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Green Resource Management for Over-the-Top Services in 5G Networks Using Matching Theory

机译:基于匹配理论的5G网络上层业务绿色资源管理

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Nowadays, over-the-top (OTT) applications can be accessed via Internet connections over cellular networks. Mobile network operators (MNOs) strive to accommodate mobile traffic through energy efficient shared networks. The OTT service providers (OSPs) need to interact with MNOs and require resources for offering desired quality- of-service (QoS) levels to users of different categories, with different QoS requirements, which imply prioritization of certain OTT flows. Resource scheduling should respect network neutrality, which forbids OSP prioritization. Furthermore, OSPs request resources periodically, according to their performance goals, causing delay in flows' accommodation due to i) the time required for information exchange between OSPs and MNOs, affected by network congestion, and ii) the time required for flows to receive resources, affected by the number of active flows. The intervention of OSPs may induce additional energy cost for the MNOs and affect the mobile network energy efficiency. Acknowledging the lack of OSP- oriented resource management approaches, we introduce a matching theoretic flow prioritization (MTFP) algorithm and investigate delay and energy efficiency through extensive simulations. Our study shows that MTFP improves both metrics comparing to the best effort approach, whereas its performance is affected by the OTT traffic level and the frequency of resource allocation process.
机译:如今,可以通过蜂窝网络上的Internet连接访问上层(OTT)应用程序。移动网络运营商(MNO)努力通过节能共享网络来容纳移动流量。 OTT服务提供商(OSP)需要与MNO进行交互,并需要资源来为具有不同QoS要求的不同类别的用户提供所需的服务质量(QoS)级别,这意味着需要对某些OTT流进行优先级划分。资源调度应尊重网络中立性,这禁止OSP优先。此外,由于以下原因,OSP会定期根据其性能目标请求资源:i)O​​SP和MNO之间的信息交换所需的时间,该时间受网络拥塞的影响,并且ii)流程接收资源所需的时间,这会导致流的容纳延迟。 ,受活动流数量的影响。 OSP的干预可能会为MNO带来额外的能源成本,并影响移动网络的能源效率。认识到缺乏面向OSP的资源管理方法,我们介绍了一种匹配的理论流优先级排序(MTFP)算法,并通过大量的仿真研究了延迟和能效。我们的研究表明,与尽力而为方法相比,MTFP改善了这两个指标,而其性能却受到OTT流量水平和资源分配过程的频率的影响。

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