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Three-Way Channels With Multiple Unicast Sessions: Capacity Approximation via Network Transformation

机译:具有多个单播会话的三路通道:通过网络转换的容量近似

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A network of three nodes mutually communicating with each other is studied. This multi-way network is a suitable model for three-user device-to-device communications. The main goal of this paper is to characterize the capacity region of the underlying Gaussian three-way channel (3WC) within a constant gap. To this end, a capacity outer bound is derived using cut-set bounds and genie-aided bounds. For achievability, the 3WC is first transformed into an equivalent star channel. This latter is then decomposed into a set of “successive” sub-channels, leading to a sub-channel allocation problem. Using backward decoding, interference neutralization, and known results on the capacity of the star-channel relying of physical-layer network coding, an achievable rate region for the 3WC is obtained. It is then shown that the achievable rate region is within a constant gap of the developed outer bound, leading to the desired capacity approximation. Interestingly, in contrast to the Gaussian two-way channel (TWC), adaptation is necessary in the 3WC. Furthermore, message splitting is another ingredient of the developed scheme for the 3WC, which is not required in the TWC. The two setups are, however, similar in terms of their sum-capacity pre-log, which is equal to 2. Finally, some interesting networks and their approximate capacities are recovered as special cases of the 3WC, such as the cooperative broadcast channel and multiple access channel.
机译:研究了三个相互通信的节点的网络。该多路网络是用于三用户设备到设备通信的合适模型。本文的主要目标是在恒定的间隙内表征基本的高斯三通通道(3WC)的容量区域。为此,使用割集边界和精灵辅助边界来导出能力外边界。为了达到可实现性,首先将3WC转换为等效的星形通道。然后,后者被分解为一组“连续”子信道,从而导致子信道分配问题。使用后向解码,干扰抵消以及依赖物理层网络编码的星形信道容量的已知结果,可以获得3WC的可实现速率区域。然后表明,可达到的速率区域在所形成的外边界的恒定间隙内,从而导致所需的容量近似值。有趣的是,与高斯双向通道(TWC)相反,在3WC中必须进行自适应。此外,消息拆分是3WC的已开发方案的另一个组成部分,TWC不需要。但是,这两种设置的总容量前对数相似,等于2。最后,作为3WC的特殊情况,恢复了一些有趣的网络及其近似容量,例如协作广播频道和多路访问通道。

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