and self-healing multi-hop wireless network. In this thesis, we introduce the development, architectures, characteristics and applications of wireless mesh networks and present the existing channel assignments and routing protocols for wireless mesh networks.;To further improve the aggregated network performance, we propose Load-Aware CAEPO scheme based on the original CAEPO. In Load-Aware CAEPO, instead of using the busy time proportion of interfering nodes, we employ the traffic load as another main factor of the interference metric besides the channel overlapping degree. In addition, the concept of self-interference is introduced to estimate the interference metric. To facilitate the implementation of our channel assignment scheme, we modify the original AODV to be bandwidth-aware, where end-to-end delay and available bandwidth are both used as the routing constraints. Simulation results demonstrate that the proposed scheme can significantly improve the aggregated network performance.;For large networks, we introduce a node grouping algorithm in Load-Aware CAEPO and name the new channel assignment scheme Load-Aware CAEPO-G. Compared to Load-Aware CAEPO, Load-Aware CAEPO-G leads to a fairer channel assignment and achieves a minor improvement of the aggregated network performance.;Finally, performance of Load-aware CAEPO scheme is studied under voice applications over wireless mesh networks. To address the two challenges in voice over packet (VOP) applications, end-to-end delay and delay jitter, we propose VOP-AODV routing protocol. Along with VOP-AODV routing protocol, Load-aware CAEPO scheme can effectively decrease end-to-end delay and delay jitter.;In recent years, many efforts have been taken to better exploit multiple non-overlapping channels for wireless mesh networks, e.g. IEEE 802.11 a based wireless mesh networks, in which 12 or 24 non-overlapping channels are available. Although the IEEE 802.11 big standards, which govern the unlicensed 2.4 GHz industrial, scientific and medical (ISM) band, provide 11 channels, only three of them, namely 1, 6 and 11 are non-overlapping. In order to better utilize communication bandwidth and improve quality of service, in this thesis, we propose a channel assignment exploiting partially overlapping channels (CAEPO). In CAEPO, the interference a node suffers within its interference range is the main metric for channel assignment. It is defined to be a combination of the overlapping degree between channels and busy time proportion, i.e. channel utilization ratio of interfering nodes. In addition to that, packet loss ratio is another major consideration in the implementation of channel assignment.
机译:无线网状网络是最有前途的下一代网络技术之一。无线网状网络是一种分散,自组织,自配置和自修复的多跳无线网络。本文介绍了无线网状网络的发展,结构,特点和应用,并介绍了无线网状网络现有的信道分配和路由协议。为了进一步提高聚合网络性能,我们提出了基于负载感知的CAEPO方案。原始的CAEPO。在负载感知CAEPO中,除了使用信道重叠度之外,我们还使用流量负载作为干扰度量的另一个主要因素,而不是使用干扰节点的繁忙时间比例。另外,引入自干扰的概念来估计干扰度量。为便于实施我们的信道分配方案,我们将原始AODV修改为可感知带宽,其中端到端延迟和可用带宽均用作路由约束。仿真结果表明,该方案可以显着提高聚合网络性能。对于大型网络,我们在负载感知CAEPO中引入了节点分组算法,并命名为新的信道分配方案Load-Aware CAEPO-G。与负载感知型CAEPO相比,负载感知型CAEPO-G导致了更公平的信道分配,并且对聚合网络性能进行了较小的改进。最后,研究了负载感知型CAEPO方案在无线网状网络语音应用下的性能。为了解决分组语音(VOP)应用中的两个挑战,即端到端延迟和延迟抖动,我们提出了VOP-AODV路由协议。负载感知CAEPO方案与VOP-AODV路由协议一起可以有效地降低端到端延迟和延迟抖动。近年来,人们已经进行了许多努力来更好地利用无线网状网络的多个非重叠信道。基于IEEE 802.11 a的无线网状网络,其中12或24个不重叠的信道可用。尽管管理未经许可的2.4 GHz工业,科学和医学(ISM)频段的IEEE 802.11大标准提供了11个通道,但其中只有三个通道,即1、6和11是不重叠的。为了更好地利用通信带宽并提高服务质量,本文提出了一种利用部分重叠信道(CAEPO)的信道分配方法。在CAEPO中,节点在其干扰范围内遭受的干扰是信道分配的主要指标。它被定义为信道之间的重叠程度与繁忙时间比例的组合,即干扰节点的信道利用率。除此之外,丢包率是信道分配实施中的另一个主要考虑因素。

著录项

  • 作者

    Liu, Yuting.;

  • 作者单位

    Memorial University of Newfoundland (Canada).;

  • 授予单位 Memorial University of Newfoundland (Canada).;
  • 学科 Engineering Computer.
  • 学位 M.Eng.
  • 年度 2010
  • 页码 80 p.
  • 总页数 80
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学;
  • 关键词

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