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On the Optimality of Treating Inter-Cell Interference as Noise: Downlink Cellular Networks and Uplink-Downlink Duality

机译:关于噪声细胞间干扰的最优性:下行链路蜂窝网络和上行链路下行链路二元性

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We consider the information-theoretic optimality of treating inter-cell interference as noise (multi-cell TIN) in downlink cellular networks. We focus on scenarios modeled by the Gaussian interfering broadcast channel (IBC), comprising K mutually interfering Gaussian broadcast channels (BCs), each formed by a base station communicating independent messages to an arbitrary number of users. We establish a new power allocation duality between the IBC and its dual interfering multiple access channel (IMAC), which entails that the corresponding generalized degrees-of-freedom regions achieved through multi-cell TIN and power control (TINA regions) for both networks are identical. As by-products of this duality, we obtain an explicit characterization of the IBC TINA region from a previously established characterization of the IMAC TINA region; and identify a multi-cell convex-TIN regime in which the IBC TINA region is a polyhedron (hence convex) without the need for time-sharing. We then identify a smaller multi-cell TIN regime in which the IBC TINA region is optimal and multi-cell TIN achieves the entire capacity region of the IBC, up to a constant gap. This is accomplished by deriving a new genie-aided outer bound for the IBC, that reveals a novel BC-type order that holds amongst users in each constituent BC (or cell) under inter-cell interference, which in turn is not implied by previously known BC-type orders (i.e. degraded, less noisy and more capable orders). The multi-cell TIN regime that we identify for the IBC coincides with a corresponding multi-cell TIN regime previously identified for the IMAC, hence establishing a comprehensive uplink-downlink duality of multi-cell TIN in the GDoF (and approximate capacity) sense.
机译:我们考虑在下行链路蜂窝网络中将小区间干扰处理细胞间干扰的信息定理最优性。我们专注于由高斯干扰广播信道(IBC)建模的场景,包括K相互干扰高斯广播信道(BCS),每个基站由基站传送到任意数量的用户。我们建立了IBC和其双对干扰多次访问通道(IMAC)之间的新功率分配二元性,这需要通过多单元锡和两个网络(TINA)实现的相应的广义自由度区域是两个网络的完全相同的。作为这种二元性的副产品,我们从先前建立了IMac Tina Reaile的表征的IBC Tina地区的明确表征;并识别其中IBC TINA区域是多层凸锡制度,其中IBC TINA区域是多面体(因此凸),而无需时间共享。然后,我们识别较小的多细胞锡制度,其中IBC蒂娜区域是最佳的,多电池锡实现IBC的整个容量区域,直到恒定的间隙。这是通过导出IBC的新的Genie辅助外部界限来实现,该外部侧面揭示了在小区间干扰的每个组成BC(或单元)中保存的新的BC型顺序,这反过来不由先前暗示已知的BC型订单(即劣化,较少嘈杂和更有能力的订单)。我们识别IBC的多细胞锡制度与先前为IMAC识别的相应的多细胞锡制度重合,因此在GDOF(近似容量)意义上建立多小区锡的全面上行链路下行链路二元性。

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