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Access network selection in a 4G networking environment.

机译:在4G网络环境中选择接入网络。

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摘要

An all-IP pervasive networking system provides a comprehensive IP solution where voice, data and streamed multimedia can be delivered to users at anytime and anywhere. Network selection is a key issue in this converged heterogeneous networking environment. A traditional way to select a target network is only based on the received signal strength (RSS); however, it is not comprehensive enough to meet the various demands of different multimedia applications and different users. Though some existing schemes have considered multiple criteria (e.g. QoS, security, connection cost, etc.) for access network selection, there are still several problems unsettled or not being solved perfectly. In this thesis, we propose a novel model to handle this network selection issue. Firstly, we take advantage of IEEE 802.21 to obtain the information of neighboring networks and then classify the information into two categories: (1) compensatory information; and (2) non-compensatory information; secondly, we use the non-compensatory information to sort out the capable networks as candidates. If a neighboring network satisfies all the requirements of non-compensatory criteria, the checking of the compensatory information will then be triggered; thirdly, taking the values of compensatory information as input, we propose a hybrid ANP and RTOPSIS model to rank the candidate networks. ANP elicit weights to compensatory criteria and eliminates the interdependence impact on them, and RTOPSIS resolves the rank reversal problem which happens in some multiple criteria decision making (MCDM) algorithms such as AHP, TOPSIS, and ELECTRE. The evaluation study verifies the usability and validity of our proposed network selection method. Furthermore, a comparison study with a TOPSIS based algorithm shows the advantage and superiority of the proposed RTOPSIS based model.
机译:全IP普及网络系统提供了全面的IP解决方案,可以随时随地将语音,数据和流式多媒体传递给用户。在这种融合的异构网络环境中,网络选择是一个关键问题。传统的选择目标网络的方法仅基于接收信号强度(RSS)。但是,它不够全面,无法满足不同多媒体应用程序和不同用户的各种需求。尽管一些现有方案已经为接入网选择考虑了多个标准(例如,QoS,安全性,连接成本等),但是仍然存在一些尚未解决或不能完美解决的问题。在本文中,我们提出了一个新颖的模型来处理这个网络选择问题。首先,我们利用IEEE 802.21来获取邻近网络的信息,然后将该信息分为两类:(1)补偿信息; (2)非补偿性信息;其次,我们使用非补偿性信息来筛选出有能力的网络作为候选者。如果相邻网络满足非补偿标准的所有要求,则将触发对补偿信息的检查;否则,将触发对补偿信息的检查。第三,以补偿信息的值为输入,提出了一种混合的ANP和RTOPSIS模型对候选网络进行排序。 ANP赋予权衡标准权重,并消除了对它们的相互依赖性影响,而RTOPSIS解决了诸如AHP,TOPSIS和ELECTRE之类的某些多标准决策(MCDM)算法中发生的排名反转问题。评估研究验证了我们提出的网络选择方法的可用性和有效性。此外,与基于TOPSIS的算法的比较研究显示了所提出的基于RTOPSIS的模型的优势和优越性。

著录项

  • 作者

    Liu, Yang.;

  • 作者单位

    University of Waterloo (Canada).;

  • 授予单位 University of Waterloo (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.A.Sc.
  • 年度 2008
  • 页码 73 p.
  • 总页数 73
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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