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Cross layer optimization for video transmission over Multiple Access Wireless Systems.

机译:通过多址无线系统进行视频传输的跨层优化。

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In this dissertation, we propose cross layer frameworks for video transmission over Multiple Access Wireless Systems. We first study the problem of video transmission over wireless Generalized Multi Carrier Code Division Multiple Access (GMC-CDMA) systems. A scalable video source codec is used and a multi rate setup is assumed, i.e., each video user is allowed to occupy more than one GMC-CDMA channels. Furthermore, each of these channels can utilize a different number of sub carriers. We propose a cross-layer optimization method to select the source coding rate, channel coding rate, number of sub carriers per GMC-CDMA channel and transmission power per GMC-CDMA channel given a maximum transmission power for each video user and an available chip rate.;Next, a joint source-channel coding technique is proposed for H.264/AVC video transmission over MIMO-OFDM wireless links. A set of fast time-varying and frequency selective fading channels are considered. The proposed pilot assisted transmission scheme multiplexes known symbols with information bearing data to estimate the channel in the presence of Inter symbol Interference (ISI). The channel is assumed to be unchanged for the duration of one OFDM block and change independently from one OFDM block to the other. The number of pilot symbols for each OFDM block is held constant and is dispersed throughout the block for efficient channel estimation. The video transmission system uses a jointly optimal Space Frequency (SF) code design and pilot placement scheme. RCPC codes are used for channel protection. The problem formulation selects the set of source, channel coding rates along with the optimal pilot placement for a total bitrate constraint and compares the performance of the optimal power allocation case with the equal power distribution cases. At the transmitter, we have developed a method for the estimation of the video distortion at the receiver for given channel conditions.;In another work, we provide a cross layer framework for the transmission of robust packet based H.264/AVC video over DS-CDMA wireless channels with near-ML multiuser detection using linear filters and reliability based processing. A cross layer framework is proposed for both underloaded and overloaded systems. In overloaded CDMA systems, when the number of users is greater than the processing gain, sub-optimal detection becomes more difficult because it is more difficult to separate the users because of the high correlation among the signatures. Such a scenario is of great interest because there are time that the processing gain cannot be increased due to bandwidth constraints.;The near ML multiuser detection approaches the optimum detector as follows. A reliability value is obtained for each user bit received by using the output of a multiuser zero-forcing linear filter. The reliability values are then used to generate error sequences which provides bit decisions close to optimum ML detection. The H.264/AVC video data is packetized, forward error corrected using Reed Solomon codes, interleaved, spread, modulated and transported through the RTP/UDP/IP protocol stack. For a given bitrate budget, a high motion video sequence will require more bits for source coding and hence lesser bits are left for channel protection than a low motion video. We have incorporated different detection schemes for high and low motion video. Our content aware near ML multiuser detector scheme prefers the users with high motion by choosing a higher value of the distinct error pattern from the near ML framework to better detect the data than the low motion video users. This causes a reduction in the complexity of the overall system compared to ML detection for all users, while maintaining a close performance with the ML detector.;Finally, an error concealment scheme is proposed to conceal an entirely lost frame in a compressed video bitstream due to errors introduced during transmission. The proposed scheme targets low bit rate video transmission applications using H.264/AVC. The motion field of the lost frame is first reconstructed by copying the co-located motion vectors and reference indices from the last decoded reference frame. After the motion field estimation of the missing frame, motion compensation is performed to reconstruct the frame. This technique reuses existing modules of the video decoder and it does not incur extra complexity compared to decoding a normal frame. It has also been adopted as a non-normative decoder option to the JM reference software at the JVT meeting in Poznan, Poland in July 2005. (Abstract shortened by UMI.).
机译:本文提出了一种跨层框架,用于在多路访问无线系统上进行视频传输。我们首先研究通过无线通用多载波码分多址(GMC-CDMA)系统进行视频传输的问题。使用了可伸缩的视频源编解码器,并假定了多速率设置,即,每个视频用户被允许占用一个以上的GMC-CDMA信道。此外,这些信道中的每一个可以利用不同数量的子载波。我们提出了一种跨层优化方法,在给定每个视频用户最大传输功率和可用码片速率的情况下,选择源编码率,信道编码率,每个GMC-CDMA信道的子载波数量以及每个GMC-CDMA信道的传输功率接下来,提出了一种联合源信道编码技术,用于通过MIMO-OFDM无线链路进行H.264 / AVC视频传输。考虑了一组快速时变和频率选择性衰落信道。所提出的导频辅助传输方案将已知符号与信息承载数据复用,以在存在符号间干扰(ISI)的情况下估计信道。假定该信道在一个OFDM块的持续时间内不变,并且独立地从一个OFDM块切换到另一个。每个OFDM块的导频符号的数量保持恒定,并分散在整个块中,以进行有效的信道估计。视频传输系统使用联合优化的空频(SF)代码设计和导频布置方案。 RCPC代码用于通道保护。问题公式为总比特率约束条件选择了源,信道编码率以及最佳导频布置的集合,并将最佳功率分配情况与相等功率分配情况的性能进行了比较。在发射机处,我们已经开发出一种方法,用于估计给定信道条件下接收机处的视频失真。在另一项工作中,我们提供了一种跨层框架,用于在DS上传输基于健壮数据包的H.264 / AVC视频-CDMA无线信道,具有使用线性滤波器和基于可靠性的处理功能的近ML多用户检测。提出了针对欠载和过载系统的跨层框架。在过载的CDMA系统中,当用户数量大于处理增益时,次优检测变得更加困难,因为签名之间的高度相关性使得更难分离用户。这种情况引起了极大的兴趣,因为有时会由于带宽限制而无法提高处理增益。近ML多用户检测接近最佳检测器,如下所示。通过使用多用户迫零线性滤波器的输出,为每个接收到的用户比特获得可靠性值。然后,将可靠性值用于生成错误序列,该错误序列可提供接近最佳ML检测的位决策。 H.264 / AVC视频数据经过打包,使用Reed Solomon码进行前向纠错,通过RTP / UDP / IP协议栈进行交织,扩展,调制和传输。对于给定的比特率预算,高运动视频序列将需要更多位用于源编码,因此与低运动视频相比,剩下的更少的位用于频道保护。我们为高动态视频和低动态视频引入了不同的检测方案。我们的内容感知型近ML多用户检测器方案通过从近ML框架中选择较高值的独特错误模式,从而比低运动视频用户更好地检测数据,从而偏爱高运动的用户。与所有用户的ML检测相比,这导致整个系统的复杂性降低,同时与ML检测器保持接近的性能。最后,提出了一种错误隐藏方案来隐藏由于压缩视频比特流而完全丢失的帧。传输过程中引入的错误。所提出的方案针对使用H.264 / AVC的低比特率视频传输应用。首先通过从最后解码的参考帧中复制同位运动矢量和参考索引来重建丢失帧的运动场。在丢失帧的运动场估计之后,执行运动补偿以重建帧。该技术重用了视频解码器的现有模块,与解码普通帧相比,它不会产生额外的复杂性。在2005年7月于波兰波兹南举行的JVT会议上,它还被作为JM参考软件的非规范解码器选项使用。(摘要由UMI缩短)。

著录项

  • 作者

    Bandyopadhyay, Saurav K.;

  • 作者单位

    State University of New York at Buffalo.;

  • 授予单位 State University of New York at Buffalo.;
  • 学科 Engineering Electronics and Electrical.;Computer Science.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 188 p.
  • 总页数 188
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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