Integer-forcing source coding: Successive cancellation and source-channel duality

Wenbo He, B. Nazer
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引用次数: 12

Abstract

Integer-forcing is a technique that exploits the algebraic structure of a linear or lattice code to realize “single-user” encoding and decoding algorithms with significant rate gains over conventional strategies. It was originally proposed for the Gaussian MIMO multiple-access channel. Subsequent efforts have generalized this strategy to the Gaussian MIMO broadcast channel and the Gaussian distributed source coding problem. Our prior work has established uplink-downlink duality for integer-forcing. Here, we propose a successive cancellation generalization of integer-forcing source coding. We then develop source-channel duality results that connect the achievable rates of this scheme to those of successive integer-forcing channel coding.
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整数强制源编码:连续消去和源信道对偶性
整数强制是一种利用线性或格码的代数结构来实现“单用户”编码和解码算法的技术,比传统策略具有显著的速率增益。它最初是针对高斯MIMO多址信道提出的。随后的研究将该策略推广到高斯MIMO广播信道和高斯分布源编码问题。我们之前的工作已经建立了整数强迫的上行-下行对偶性。在这里,我们提出了一种连续消去推广的整数强制源编码。然后,我们开发了源信道对偶性结果,将该方案的可实现速率与连续整数强制信道编码的可实现速率联系起来。
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