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Efficient virtual network function placement strategies for Cloud Radio Access Networks

机译:云无线电接入网的高效虚拟网络功能放置策略

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The new generation of 5G mobile services place stringent requirements for cellular network operators in terms of latency and costs. The latest trend in radio access networks (RANs) is to pool the baseband units (BBUs) of multiple radio base stations and to install them in a centralized infrastructure, such as a cloud, for statistical multiplexing gains. The technology is known as Cloud Radio Access Network (CRAN). Since cloud computing is gaining significant traction and virtualized data centers are becoming popular as a cost-effective infrastructure in the telecommunication industry, CRAN is being heralded as a candidate technology to meet the expectations of radio access networks for 5G. In CRANs, low energy base stations (BSs) are deployed over a small geographical location and are connected to a cloud via finite capacity backhaul links. Baseband processing unit (BBU) functions are implemented on the virtual machines (VMs) in the cloud over commodity hardware. Such functions, built in software, are termed as virtual functions (VFs). The optimized placement of VFs is necessary to reduce the total delays and minimize the overall costs to operate CRANs. Our study considers the problem of optimal VF placement over distributed virtual resources spread across multiple clouds, creating a centralized BBU cloud. We propose a combinatorial optimization model and the use of two heuristic approaches, which are, branch-and-bound (BnB) and simulated annealing (SA) for the proposed optimal placement. In addition, we propose enhancements to the standard BnB heuristic and compare the results with standard BnB and SA approaches. The proposed enhancements improve the quality of the solution in terms of latency and cost as well as reduce the execution complexity significantly. We also determine the optimal number of clouds, which need to be deployed so that the total links delays, as well as the service migration delays, are minimized, while the total cloud deployment cost is within the acceptable limits.
机译:新一代5G移动服务在延迟和成本方面对蜂窝网络运营商提出了严格的要求。无线电接入网络(RAN)的最新趋势是集中多个无线电基站的基带单元(BBU),并将它们安装在集中式基础结构(如云)中,以实现统计复用收益。该技术被称为云无线电接入网(CRAN)。由于云计算正获得广泛的关注,虚拟化数据中心已成为电信行业中一种经济高效的基础架构,因此CRAN被视为满足5G无线电接入网络期望的候选技术。在CRAN中,低能耗基站(BS)部署在较小的地理位置上,并通过有限容量的回程链路连接到云。基带处理单元(BBU)功能在商用硬件上的云中的虚拟机(VM)上实现。这些内置于软件中的功能称为虚拟功能(VF)。 VF的优化放置对于减少总延迟并最大程度降低运行CRAN的总成本是必要的。我们的研究考虑了跨多个云分布的分布式虚拟资源上最佳VF放置的问题,从而创建了一个集中式BBU云。我们提出了一个组合优化模型,并使用了两种启发式方法,即分支定界(BnB)和模拟退火(SA)来实现最佳布局。此外,我们提出了对标准BnB启发式方法的增强,并将结果与​​标准BnB和SA方法进行了比较。提出的增强功能在延迟和成本方面提高了解决方案的质量,并显着降低了执行复杂性。我们还确定了需要部署的最佳云数量,以使总链路延迟以及服务迁移延迟最小化,同时总云部署成本在可接受的范围内。

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