Low and high-delay source-channel coding with bandwidth expansion and correlated interference

A. Saleh, W. Chan, F. Alajaji
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引用次数: 2

Abstract

We consider the problem of sending a Gaussian source over an additive white Gaussian noise channel with Gaussian correlated interference known to the transmitter. We study both low-delay and asymptotically high-delay (in the sense of infinite source and coding block lengths) joint source-channel coding schemes based on purely analog and hybrid-digital analog (HDA) schemes with bandwidth expansion, respectively. The achievable (square error) distortion region of these schemes under matched and mismatched noise power is analyzed. The low-delay scheme uses a non-parametric analog mapping that is designed using a joint optimization of the encoder and the decoder. Numerical results show that the non-parametric approach adapts better to the interference than the classical linear scheme. For the high-delay regime, we establish a lower bound on the system's distortion and propose a layered HDA scheme based on Wyner-Ziv and HDA Costa coding. The proposed HDA scheme is shown to perform close to the derived bound and to be resilient under noise mismatch.
具有带宽扩展和相关干扰的低延迟和高延迟源信道编码
我们考虑了在发射器已知高斯相关干扰的加性高斯白噪声信道上发送高斯源的问题。我们分别研究了基于纯模拟和混合数字模拟(HDA)方案的低延迟和渐近高延迟(在无限源和编码块长度的意义上)联合源信道编码方案。分析了这些方案在匹配和不匹配噪声功率下可实现的(平方误差)失真区域。低延迟方案使用非参数模拟映射,该映射是通过编码器和解码器的联合优化设计的。数值结果表明,与传统的线性格式相比,非参数格式具有更好的抗干扰能力。在高延迟状态下,建立了系统失真的下界,提出了基于Wyner-Ziv和HDA Costa编码的分层HDA方案。结果表明,所提出的HDA方案在噪声失配情况下具有较强的弹性,性能接近于推导出的边界。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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