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On the Generalized Degrees of Freedom of the Gaussian Interference Relay Channel

机译:关于高斯干扰中继信道的广义自由度

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摘要

The symmetric two-user Gaussian interference relay channel (IRC) is studied from a generalized degrees of freedom (GDoF) perspective. While it is known that the relay does not increase the DoF of the IRC, such a characterization has not been reported for the GDoF yet. The focus of this paper is on all cases where the interference link is stronger than the link from the source to the relay. This regime basically covers half the space of all possible parameters of the IRC. By using genie-aided approaches, new sum-capacity upper bounds are derived. These bounds are then compared with rates achieved with a novel transmission scheme, which is based on a functional decode-and-forward (FDF) strategy. It is shown that the GDoF of the IRC is achieved by FDF in the given regime, and that a relay can indeed increase the GDoF of IRC. Finally, the FDF scheme is compared with other schemes like decode-and-forward as well as compress-and-forward at low, moderate, and high signal-to-noise ratios.
机译:从广义自由度(GDoF)角度研究对称的两用户高斯干扰中继信道(IRC)。虽然已知中继器不会增加IRC的DoF,但尚未报告GDoF的这种特征。本文的重点是干扰链路比从源到中继的链路更强的所有情况。该机制基本上覆盖了IRC所有可能参数的一半空间。通过使用精灵辅助方法,得出了新的总容量上限。然后,将这些界限与采用基于功能解码和转发(FDF)策略的新型传输方案所实现的速率进行比较。结果表明,IRC的GDoF由FDF在给定的状态下实现,而中继确实可以增加IRC的GDoF。最后,将FDF方案与其他方案进行比较,例如在低,中等和高信噪比下进行解码和转发以及压缩和转发。

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