H-RAN:一种云- ran负载平衡方法

Byomakesh Mahapatra, A. K. Turuk, N. Ray, Awaneesh Kumar Yadav
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引用次数: 0

摘要

集中式云无线接入网(C-RAN)在成本和覆盖范围方面,在很大程度上改变了传统的无线通信体系结构。C-RAN体系结构的主要限制是它有一个集中的处理单元,它通过增加服务等待时间来增加网络延迟。本文提出的异构无线接入网(H-RAN)由一些边缘节点和位于远程无线电头(RRH)中的本地处理单元(LPU)组成。增强型RRH (eRRH)节点的引入,一方面增加了网络容量,降低了网络时延,另一方面也分担了集中式BBU的计算控制任务。所提出的LPU单元由若干小的VB组成,这些小的VB一般处理实时计算和处理任务。在本文的第一部分中,我们提出了一种新的RAN架构,并通过详细的数学模型表示了所有负载均衡条件。本文还提出了一种负载感知的动态BS交换算法(LDBSS),用于功率优化和负载均衡。在考虑C-RAN和H-RAN的数据包到达数量相等的情况下,借助CloudSim 3.0.3模拟器进行仿真工作。仿真结果表明,与C-RAN架构相比,在RRH处引入中间边缘层和LPU可以减少网络的等待时间和阻塞概率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
H-RAN: An Approach Toward Cloud-RAN Load Balancing
The centralized cloud radio access network (C-RAN), change the BS architecture to a large extent, in term of associated cost and coverage. The main limitations of C-RAN architecture is that it has a centralized processing unit, which increases the network latency by increasing the service waiting time. The proposed Heterogeneous Radio Access Network (H-RAN) consist of some Edge node and local processing unit (LPU) which resides in remote radio head (RRH). This introduction of enhanced RRH (eRRH) node increases the capacity of the network and decrease the network latency, on the other hand its also share the computing and controlling task of the centralized BBU. The proposed LPU unit consists of a number of small VB which generally handle real-time computing and processing task. In the first section of this paper, we have proposed a new RAN architecture and all the load balancing condition are represented through a detail mathematical model. The paper also present a load-aware dynamic BS switching algorithm (LDBSS) for power optimization and load balancing. The simulation work is carried out with the help of CloudSim 3.0.3 simulator by considering equal number of packet arrival for both C-RAN and H-RAN. The simulated result shows that with the introduction of the middle Edge layer and LPU at the RRH reduces the waiting time and blocking probability of the network as compared the C-RAN architecture.
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