首页> 外文期刊>IEEE transactions on mobile computing >Progressive video delivery over wideband wireless channels using space-time differentially coded OFDM systems
【24h】

Progressive video delivery over wideband wireless channels using space-time differentially coded OFDM systems

机译:使用空时差分编码OFDM系统在宽带无线信道上进行渐进式视频传输

获取原文
获取原文并翻译 | 示例

摘要

Progressive video delivery over wireless networks is very challenging due to the time-varying nature of wireless channels and limited power in the mobile devices. This paper proposes an end-to-end architecture for multilayer progressive video delivery over space-time differentially coded orthogonal frequency division multiplexing (STDC-OFDM) systems. An input video sequence is compressed by 3D-ESCOT into a layered bitstream. We input multiple layers of the bitstream in series to a STDC-OFDM channel. Different video source layers are protected by different error protection schemes in order to achieve unequal error protection. In progressive transmission, the reconstruction quality is important not only at the target transmission rate but also at the intermediate rates. So, the error protection strategy needs to optimize the average performance over the set of intermediate rates. We propose to use progressive joint source-channel coding to generate operational transmission distortion-rate (TD-R) functions and operational transmission distortion-power (TD-P) functions for multiple layers before forming the operational transmission distortion-power-rate (TD-PR) surfaces. Lagrange multipliers are then employed on the fly to obtain the optimal power allocation and optimal rate allocation among multiple layers, subject to constraints on the total transmission rate and the total power level. Progressive joint source-channel coding offers the scalability feature to handle bandwidth variations and changes in channel conditions. By extending the rate-distortion function in source coding to the TD-PR surface in joint source-channel coding, our work can use the "equal slope" argument to effectively solve the transmission rate allocation problem as well as the transmission power allocation problem for multilayer video transmission. Experiments show that our scheme achieves significant improvement over a nonoptimal system with the same total power level and total transmission rate.
机译:由于无线信道的时变特性和移动设备中的功率有限,通过无线网络进行渐进式视频交付非常具有挑战性。本文提出了一种在空时差分编码正交频分复用(STDC-OFDM)系统上进行多层逐行视频传输的端到端架构。输入视频序列由3D-ESCOT压缩为分层比特流。我们将多个比特流串行输入到STDC-OFDM通道。不同的视频源层受不同的错误保护方案保护,以实现不平等的错误保护。在渐进式传输中,重建质量不仅在目标传输速率上而且在中间速率上都很重要。因此,错误保护策略需要在一组中间速率上优化平均性能。我们建议在形成运算传输失真功率率(TD)之前,使用渐进联合源信道编码为多层生成运算传输失真率(TD-R)函数和运算传输失真功率(TD-P)函数。 -PR)表面。然后,在总传输速率和总功率水平受到约束的情况下,立即使用拉格朗日乘法器来获得多层之间的最佳功率分配和最佳速率分配。渐进式联合源信道编码提供可伸缩性功能,以处理带宽变化和信道条件变化。通过将源编码中的速率失真函数扩展到联合源信道编码中的TD-PR表面,我们的工作可以使用“等斜率”参数来有效解决传输速率分配问题以及传输功率分配问题。多层视频传输。实验表明,与具有相同总功率水平和总传输速率的非最优系统相比,我们的方案取得了显着改善。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号