An Energy Efficient Constraint RRH to Bbu Association in Cloud Radio Access Networks

H. Hesham, M. Ashour, T. el-Shabrawy
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Abstract

With the evolution of 5G and the motivation to provide high demand rates to users anywhere anytime, Cloud Radio Access Network (C-RAN) has become one of the most attractive research fields in the development of wireless communication. Alongside the many benefits of C-RAN including cost-effectiveness, dynamic resource allocation, and high rate provisioning comes the challenge of how to allocate the resources and optimize the energy utilization in the centralized cloud. This paper formulates an energy efficient constraint Base Band Unit to Remote Radio Head association according to user rate demands through minimizing the power consumption by deactivating Base Band Units in the Data Center. The formulation is dependent on both the processing capability of the servers in the cloud, and the user rate requirement. These two attributes introduce a challenge when allocating resources in a C-RAN system. Dual constraint bin packing approach is proposed to solve the energy problem. Results were tested with a varying user load showing a drop in the power consumption in the Data Center while successfully maintaining the total rate requirement of the system with a given bandwidth allocation based on Base Band Unit to Base Band Unit interference and frame processing deadline.
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云无线接入网中能效约束RRH - Bbu关联
随着5G技术的发展和向用户随时随地提供高需求速率的动力,云无线接入网(C-RAN)已成为无线通信发展中最具吸引力的研究领域之一。C-RAN除了具有成本效益、动态资源分配和高速率供应等诸多优点之外,还面临着如何在集中式云中分配资源和优化能源利用的挑战。本文通过在数据中心停用基带单元以最小化功耗,根据用户速率需求制定了一种节能约束基带单元与远程无线头关联。该公式取决于云中服务器的处理能力和用户速率需求。在C-RAN系统中分配资源时,这两个属性带来了挑战。针对能量问题,提出了双约束装箱方法。结果在不同的用户负载下进行了测试,显示数据中心的功耗下降,同时成功地保持了系统的总速率需求,并基于基带单元到基带单元的干扰和帧处理截止日期进行了给定的带宽分配。
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