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On the Optimality of Treating Inter-Cell Interference as Noise in Uplink Cellular Networks

机译:上行蜂窝网络中将小区间干扰视为噪声的最优性

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In this paper, we explore the information-theoretic optimality of treating interference as noise (TIN) in cellular networks. We focus on uplink scenarios modeled by the Gaussian interfering multiple access channel (IMAC), comprising K mutually interfering multiple access channels (MACs), each formed by an arbitrary number of transmitters communicating independent messages to one receiver. We define TIN for this setting as a scheme in which each MAC (or cell) performs a power-controlled version of its capacity-achieving strategy, with Gaussian codebooks and successive decoding, while treating interference from all other MACs (i.e., inter-cell interference) as noise. We characterize the generalized degrees-of-freedom (GDoF) region achieved through the proposed TIN scheme, and then identify conditions under which this achievable region is convex without the need for time-sharing. We then tighten these convexity conditions and identify a regime in which the proposed TIN scheme achieves the entire GDoF region of the IMAC and is within a constant gap of the entire capacity region.
机译:在本文中,我们探讨了在蜂窝网络中将干扰视为噪声(TIN)的信息理论最优性。我们关注由高斯干扰多路访问信道(IMAC)建模的上行链路场景,该场景包括K个相互干扰的多路访问信道(MAC),每个信道由任意数量的发送器组成,这些发送器将独立的消息传送到一个接收器。我们将此设置的TIN定义为一种方案,其中每个MAC(或小区)使用高斯码本和连续解码来执行其容量实现策略的功率控制版本,同时处理来自所有其他MAC(即小区间)的干扰干扰)。我们表征了通过提出的TIN方案实现的广义自由度(GDoF)区域,然后确定在此条件下该可达到的区域为凸形而无需分时的条件。然后,我们收紧这些凸度条件,并确定一种方案,在该方案中,拟议的TIN方案可实现IMAC的整个GDoF区域,并且在整个容量区域的恒定间隙内。

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