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Cross-layer opportunistic adaptation for voice communications over wireless ad hoc networks.

机译:无线ad hoc网络上语音通信的跨层机会适应。

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摘要

Recent years have witnessed fast growth in Voice over IP (VoIP) applications. With the rate at which wireless access points are spreading, VoIP over wireless is becoming increasingly important. The all-IP architecture refers to inter-operability of different networks within an IP framework. Supporting VoIP over ad hoc networks is part of realizing this all-IP goal. Voice has many applications over ad hoc networks whether these networks serve as extensions to infrastructure-based wireless networks or in stand-alone configurations.; The wireless channel introduces many challenges due to its broadcast nature and temporal response variability. Ad hoc networks also suffer from resource scarcity, making support for real-time applications over ad hoc networks a formidable task.; Adaptation to varying channel conditions is essential to support applications in ad hoc networks. In addition, cross-layer design allows interactions among protocol parameters to be exploited to improve performance. This research tackles the problem of supporting VoIP over wireless ad hoc networks by proposing opportunistic adaptation within a cross-layer framework.; Starting with the requirements of voice, parameters whose adaptation appears important to provide acceptable quality are identified. The significance of the selected parameters is verified in two ways: through extensive simulations of adaptation over wireless links, and through statistical analysis.; The insight gained about the parameters is integrated into an opportunistic cross-layer protocol with the goal of maximizing the multiplexing gain without compromising the quality achieved. To limit the overhead and complexity of the protocol, hop-to-hop-only adaptation is considered first. Then, end-to-end adaptation is incorporated in the protocol design, which works at a different time scale and has a broader view of network conditions.; The performance of the refined protocol is studied using actual audio traces in the simulation. The resulting output stream is compared with the original stream using objective audio metrics which are mapped into subjective measure scores when possible. The results indicate the critical role compression, packet-size, and modulation play in supporting voice over ad hoc networks. Header compression contributes to achieving acceptable to good voice quality over long routes, under reasonably high load conditions and in the presence of mobility.
机译:近年来见证了IP语音(VoIP)应用的快速增长。随着无线接入点的扩展速度,无线VoIP变得越来越重要。全IP体系结构是指IP框架内不同网络的互操作性。通过ad hoc网络支持VoIP是实现此全IP目标的一部分。语音在ad hoc网络上有许多应用程序,无论这些网络是基于基础设施的无线网络的扩展还是独立配置。无线信道由于其广播性质和时间响应可变性而带来许多挑战。自组织网络还遭受资源短缺的困扰,这使得通过自组织网络支持实时应用成为一项艰巨的任务。适应变化的信道条件对于支持ad hoc网络中的应用至关重要。另外,跨层设计允许利用协议参数之间的交互来提高性能。这项研究通过在跨层框架内提出机会自适应来解决通过无线自组织网络支持VoIP的问题。从语音要求开始,确定其适应性对于提供可接受的质量很重要的参数。可以通过两种方式来验证所选参数的重要性:通过对无线链路上的自适应进行广泛的仿真,以及通过统计分析。有关参数的见解已集成到机会性跨层协议中,目的是在不损害实现质量的前提下最大化多路复用增益。为了限制协议的开销和复杂性,首先考虑仅跳到跳的适配。然后,将端到端的适应性纳入了协议设计中,该协议设计在不同的时间范围内工作,并具有更广阔的网络状况。在仿真中使用实际音频轨迹研究了改进协议的性能。使用客观音频度量将结果输出流与原始流进行比较,并在可能的情况下将其映射到主观度量值中。结果表明,压缩,数据包大小和调制在支持ad hoc网络语音方面起着至关重要的作用。报头压缩有助于在合理的高负载条件下和存在移动性的情况下,在长途路由上获得令人满意的语音质量。

著录项

  • 作者

    Obeidat, Suhaib A.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 118 p.
  • 总页数 118
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自动化技术、计算机技术;
  • 关键词

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