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Uplink-Downlink Duality For Integer-Forcing in Cloud Radio Access Networks

机译:云无线电接入网络中整数强制的上行链路-下行链路对偶

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Consider a cloud radio access network where neighboring basestations are able to jointly encode and decode their signals via rate-limited links to a central processor. One promising approach to such systems is for the basestations to simply quantize their observations and send them to the central processor (during the uplink phase) and to emit the quantized signals generated by the central processor (during the downlink phase). Several recent works have proposed compression-based architectures based on sequential source and channel coding. In prior work, we proposed an integer-forcing architecture for the uplink phase, and, in this paper, we propose an integer-forcing architecture for the downlink phase. As part of the achievability argument, we introduce a novel “reverse” integer-forcing source coding strategy that can be used to quantize sources so that their quantization noises are correlated, i.e., multivariate compression. We also establish uplink-downlink duality between our uplink and downlink integer-forcing architectures, and use this as the basis for optimizing the beamforming, equalization, and integer matrices.
机译:考虑一个云无线电接入网,其中邻近的基站能够通过到中央处理器的限速链路来联合编码和解码其信号。这种系统的一种有前途的方法是让基站简单地量化其观测值,并将其发送给中央处理器(在上行链路阶段),并发出由中央处理器生成的量化信号(在下行链路阶段)。最近的一些工作提出了基于顺序源和通道编码的基于压缩的体系结构。在先前的工作中,我们为上行链路阶段提出了一种强制整数的体系结构,在本文中,我们为下行链路阶段提出了一种强制整数的体系结构。作为可实现性论证的一部分,我们介绍了一种新颖的“反向”强制整数源编码策略,该策略可用于量化源,以便它们的量化噪声相关,即多变量压缩。我们还在上行链路和下行链路强制整数体系结构之间建立上行链路-下行链路对偶性,并以此为基础来优化波束成形,均衡和整数矩阵。

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