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首页> 外文期刊>IEEE transactions on mobile computing >NFV-Enabled IoT Service Provisioning in Mobile Edge Clouds
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NFV-Enabled IoT Service Provisioning in Mobile Edge Clouds

机译:在移动边缘云中启用了NFV的IOT服务供应

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Conventional Internet of Things (IoT) applications involve data capture from various sensors in environments, and the captured data then is processed in remote clouds. However, some critical IoT applications (e.g., autonomous vehicles) require a much lower response latency and more secure guarantees than those offered by remote clouds today. Mobile edge clouds (MEC) supported by the network function virtualization (NFV) technique have been envisioned as an ideal platform for supporting such IoT applications. Specifically, MECs enable to handle IoT applications in edge networks to shorten network latency, and NFV enables agile and low-cost network functions to run in low-cost commodity servers as virtual machines (VMs). One fundamental problem for the provisioning of IoT applications in an NFV-enabled MEC is where to place virtualized network functions (VNFs) for IoT applications in the MEC, such that the operational cost of provisioning IoT applications is minimized. In this paper, we first address this fundamental problem, by considering a special case of the IoT application placement problem, where the IoT application and VNFs of each service request are consolidated into a single location (gateway or cloudlet), for which we propose an exact solution and an approximation algorithm with a provable approximation ratio. We then develop a heuristic algorithm that controls the resource violation ratios of edge clouds in the network. For the IoT application placement problem for IoT applications where their VNFs can be placed to multiple locations, we propose an efficient heuristic that jointly places the IoT application and its VNFs. We finally study the performance of the proposed algorithms by simulations and implementations in a real test-bed, Experimental results show that the performance of the proposed algorithms outperform their counterparts by at least 10 percent.
机译:传统的事物(IOT)应用程序涉及从环境中的各种传感器捕获数据,然后在远程云中处理捕获的数据。然而,一些关键的物联网应用程序(例如,自主车辆)需要较低的响应延迟和比今天遥控云所提供的保证更安全的保证。网络功能虚拟化(NFV)技术支持的移动边缘云(MEC)已被设想为支持此类物联网应用的理想平台。具体而言,MECS使处理边缘网络中的IOT应用程序以缩短网络延迟,并且NFV能够以虚拟机(VM)以低成本商品服务器运行的敏捷和低成本网络功能。在启用NFV的MEC中提供IOT应用程序的一个根本问题是在MEC中放置虚拟化网络功能(VNFS)的位置,使得提供IOT应用程序的操作成本是最小化的。在本文中,我们首先通过考虑IOT应用程序放置问题的特殊情况,首先解决这一基本问题,其中每个服务请求的IOT应用程序和VNF被整合到一个位置(网关或Cloudlet),我们提出具有可提供近似比的精确解决方案和近似算法。然后,我们开发了一种启发式算法,可以控制网络中边缘云的资源违规比率。对于IOT应用程序的IOT应用程序放置问题,其中其VNF可以放在多个位置,我们提出了一个有效的启发式,共同介绍了IOT应用程序及其VNF。我们终于通过实际测试床中的模拟和实施来研究所提出的算法的性能,实验结果表明,所提出的算法的性能优于它们的对应物至少10%。

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