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Orthogonal frequency division multiplexing based air interfaces and multiple input multiple output techniques in cooperative satellite communications for 4th generation mobile systems.

机译:在第四代移动系统的协作卫星通信中,基于正交频分复用的空中接口和多输入多输出技术。

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摘要

Recently, wireless network technology has grown at such a pace that scientific research has become a practical reality in a very short time span. Mobile wireless communications have witnessed the adoption of several generations, each of them complementing and improving the former. One mobile system that features high data rates and open network architecture is 4G. Currently, the research community and industry, in the field of wireless networks, are working on possible choices for solutions in the 4G system. 4G is a collection of technologies and standards that will allow a range of ubiquitous computing and wireless communication architectures. The researcher considers one of the most important characteristics of future 4G mobile systems the ability to guarantee reliable communications from 100 Mbps, in high mobility links, to as high as 1 Gbps for low mobility users, in addition to high efficiency in the spectrum usage.;On mobile wireless communications networks, one important factor is the coverage of large geographical areas. In 4G systems, a hybrid satellite/terrestrial network is crucial to providing users with coverage wherever needed. Subscribers thus require a reliable satellite link to access their services when they are in remote locations, where a terrestrial infrastructure is unavailable. Thus, they must rely upon satellite coverage.;Good modulation and access technique are also required in order to transmit high data rates over satellite links to mobile users. This technique must adapt to the characteristics of the satellite channel and also be efficient in the use of allocated bandwidth. Satellite links are fading channels, when used by mobile users. Some measures designed to approach these fading environments make use of: (1) spatial diversity (two receive antenna configuration); (2) time diversity (channel interleaver/spreading techniques); and (3) upper layer FEC.;The author proposes the use of OFDM (Orthogonal Frequency Multiple Access) for the satellite link by increasing the time diversity. This technique will allow for an increase of the data rate, as primarily required by multimedia applications, and will also optimally use the available bandwidth. In addition, this dissertation approaches the use of Cooperative Satellite Communications for hybrid satellite/terrestrial networks. By using this technique, the satellite coverage can be extended to areas where there is no direct link to the satellite. For this purpose, a good channel model is necessary.
机译:近来,无线网络技术以这样的速度增长,使得科学研究在很短的时间跨度内已成为现实。移动无线通信见证了几代人的采用,其中每一代都是对前者的补充和改进。 4G是一种具有高数据速率和开放网络架构的移动系统。当前,无线网络领域的研究团体和行业正在研究4G系统解决方案的可能选择。 4G是一系列技术和标准的集合,这些技术和标准将允许一系列无处不在的计算和无线通信体系结构。研究人员认为,未来的4G移动系统的最重要特征之一是,除了在频谱使用方面具有很高的效率外,还能够确保从高移动性链路中的100 Mbps到低移动性用户的高达1 Gbps的可靠通信。在移动无线通信网络上,一个重要因素是大地理区域的覆盖范围。在4G系统中,混合卫星/地面网络对于在需要时为用户提供覆盖至关重要。因此,当订户位于地面基础设施不可用的偏远地区时,订户需要可靠的卫星链路来访问其服务。因此,它们必须依赖于卫星的覆盖范围。为了通过卫星链路向移动用户传输高数据速率,还需要良好的调制和接入技术。该技术必须适应卫星信道的特性,并且在分配带宽的使用中必须有效。卫星链接是移动用户使用时的衰落频道。为应对这些衰落环境而设计的一些措施利用了:(1)空间分集(两个接收天线配置); (2)时间分集(信道交织器/扩展技术); (3)上层FEC。作者建议通过增加时间分集来将OFDM(正交频率多址)用于卫星链路。该技术将允许增加多媒体应用程序主要需要的数据速率,并且还将最佳地使用可用带宽。另外,本文研究了将合作卫星通信用于混合卫星/地面网络的方法。通过使用此技术,可以将卫星覆盖范围扩展到没有直接链接到卫星的区域。为此,需要一个良好的渠道模型。

著录项

  • 作者

    Labrador, Yuri.;

  • 作者单位

    Florida International University.;

  • 授予单位 Florida International University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 149 p.
  • 总页数 149
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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