Interference neutralization in distributed lossy source coding

M. Maddah-ali, David Tse
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引用次数: 24

Abstract

We consider a problem of distributed lossy Gaussian source coding with inputs (y1, y2, y3), where y1 and y2 are positively correlated, y3 = y1 − cy2, c ≥ 0, and the decoder requires y3 with a target distortion. For this problem, known achievable schemes are unboundedly loose. Inspired by results of binary expansion models, we characterize the rate-distortion region within a bounded gap. Treating each source as a multilayer input, an achievable scheme is developed based on the following observations: (i) some middle layers of y1 and y2 are not needed at the decoder, (ii) the required layers are combined with some unneeded interference information, (iii) linear operations among input layers can unboundedly reduce the load of reporting interference. Showing that the cut-set outer-bound has an unbounded gap, we also establish a new outer-bound to prove the bounded-gap result. 1
分布式有损源编码中的干扰抑制
我们考虑一个具有输入(y1, y2, y3)的分布式有损高斯源编码问题,其中y1和y2正相关,y3 = y1−cy2, c≥0,并且解码器需要具有目标失真的y3。对于这个问题,已知的可实现方案是无限松散的。受二元展开模型结果的启发,我们描述了有界间隙内的速率畸变区域。将每个源视为多层输入,基于以下观察,开发了一种可实现的方案:(i)解码器不需要y1和y2的一些中间层,(ii)所需层与一些不需要的干扰信息组合,(iii)输入层之间的线性运算可以无限制地减少报告干扰的负载。在证明割集外界存在无界间隙的基础上,建立了一个新的外界来证明有界间隙的结果。1
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