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Communication Versus Computation: Duality for Multiple-Access Channels and Source Coding

机译:通信与计算:多路访问信道和源编码的双重性

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Computation codes in network information theory are designed for scenarios where the decoder is not interested in recovering the information sources themselves, but only a function thereof. Körner and Marton showed for distributed source coding (DSC) that such function decoding can be achieved more efficiently than decoding the full information sources. Compute–forward has shown that function decoding, in combination with network coding ideas, is a useful building block for end-to-end communication over a network. In both cases, good computation codes are the key component in the coding schemes. Could these same codes simultaneously also enable full message decoding over a sufficiently strong multiple-access channel (MAC)? This work establishes a partial negative answer and converse result. Specifically, for any code that is known to be a good computation code for some MAC, we characterize a class of MACs for which that code cannot enable full message decoding (and vice versa). Finally, an analogous duality result is established for a related DSC problem.
机译:网络信息理论中的计算代码设计用于以下情况:解码器不希望恢复信息源本身,而仅希望恢复其功能。 Körner和Marton在分布式源编码(DSC)中表明,与对完整的信息源进行解码相比,可以更有效地实现这种功能解码。计算转发表明,将功能解码与网络编码思想相结合,是网络上端到端通信的有用构建块。在这两种情况下,良好的计算代码都是编码方案中的关键组成部分。这些相同的代码是否还能同时在足够强大的多址访问信道(MAC)上实现完整的消息解码?这项工作建立了部分否定的答案和相反的结果。具体来说,对于已知是某些MAC的良好计算代码的任何代码,我们将表征其代码无法启用完整消息解码的MAC类(反之亦然)。最后,为相关的DSC问题建立了类似的对偶结果。

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