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Efficient algorithms and protocols for stability management in mobile ad hoc networks.

机译:用于移动自组织网络中稳定性管理的高效算法和协议。

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摘要

This dissertation addresses issues pertaining to mobile multi-hop radio networks, also called ad hoc networks, which play a critical role in places where a wired backbone is neither available nor economically feasible and thus deployment of such networks becomes necessary. The main contributions of this dissertation are in the areas of clustering, routing and topology management. The research goals are to make progress towards achieving stability management in mobile ad hoc networks. Since the movement of the nodes (such as users having wireless mobile devices) constantly changes the topology of the underlying network, it becomes necessary to identify certain nodes, called cluster-heads, which help to maintain the topology of the network.; Our Weighted Clustering Algorithm (WCA) takes into consideration several physical parameters, such as the number of nodes a clusterhead can handle ideally, transmission power, mobility, and battery power of the nodes. We optimized WCA using the genetic algorithmic approach and obtained improved performance. To manage essential network operations, such as routing, we define a new protocol called B-protocol based on the fact that efficient management of network resources can be obtained by deploying only a small subset of the network nodes, called B-nodes. Routing is achieved via links, called B-links, which are also a small subset of the total number of links in the network. Since a route is not guaranteed to last till the end of a session, we estimate the expected lifetime of a route based on the relative mobility of nodes and their mobility pattern so that alternative routes can be found ahead of time to avoid any possible communication disruption. The stability of the network is also maintained by applying load balancing to the nodes, which may have different processing and battery powers, in the system as much as possible. The execution time of the jobs in each node is minimized while the lifetime of the nodes are maximized.
机译:本文解决了与移动多跳无线电网络(也称为自组织网络)有关的问题,这些问题在有线骨干网不可用或经济上不可行的地方起着至关重要的作用,因此有必要部署此类网络。本文的主要贡献是在集群,路由和拓扑管理领域。研究目标是在实现移动自组织网络中的稳定性管理方面取得进展。由于节点(例如具有无线移动设备的用户)的移动不断地改变基础网络的拓扑,因此有必要识别某些称为簇头的节点,这些节点有助于维持网络的拓扑。我们的加权聚类算法(WCA)考虑了几个物理参数,例如簇头可以理想地处理的节点数,节点的传输功率,移动性和电池功率。我们使用遗传算法优化了WCA,并获得了改进的性能。为了管理诸如路由之类的基本网络操作,我们基于以下事实定义了一种称为B协议的新协议:可以通过仅部署网络节点的一小部分(称为B节点)来获得对网络资源的有效管理。路由是通过称为B链接的链接来实现的,该链接也是网络中链接总数的一小部分。由于不能保证路由持续到会话结束,因此,我们根据节点的相对移动性及其移动方式来估计路由的预期寿命,以便可以提前找到替代路由,以避免任何可能的通信中断。通过尽可能在系统中对节点施加负载平衡来保持网络的稳定性,这些节点可能具有不同的处理和电池电量。每个节点中作业的执行时间被最小化,而节点的寿命被最大化。

著录项

  • 作者

    Turgut, Damla.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Computer Science.; Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自动化技术、计算机技术;无线电电子学、电信技术;
  • 关键词

  • 入库时间 2022-08-17 11:46:30

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