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Energy Efficiency Maximization for Downlink Cloud Radio Access Networks With Data Sharing and Data Compression

机译:具有数据共享和数据压缩功能的下行链路云无线接入网的能源效率最大化

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摘要

This paper aims to maximize the energy efficiency of a downlink cloud radio access network (C-RAN). Here, data is transferred from a baseband unit in the core network to several remote radio heads via a set of edge routers over capacity-limited fronthaul links. The remote radio heads then send the received signals to their users via radio access links. Both data sharing and compression-based strategies are considered for fronthaul data transfer. New mixed-integer nonlinear problems are formulated, in which the ratio of network throughput and total power consumption is maximized. These challenging problem formulations include practical constraints on routing, predefined minimum data rates, fronthaul capacity, and maximum remote radio head transmit power. By employing the successive convex quadratic programming, iterative algorithms are proposed with guaranteed convergence to the Fritz John solutions of the formulated problems. Significantly, each iteration of the proposed algorithms solves only one simple convex program. Numerical examples with practical parameters confirm that the proposed joint optimization designs markedly improve the C-RAN's energy efficiency compared to benchmark schemes. They also show that the fronthaul data-sharing strategy outperforms its compression-based counterpart in terms of energy efficiency, in both single-hop and multi-hop network scenarios.
机译:本文旨在最大化下行链路云无线接入网(C-RAN)的能源效率。此处,数据通过容量受限的前传链路上的一组边缘路由器从核心网络中的基带单元传输到多个远程无线头。然后,远程无线电头通过无线电访问链接将接收到的信号发送给他们的用户。数据共享和基于压缩的策略都考虑用于前传数据传输。提出了新的混合整数非线性问题,其中网络吞吐量与总功耗之比最大化。这些具有挑战性的问题公式包括对路由的实际限制,预定义的最小数据速率,前传容量和最大远程无线电头端发射功率。通过采用连续凸二次规划,提出了迭代算法,该算法保证了所提问题的弗里茨·约翰解的收敛性。重要的是,所提出算法的每次迭代仅解决了一个简单的凸程序。带有实际参数的数值示例证实,与基准方案相比,所提出的联合优化设计显着提高了C-RAN的能效。他们还表明,在单跳和多跳网络方案中,前传数据共享策略在能效方面都优于基于压缩的策略。

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