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Finite-length linear schemes for joint source-channel coding over Gaussian broadcast channels with feedback

机译:具有反馈的高斯广播信道联合信源编码的有限长线性方案

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摘要

We study linear encoding for a pair of correlated Gaussian sources transmitted over a two-user Gaussian broadcast channel in the presence of unit-delay noiseless feedback, abbre- viated as the GBCF. Each pair of source samples is transmitted using a linear transmission scheme in a finite number of channel uses. We investigate three linear transmission schemes: A scheme based on the Ozarow-Leung (OL) code, a scheme based on the linear quadratic Gaussian (LQG) code of Ardestanizadeh et al., and a novel scheme derived in this work using a dynamic programming (DP) approach. For the OL and LQG schemes we present lower and upper bounds on the minimal number of channel uses needed to achieve a target mean-square error (MSE) pair. For the LQG scheme in the symmetric setting, we identify the optimal scaling of the sources, which results in a significant improvement of its finite horizon performance, and, in addition, characterize the (exact) minimal number of channel uses required to achieve a target MSE. Finally, for the symmetric setting, we show that for any fixed and finite number of channel uses, the DP scheme achieves an MSE lower than the MSE achieved by either the LQG or the OL schemes.
机译:我们研究了在存在单位延迟无噪声反馈(简称为GBCF)的情况下,通过两个用户的高斯广播信道传输的一对相关高斯源的线性编码。使用线性传输方案在有限数量的信道使用中传输每对源样本。我们研究了三种线性传输方案:基于Ozarow-Leung(OL)码的方案,基于Ardestanizadeh等人的线性二次高斯(LQG)码的方案,以及使用动态规划在这项工作中得出的新颖方案(DP)方法。对于OL和LQG方案,我们给出了实现目标均方误差(MSE)对所需的最小通道使用量的下限和上限。对于对称设置中的LQG方案,我们确定了信号源的最佳缩放比例,这导致了其有限水平性能的显着改善,此外,还描述了实现目标所需的(精确)最少通道使用量MSE。最后,对于对称设置,我们表明对于任何固定和有限数量的信道使用,DP方案实现的MSE均比LQG或OL方案实现的MSE低。

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