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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >User-Centric Edge Sharing Mechanism in Software-Defined Ultra-Dense Networks
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User-Centric Edge Sharing Mechanism in Software-Defined Ultra-Dense Networks

机译:软件定义的超密集网络中以用户为中心的边缘共享机制

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摘要

The emerging mobile edge computing (MEC) evolutionarily extends the cloud services to the network edge. In order to efficiently coordinate distributed edge resources, software defined networking (SDN) at the network edge has been explored to realize the integrated management of communication, computation, and cache (3C) resources. However, many research efforts, in software-defined edge networks, are mainly devoted to 1C or 2C resource sharing. Motivated by high service performance and user demands, we propose a user-centric edge resource sharing model for software-defined ultra-dense network (SD-UDN) where multiple MEC servers around small base stations (SBSs) can share their 3C resources through OpenFlow-enabled switches. In particular, the service models of MEC servers and users are formulated to optimize the service process by minimizing the service delay, which is NP-hard. To address this NP-hard issue, a service association model is constructed based on design structure matrix (DSM), and a simulated annealing algorithm is employed to further optimize the service association model for reducing time complexity and offering a nearoptimal solution. Compared with traditional 1C or 2C resource sharing, the proposed edge resource sharing model can guarantee lower service delay for users.
机译:新兴移动边缘计算(MEC)进化地将云服务扩展到网络边缘。为了有效地协调分布式边缘资源,已经探讨了网络边缘的软件定义的网络(SDN)以实现通信,计算和高速缓存(3C)资源的集成管理。然而,在软件定义的边缘网络中,许多研究工作主要专门用于1C或2C资源共享。通过高服务性能和用户需求的推动,我们为软件定义的超密集网络(SD-UDN)提出了一个以用户为中心的边缘资源共享模型,其中小型基站(SBSS)周围的多个MEC服务器可以通过OpenFlow共享他们的3C资源-LeLabled交换机。特别地,MEC服务器和用户的服务模型被配制为通过最小化服务延迟来优化服务过程,这是NP-HARD。为了解决这个问题,基于设计结构矩阵(DSM)构建服务关联模型,采用模拟退火算法来进一步优化服务关联模型,以减少时间复杂度并提供近优化的解决方案。与传统的1C或2C资源共享相比,所提出的边缘资源共享模型可以保证用户的服务延迟。

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