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首页> 外文期刊>ACM transactions on sensor networks >QoS-Aware VNF Placement and Service Chaining for IoT Applications in Multi-Tier Mobile Edge Networks
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QoS-Aware VNF Placement and Service Chaining for IoT Applications in Multi-Tier Mobile Edge Networks

机译:QoS感知VNF放置和服务在多层移动边缘网络中的IOT应用程序链接

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摘要

Mobile edge computing and network function virtualization (NFV) paradigms enable new flexibility and possibilities of the deployment of extreme low-latency services for Internet-of-Things (IoT) applications within the proximity of their users. However, this poses great challenges to find optimal placements of virtualized network functions (VNFs) for data processing requests of IoT applications in a multi-tier cloud network, which consists of many small- or medium-scale servers, clusters, or cloudlets deployed within the proximity of IoT nodes and a few large-scale remote data centers with abundant computing and storage resources. In particular, it is challenging to jointly consider VNF instance placement and routing traffic path planning for user requests, as they are not only delay sensitive but also resource hungry.In this article, we consider admissions of NFV-enabled requests of IoT applications in a multi-tier cloud network, where users request network services by issuing service requests with service chain requirements, and the service chain enforces the data traffic of the request to pass through the VNFs in the chain one by one until it reaches its destination. To this end, we first formulate the throughput maximization problem with the aim to maximize the system throughput. We then propose an integer linear program solution if the problem size is small; otherwise, we devise an efficient heuristic that jointly takes into account VNF placements to both cloudlets and data centers and routing path finding for each request. For a special case of the problem with a set of service chains, we propose an approximation algorithm with a provable approximation ratio. Next, we also devise efficient learning-based heuristics for VNF provisioning for loT applications by incorporating the mobility and energy conservation features of IoT devices. We finally evaluate the performance of the proposed algorithms by simulations. The simulation results show that the performance of the proposed algorithms is promising.
机译:移动边缘计算和网络功能虚拟化(NFV)范例可以实现新的灵活性和部署极端低延迟服务的可能性,以便在其用户附近进行Internet-One的应用程序。然而,这会对虚拟化网络功能(VNFS)的最佳放置来解决多层云网络中的数据处理请求的最佳挑选,这包括许多内部或中型服务器,集群或在内部部署的Cloudlets IOT节点的附近以及具有丰富计算和存储资源的大规模远程数据中心。特别是,共同考虑VNF实例放置和路由对用户请求的路由流量路径规划有挑战性,因为它们不仅延迟敏感,而且还资源饥饿。在本文中,我们考虑在A中录取启用了NFV应用程序的IOT应用程序请求的录取多层云网络,其中用户通过发出服务链要求的服务请求请求网络服务,并且服务链强制执行请求的数据流量,以逐一通过链中的VNF,直到它到达目的地。为此,我们首先制定吞吐量最大化问题,目的是最大化系统吞吐量。然后,我们提出一个整数线性程序解决方案,如果问题大小很小;否则,我们设计了一个有效的启发式,共同考虑到Cloudlets和数据中心的VNF展示和每个请求的路由路径查找。对于一组服务链问题的特殊情况,我们提出了一种具有可提供近似比的近似算法。接下来,我们还通过结合IOT设备的移动性和节能功能,为批次应用程序提供高效的基于学习的Leuistics。我们最终通过模拟评估所提出的算法的性能。仿真结果表明,所提出的算法的性能很有前景。

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