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The compute-and-forward transform

机译:计算转发转换

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摘要

We derive an achievable rate region for the Gaussian K-user multiple-access channel (MAC) where all users transmit codewords from a chain of nested lattices. For any set of channel coefficients, this rate region contains points within a constant gap from the sum capacity boundary of the MAC. The main tool used is the recently proposed compute-and-forward framework. A new transformation of a MAC to a modulo-lattice multiple-input multiple-output (MIMO) channel is introduced based on this framework. Specifically, from one noisy linear combination of the transmitted signals the receiver attempts to decode K linearly independent equations with integer-valued coefficients. While the individual rates at which these equations can be decoded are highly sensitive to the exact channel gains, their sum is always within a constant gap from the sum capacity boundary of the MAC. The transformation is then utilized for establishing the desired rate region.
机译:我们为高斯K用户多路访问信道(MAC)导出了一个可实现的速率区域,其中所有用户都从嵌套格子链中传输代码字。对于任何一组信道系数,此速率区域均包含与MAC的总容量边界相距恒定间隙内的点。使用的主要工具是最近提出的计算转发框架。在此框架的基础上,引入了一种新的将MAC转换为模格多输入多输出(MIMO)通道的方法。具体而言,接收机从发射信号的一个噪声线性组合中尝试解码具有整数值系数的K个线性独立方程。尽管可以用这些公式解码的各个速率对确切的信道增益高度敏感,但它们的总和始终与MAC的总容量边界相距恒定。然后将该变换用于建立期望的速率区域。

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