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Cross-layer optimization for DS-CDMA visual sensor networks and video transmission over DS-CDMA hardware channels.

机译:DS-CDMA视觉传感器网络和DS-CDMA硬件通道上的视频传输的跨层优化。

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摘要

In the first part of this work, we propose an approach for cross-layer optimization that works across the physical layer, the link layer and the application layer in a Direct Sequence Code Division Multiple Access (DS-CDMA) visual sensor network where nodes monitor scenes with varying levels of motion. Cross-layer algorithms have taken center stage because of the inherent differences between the wired networks that layered architecture was developed for and the wireless networks that are receiving an ever-increasing amount of attention. Our technique simultaneously assigns a source coding rate, a channel coding rate, and a power level to all nodes in the network based on two criteria that maximize the quality of video of the entire network as a whole, subject to a constraint on the total chip rate. One criterion results in the minimal average end-to-end distortion amongst all nodes, while the other criterion minimizes the maximum distortion of the network. To reduce the computational complexity of the solution, Universal Rate Distortion Characteristics (URDCs) are obtained experimentally to relate bit error probabilities to the distortion of corrupted video. The URDCs are used in conjunction with channel characteristic plots obtained by using Rate Compatible Punctured Convolutional (RCPC) codes for channel coding.; In the second part of this work, we use a hardware testbed to demonstrate the interference mitigation capabilities of the auxiliary vector (AV) receiver for video transmission over DS-CDMA systems. The proposed receiver design is compared to the conventional RAKE matched-filter (RAKE-MF) and sample matrix inversion minimum variance distortionless response (SMI-MVDR) receivers. The DS-CDMA video stream is transmitted over an RF channel under realistic Rayleigh-faded multipath channel conditions, emulating open and/or urban battlefield environments. The state-of-the-art Agilent E4438C RF Arbitrary Waveform Generator and the N115A Baseband Studio fader hardware/software package is used to provide a configurable "real-time" RF channel. In this work, the "foreman" video sequence is source encoded using an MPEG-4 compatible video codec and channel encoded using RCPC codes. After spreading and modulating, the resultant bitstream is transmitted over a user-defined wireless channel environment created by Agilent equipment. Upon chip-matched filtering and sampling at the chip-rate on a hardware testbed, the received data is despread and demodulated using the AV, RAKE-MF and SMI-MVDR receivers. The resulting data is then channel and source decoded to recover the original transmitted video sequence. The results from this work show that the AV receiver outperforms the RAKE-MF and SMI-MVDR receiver counterparts over a wide range of rates and channel conditions.
机译:在这项工作的第一部分中,我们提出了一种跨层优化的方法,该方法可在直接序列码分多址(DS-CDMA)视觉传感器网络中的物理层,链路层和应用层上工作,其中节点用于监视运动水平不同的场景。由于开发分层体系结构的有线网络与受到越来越多关注的无线网络之间的固有差异,跨层算法已成为焦点。我们的技术基于两个标准同时为网络中的所有节点分配了源编码率,信道编码率和功率级别,这两个标准使整个网络的视频质量最大化,但要受到总芯片的限制。率。一个准则导致所有节点之间的最小平均端到端失真,而另一个准则则最小化网络的最大失真。为了降低解决方案的计算复杂性,通过实验获得了通用速率失真特征(URDC),以将误码率与损坏的视频的失真相关联。 URDC与通过使用速率兼容穿刺卷积(RCPC)码进行信道编码而获得的信道特征图结合使用。在这项工作的第二部分中,我们使用硬件测试平台来演示辅助矢量(AV)接收机在DS-CDMA系统上进行视频传输的干​​扰缓解能力。将拟议的接收机设计与常规RAKE匹配滤波器(RAKE-MF)和样本矩阵求逆最小方差无失真响应(SMI-MVDR)接收机进行了比较。 DS-CDMA视频流是在现实的瑞利衰落多路径信道条件下通过RF信道传输的,模拟了开放和/或城市战场环境。最新的Agilent E4438C RF任意波形发生器和N115A Baseband Studio推子硬件/软件包用于提供可配置的“实时” RF通道。在这项工作中,“先行者”视频序列使用MPEG-4兼容视频编解码器进行源编码,并使用RCPC代码进行频道编码。扩展和调制后,最终的比特流将通过由安捷伦设备创建的用户定义的无线通道环境进行传输。在硬件测试台上以芯片速率进行芯片匹配的滤波和采样后,使用AV,RAKE-MF和SMI-MVDR接收器对接收到的数据进行解扩和解调。然后将所得数据进行通道和源解码,以恢复原始的传输视频序列。这项工作的结果表明,在各种速率和信道条件下,AV接收机的性能都优于RAKE-MF和SMI-MVDR接收机。

著录项

  • 作者

    Pynadath, Elizabeth Serena.;

  • 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 120 p.
  • 总页数 120
  • 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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