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Optimal scalable video transmission over wireless networks.

机译:通过无线网络的最佳可伸缩视频传输。

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摘要

Many video applications, such as mobile TV, videoconferencing, and on-demand video streaming, have gained increased popularity. However, a key problem of video transmission over the existing wireless networks is the mismatch between the nature of the wireless system conditions and the constant quality requirements, such as bandwidth, and packet loss for video applications. Cross-layer design is a natural approach to deal with the incompatibility problem. This approach aims to efficiently perform cross-layer resource allocation (such as bandwidth and transmission power) by increasing the communication efficiency of multiple network layers. In this dissertation, we consider the problem of scalable video transmission over next-generation multi-antenna multi-carrier wireless systems. We propose different resource allocation optimization strategies between application layer and physical layer of the end-to-end system. The proposed framework is general and flexible.; Scalability in the video bitstream is exploited by partitioning and producing multiple layers which cater to wide heterogeneous networks. The scalable extension of H.264/AVC, popularly known as scalable video codec (SVC) that provides a combined temporal, quality and spatial scalability is used in this work for transmission over varied networks. We first develop a low-delay low-complexity method for the estimation of the decoded video distortion at the encoder and propose different error concealment schemes.; We consider a bandwidth-constrained video transmission over multiple-input multiple-output (MIMO) system with orthogonal space-time block codes (O-STBC). The O-STBC provides spatial diversity and guarantees independent transmission of different symbols within the block code. The hierarchical nature of SVC and orthogonal structure of O-STBC are exploited to design the cross-layer bandwidth optimization strategy. It involves optimally selecting the application layer and physical parameters based on the estimated distortion. The results exemplify the advantages of keeping various parameters under optimization versus allocating them at a fixed value.; We consider the transmission of scalable video over MIMO systems using OFDM technique. We propose another modification to the distortion estimation algorithm based on the importance of temporal and quality scalability. We compare the performance under optimal bandwidth allocation framework. Then, we propose transmission power allocation strategies based on using unequal number of OFDM sub-carriers for different layers of scalable video.
机译:许多视频应用程序,例如移动电视,视频会议和点播视频流,已经越来越受欢迎。但是,在现有无线网络上进行视频传输的一个关键问题是无线系统条件的性质与恒定的质量要求(例如带宽和视频应用程序的丢包率)之间的不匹配。跨层设计是解决不兼容问题的自然方法。该方法旨在通过提高多个网络层的通信效率来有效地执行跨层资源分配(例如带宽和传输功率)。本文考虑了下一代多天线多载波无线系统上可扩展视频传输的问题。我们提出了端到端系统的应用层和物理层之间的不同资源分配优化策略。拟议的框架是通用和灵活的。视频比特流的可伸缩性是通过划分和产生满足广泛异构网络的多层来开发的。 H.264 / AVC的可伸缩扩展(通常称为可伸缩视频编解码器(SVC))提供了组合的时间,质量和空间可伸缩性,该功能用于在各种网络上传输。我们首先开发了一种低延迟,低复杂度的方法来估计编码器处的解码视频失真,并提出了不同的错误隐藏方案。我们考虑通过正交空时分组码(O-STBC)在多输入多输出(MIMO)系统上进行带宽受限的视频传输。 O-STBC提供空间分集,并保证块码内不同符号的独立传输。利用SVC的分层性质和O-STBC的正交结构来设计跨层带宽优化策略。它涉及基于估计的失真来优化选择应用层和物理参数。结果证明了保持各种参数处于优化状态而不是将其分配为固定值的优势。我们考虑使用OFDM技术在MIMO系统上传输可伸缩视频。基于时间和质量可伸缩性的重要性,我们提出了对失真估计算法的另一种修改。我们比较了最佳带宽分配框架下的性能。然后,我们针对可伸缩视频的不同层,基于使用不相等数量的OFDM子载波,提出了传输功率分配策略。

著录项

  • 作者

    Bansal, Manu.;

  • 作者单位

    State University of New York at Buffalo.$bElectrical Engineering.;

  • 授予单位 State University of New York at Buffalo.$bElectrical Engineering.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 142 p.
  • 总页数 142
  • 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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