异构云无线接入网络中节能控制的框架

Y. Zhang, Ying Wang
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引用次数: 8

摘要

移动数据流量的指数级增长推动了基础设施的演进,同时也给5G网络的设计带来了巨大的挑战,如能耗和费用巨大、运营复杂性巨大、管理灵活性不足等。软件定义网络(SDN)和云计算以其简单、高效的优势成为未来网络的两大发展方向。异构云无线接入网H-CRAN(异构云无线接入网)架构同时具有SDN和云计算的特性,对系统性能有显著的提升。而远程无线电单元(RRHs)之间的层内干扰,特别是RRHs与高功率节点(HPN)之间的层间干扰会影响频谱效率(SE)和能量效率(EE)性能。为了减轻H-CRANs的层间干扰,提高系统性能,考虑了干扰协调技术。本文对RRHs和HPNs的发射功率进行了优化,使系统EE最大化。提出了具有总允许功率约束的优化问题。为了处理非凸性问题,基于Dinkelbach方法和对偶间隙定理,对一个等价凸问题进行了变换。通过对偶分解方法,推导出RRH和HPN的最优功率分配。数值结果表明,与比较方案相比,该方案能提高H-CRANs的EE。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A framework for energy efficient control in heterogeneous cloud radio access networks
The exponential growth in the mobile data traffic promotes the evolution of the infrastructure, while takes grate challenges for designing 5G network, such as significant amount of energy consumption and expenses, huge complexity on operation and lack of flexibility on management. Software defined network (SDN) and cloud computing are the two promising technologies for the future network due to their advantages in simplicity and efficiency in operation. Heterogeneous cloud radio access network (H-CRAN) architecture is characterized by the attributes of both SDN and cloud computing, which brings significant improvements on system performance. while the intra-tier interference among remote radio units (RRHs) especially the inter-tier interference between RRHs and high power node (HPN) affect the spectral efficiency (SE) and energy efficiency (EE) performance. To mitigate the inter-tier interference and improve system performance of H-CRANs, the interference coordination technology is considered. In this paper, the transmit power for RRHs and HPNs are optimized to maximize system EE. The optimization problem with total allowed power constrains is developed. To deal with the non-convexity, based on the Dinkelbach method and the duality gap theorem, an equivalent convex problem is transformed. Through the dual decomposition method, the optimal power allocation for RRH and HPN are derived. Numerical results show that the proposed scheme can improve the EE of H-CRANs compared with the comparison scheme.
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