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Source-Channel Coding Theorems for the Multiple-Access Relay Channel

机译:多路访问中继信道的源信道编码定理

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We study reliable transmission of arbitrarily correlated sources over multiple-access relay channels (MARCs) and multiple-access broadcast relay channels (MABRCs). In MARCs only the destination is interested in reconstructing the sources, while in MABRCs, both the relay and the destination want to reconstruct them. In addition to arbitrary correlation among the source signals at the users, both the relay and the destination have side information correlated with the source signals. Our objective is to determine whether a given pair of sources can be losslessly transmitted to the destination for a given number of channel symbols per source sample, defined as the source-channel rate. Sufficient conditions for reliable communication based on operational separation, as well as necessary conditions on the achievable source-channel rates are characterized. Since operational separation is generally not optimal for MARCs and MABRCs, sufficient conditions for reliable communication using joint source-channel coding schemes based on a combination of the correlation preserving mapping technique with Slepian-Wolf source coding are also derived. For correlated sources transmitted over fading Gaussian MARCs and MABRCs, we present conditions under which separation (i.e., separate and stand-alone source and channel codes) is optimal. This is the first time optimality of separation is proved for MARCs and MABRCs.
机译:我们研究了多访问中继频道(MARC)和多访问广播中继频道(MABRC)上任意相关源的可靠传输。在MARC中,只有目的地对重建源感兴趣,而在MABRC中,中继站和目的地都希望对其进行重建。除了用户处的源信号之间的任意相关性之外,中继站和目的地都具有与源信号相关联的辅助信息。我们的目标是确定是否可以针对每个源样本的给定数量的通道符号(定义为源通道速率)将给定的一对源无损传输到目的地。表征了基于操作分离的可靠通信的充分条件,以及可实现的源信道速率的必要条件。由于操作间隔通常对于MARC和MABRC并不是最佳的,因此还基于基于相关保留映射技术与Slepian-Wolf源编码的组合,得出了使用联合源信道编码方案进行可靠通信的充分条件。对于在衰落的高斯MARC和MABRC上传输的相关源,我们提出了分离(即分离的和独立的源代码和信道代码)最佳的条件。这是首次证明MARC和MABRC分离的最佳性。

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