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Connection tree based mobility management for wireless Internet access networks.

机译:无线Internet接入网络的基于连接树的移动性管理。

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摘要

It may be envisioned that future wireless networks would be All-IP based and consist of QoS capable and mobility enhanced IP routers which handle both real-time and best-effort data traffics. In population dense areas (traffic hot spots), pico-cells with radius of hundreds of meters are deployed to efficiently reuse the precious radio spectrum and meet the high demand for radio based broadband access. To avoid the high cost of connecting a large number of pico-cells to the backbone network, the pico-cells are inter-connected via short highly focused free-space optic links or microwave links in a multi-hop mesh fashion (called UniNet). Traffic generated within (or delivered to) any pico-cell would, in general, be relayed among a sequence of pico-cells in a multi-hop arrangement, eventually entering (or leaving) the wireless IP network at a local end office.; Mobility management is one of the main challenges presented by the development of IP-centric mobile telecommunication networks and the focus of this dissertation. There are three types of mobilities in the network described above: macro-mobility between mobile domains, micro-mobility between the regular cells within a mobile domain, and pico-mobility between the pico-cells in UniNet. In this dissertation, we look at hierarchical mobility management schemes that differentiate the three types of mobilities. We assume the macro-mobility is handled by Mobile IP due to its scalability for global mobility and therefore focus on the micro-mobility and pico-mobility management. Because of the unique nature of UniNet, we further differentiate the pico-mobility in UniNet from the micro-mobility: for the pico-mobility within UniNet, a simple and efficient connection tree sharing based scheme is proposed that works on link layer and is able to handle both the call routing and handoff within UniNet; for the micro-mobility within the IP mobile domain, a connection tree based scheme is proposed that works on IP layer and supports such critical features as IP QoS, fast location update and handoff, and soft handoff.
机译:可以预见,未来的无线网络将基于All-IP,并由具有QoS能力和移动性增强的IP路由器组成,这些IP路由器可以处理实时数据流量和尽力而为数据流量。在人口稠密地区(交通热点),部署了半径为数百米的微微小区,以有效地重用宝贵的无线电频谱,并满足对基于无线电的宽带接入的高需求。为了避免将大量微微小区连接到骨干网络的高成本,微微小区通过短高度集中的自由空间光链路或微波链路以多跳网状方式(称为UniNet)进行互连。 。通常,将在多跳安排中的一系列微微小区之间中继(或传递到)任何微微小区中的业务,最终进入(或离开)本地终端局的无线IP网络。移动性管理是以IP为中心的移动电信网络发展提出的主要挑战之一,也是本文的重点。上述网络中存在三种类型的迁移率:移动域之间的宏观迁移率,移动域内常规细胞之间的微迁移率 pico UniNet的微微小区之间的移动性。在本文中,我们研究了区分三种移动性的分层移动性管理方案。我们假定宏移动性是由于其可扩展到全球移动性而由移动IP处理的,因此我们将重点放在微移动性和微移动性管理上。由于UniNet的独特性质,我们进一步将UniNet中的微微移动性与微移动性区分开:对于UniNet中的微微移动性,提出了一种简单有效的基于连接树共享的方案,该方案可在链路层上工作,并且能够在UniNet中处理呼叫路由和切换;对于IP移动域内的微移动性,提出了一种基于连接树的方案,该方案可在IP层上工作,并支持诸如IP QoS,快速位置更新和切换以及软切换等关键功能。

著录项

  • 作者

    Gao, Qiang.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 99 p.
  • 总页数 99
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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