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Optimal and suboptimal channel precoding and decoding matrices for linear video coding

机译:线性视频编码的最优和次优通道预编码和解码矩阵

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摘要

Linear video coding (LVC) has recently emerged as a very promising paradigm for robust video delivery over unreliable channels. The pioneering LVC paper, introducing SoftCast, showed that, a cross-layer approach, based on linear-only processing followed by analog modulation, was able to improve the quality of received video with respect to traditional, layered approaches, when unreliable links to several users are considered. This paper considers the power allocation problem when the transmission channel consists of several sub-channels, each with its own power constraint. This framework models, e.g., multi-antenna, DSL, or powerline transmission systems. Minimizing the mean-square error at a receiver leads to an precoding and decoding matrix design problem. Our contributions consist in (1) formulating the matrix design problem in such a way that a multi-level water-filling solution proposed for MIMO channels can be adapted to LVC; (2) the proposal of three suboptimal power allocations techniques, with different trade-offs between complexity and efficiency; (3) a precoding matrix design for the multiple receivers scenario; (4) extensive simulations of the power allocation methods. The proposed optimal power allocation largely outperforms a simple adaptation of the allocation considered in SoftCast for the per-subchannel power constrained problem; moreover two of the suboptimal solutions perform very close to the optimal one, with a sensibly reduced complexity.
机译:线性视频编码(LVC)最近被出现为稳健视频交付的非常有前途的范式,通过不可靠的频道。开创性的LVC纸,介绍软播,表明,基于仅线性处理的跨层方法,然后是模拟调制,能够在不可靠的链接到几个时,改善传统的分层方法的接收视频的质量用户被考虑。本文考虑当传输信道由多个子通道组成时的功率分配问题,每个频道都具有自己的功率约束。该框架模型,例如,多天线,DSL或电力线传输系统。最小化接收器处的平均方误差导致预编码和解码矩阵设计问题。我们的贡献包括在(1)中制定矩阵设计问题,使得为MIMO通道提出的多级水填充解决方案可以适用于LVC; (2)三个次优电力分配技术的提议,复杂性和效率之间的权衡不同; (3)多个接收方案的预编码矩阵设计; (4)电力分配方法的广泛模拟。所提出的最佳功率分配在很大程度上优于Sofackel功率受限问题的SoftCast中所考虑的分配简单调整;此外,两个次优溶液的两个次优溶液具有非常接近最佳的解决方案,具有明智地降低的复杂性。

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