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Joint Hybrid Backhaul and Access Links Design in Cloud-Radio Access Networks

机译:云无线电接入网络中的混合回程和接入链路联合设计

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The cloud-radio access network (CRAN) is expected to be the core network architecture for next generation mobile radio systems. In this paper, we consider the downlink of a CRAN formed of one central processor (the cloud) and several base station (BS), where each BS is connected to the cloud via either a wireless or capacity-limited wireline backhaul link. The paper addresses the joint design of the hybrid backhaul links (i.e., designing the wireline and wireless backhaul connections from the cloud to the BSs) and the access links (i.e., determining the sparse beamforming solution from the BSs to the users). The paper formulates the hybrid backhaul and access link design problem by minimizing the total network power consumption. The paper solves the problem using a two-stage heuristic algorithm. At one stage, the sparse beamforming solution is found using a weighted mixed 11/12 norm minimization approach; the correlation matrix of the quantization noise of the wireline backhaul links is computed using the classical rate-distortion theory. At the second stage, the transmit powers of the wireless backhaul links are found by solving a power minimization problem subject to quality-of-service constraints, based on the principle of conservation of rate by utilizing the rates found in the first stage. Simulation results suggest that the performance of the proposed algorithm approaches the global optimum solution, especially at high signal-to-interference-plus-noise ratio (SINR).
机译:云无线电接入网(CRAN)有望成为下一代移动无线电系统的核心网络架构。在本文中,我们考虑由一个中央处理器(云)和几个基站(BS)组成的CRAN的下行链路,其中每个BS通过无线或容量受限的有线回程链路连接到云。本文讨论了混合回程链路(即设计从云到BS的有线和无线回程连接)和接入链路(即确定从BS到用户的稀疏波束成形解决方案)的联合设计。本文通过最大程度地降低网络总功耗来阐述混合回程和接入链路设计问题。本文采用两阶段启发式算法解决了该问题。在一个阶段,使用加权混合11/12范数最小化方法找到了稀疏的波束成形解决方案。利用经典的速率失真理论,计算了有线回程链路量化噪声的相关矩阵。在第二阶段,基于通过利用在第一阶段中找到的速率来保持速率的原理,通过解决服从服务质量约束的功率最小化问题来找到无线回程链路的发射功率。仿真结果表明,所提出算法的性能接近全局最优解,尤其是在高信噪比(SINR)下。

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