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Analog Network Coding Mappings in Gaussian Multiple-Access Relay Channels

机译:高斯多路访问中继信道中的模拟网络编码映射

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We consider the multiple-access relay channel with two source nodes, one relay node and one destination node. For practical simplicity, we consider orthogonal transmission of the source messages and half-duplex relaying. We also assume that the relay is memoryless and is implemented based on a two-to-one deterministic mapping. Our focus is on proposing and investigating such mappings. Essentially, the proposed relaying functions combine the two incoming analog signals and forward them to the destination, thus we term them as analog network coding mappings. Both linear and non-linear relaying are investigated for the multiple-access relay channel and the special case of the multiple-access two-hop channel. In particular, we suggest to use mappings based on the Archimedean spiral for analog non-linear combining. In addition, we propose to couple spiral mappings with sawtooth-like mappings to exploit the potential side information provided by the direct links of the multiple-access relay channel. In the case of symmetric topology, our proposed scheme can be seen as an extension to the amplify-and-forward scheme, where the asymmetric input/output dimensionality in the relay node is handled before amplifying. We investigate the resulting achievable rate regions and sum rates, and demonstrate significant gains over conventional relaying schemes.
机译:我们考虑具有两个源节点,一个中继节点和一个目的节点的多址中继信道。为了实用上的简化,我们考虑源消息的正交传输和半双工中继。我们还假设中继是无内存的,并且是基于二对一确定性映射实现的。我们的重点是提出和研究此类映射。本质上,建议的中继功能将两个传入的模拟信号合并,然后将它们转发到目的地,因此我们将其称为模拟网络编码映射。针对多路访问中继信道和多路访问两跳信道的特殊情况,研究了线性和非线性中继。特别是,我们建议使用基于Archimedean螺旋的映射进行模拟非线性组合。此外,我们建议将螺旋映射与锯齿状映射结合使用,以利用由多路访问中继信道的直接链接提供的潜在辅助信息。在对称拓扑的情况下,我们提出的方案可以看作是放大转发方案的扩展,其中中继节点中的不对称输入/输出维数在放大之前得到处理。我们调查了可实现的速率区域和总速率,并证明了比传统中继方案显着的收益。

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