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Multicast communication support over satellite networks.

机译:通过卫星网络的多播通信支持。

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摘要

In this dissertation, we focus on providing multicast communication support over satellite networks. We investigate the possible performance enhancements in terms of the throughput, capacity, and scalability of a Ka-band, multiple spot-beam satellite communication system that supports unicast and multicast services. The role satellite systems play in today's communication infrastructure is changing rapidly, fueled by the technological advance in the design of new satellite systems, and by the new multimedia service applications, such as on-demand multimedia content delivery, distance learning, and distributed software updates that would benefit from the wide-area coverage, direct and ubiquitous access capability of the satellite systems.; These applications require concurrent transmission of the same content to multiple users. In order for multicasting-based services to grow over satellite networks, there must be an incentive to deploy them. We address the problem of user heterogeneity that occurs when multicast users that are located across several different spot-beam locations experience different channel conditions. We propose a novel power allocation scheme for smoothing out the heterogeneity experienced by the multicast groups, while making sure that unicast users get a fair share of system resources as well.; Our power allocation scheme would benefit from user feedback in determining the channel conditions. However, collecting feedback from a large set of users is a challenging task in satellite systems, since access to the uplink bandwidth is to be shared between several users, and the resources are usually limited. We introduce a novel algorithm that reduces the volume of feedback information that is to be transmitted over the satellite segment of the network, while maintaining that the relevant information is collected in a timely manner.; Finally, we focus our attention to the potential benefits of integrating packet level forward error correction coding to packet delivery for reliable multicast services over satellite networks. Forward error protection helps recover corrupted data, and minimizes the need for retransmissions over the satellite channel. We investigate the use of a special form of forward error correcting (FEC) code and couple it with an adaptive control mechanism to dynamically adjust the number of encoding packets forwarded to the users.
机译:本文主要研究在卫星网络上提供组播通信支持。我们研究了在支持单播和多播服务的Ka波段多点波束卫星通信系统的吞吐量,容量和可伸缩性方面可能的性能增强。卫星系统在当今通信基础设施中所扮演的角色正在迅速变化,这得益于新卫星系统设计的技术进步以及新的多媒体服务应用程序,例如按需多媒体内容交付,远程学习和分布式软件更新这将受益于卫星系统的广域覆盖,直接和无处不在的接入能力;这些应用程序需要将同一内容同时传输到多个用户。为了使基于多播的服务在卫星网络上发展,必须有动机来部署它们。我们解决了当用户位于多个不同点波束位置的多播用户遇到不同的信道条件时发生的用户异构性问题。我们提出了一种新颖的功率分配方案,以平滑多播组所经历的异构性,同时确保单播用户也能公平共享系统资源。我们的功率分配方案将从确定通道条件的用户反馈中受益。但是,在卫星系统中收集大量用户的反馈是一项艰巨的任务,因为要在几个用户之间共享对上行链路带宽的访问,并且资源通常受到限制。我们引入了一种新颖的算法,该算法可减少要通过网络的卫星网段传输的反馈信息的数量,同时保持及时收集相关信息。最后,我们将注意力集中在将数据包级别前向纠错编码与数据包传送集成在一起,以实现卫星网络上可靠的多播服务的潜在好处上。前向错误保护有助于恢复损坏的数据,并最大程度地减少了在卫星信道上重新传输的需求。我们研究了特殊形式的前向纠错(FEC)代码的使用,并将其与自适应控制机制结合使用,以动态调整转发给用户的编码数据包的数量。

著录项

  • 作者

    Akkor, Gun.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 165 p.
  • 总页数 165
  • 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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