Virtual Network Embedding With Dynamic Speed Switching Orchestration in Fog/Edge Network

In the future 5G networks, network deployment flexibility and low network latency are two of the most critical requirements and issues. Recently, network virtualization and Fog/Edge computing have been proposed as two potential solutions to enable the desired future network environment. This paper i...

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Main Authors: Yao Chiang, Yu-Hsiang Chao, Chih-Ho Hsu, Chun-Ting Chou, Hung-Yu Wei
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9085392/
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spelling doaj-32d24f41f23046bb9b3c8c23567f04482021-03-30T02:25:05ZengIEEEIEEE Access2169-35362020-01-018847538476810.1109/ACCESS.2020.29919869085392Virtual Network Embedding With Dynamic Speed Switching Orchestration in Fog/Edge NetworkYao Chiang0Yu-Hsiang Chao1Chih-Ho Hsu2Chun-Ting Chou3Hung-Yu Wei4https://orcid.org/0000-0002-3116-306XGraduate Institute of Electrical Engineering, National Taiwan University, Taipei, TaiwanGraduate Institute of Communication Engineering, National Taiwan University, Taipei, TaiwanGraduate Institute of Electrical Engineering, National Taiwan University, Taipei, TaiwanGraduate Institute of Communication Engineering, National Taiwan University, Taipei, TaiwanGraduate Institute of Electrical Engineering, National Taiwan University, Taipei, TaiwanIn the future 5G networks, network deployment flexibility and low network latency are two of the most critical requirements and issues. Recently, network virtualization and Fog/Edge computing have been proposed as two potential solutions to enable the desired future network environment. This paper investigates the Virtual Network Embedding (VNE) problem in a Multi-access Edge Computing (MEC) architecture, according to the standards proposed by European Telecommunications Standards Institute (ETSI). We propose an embedding algorithm, called PSO-CSNR, to optimize end-to-end latency constraints in an MEC network. In addition, we adopt Activity on Vertex (AOV) network as our Virtual Network Request (VNR), which is more realistic to real applications. Moreover, we consider the latest processor technologies for substrate nodes, where the CPUs are deployed with asymmetric core frequencies, and propose the second algorithm, called DSS. The DSS can dynamically orchestrate the processing speed of each virtual function, in order to decrease the processing time of virtual functions on virtual nodes, so that the Infrastructure Providers (InPs) can gain more profit in the same amount of time. We then combine the PSO-CSNR with DSS, and refer to it as VNE-DSSO. The simulation results show that the VNE-DSSO algorithm outperforms the other existing algorithms in terms of revenue, acceptance ratio and embedding cost.https://ieeexplore.ieee.org/document/9085392/Network function virtualizationvirtual network embeddingmulti-access edge computingasymmetric frequency coredynamic speed switching
collection DOAJ
language English
format Article
sources DOAJ
author Yao Chiang
Yu-Hsiang Chao
Chih-Ho Hsu
Chun-Ting Chou
Hung-Yu Wei
spellingShingle Yao Chiang
Yu-Hsiang Chao
Chih-Ho Hsu
Chun-Ting Chou
Hung-Yu Wei
Virtual Network Embedding With Dynamic Speed Switching Orchestration in Fog/Edge Network
IEEE Access
Network function virtualization
virtual network embedding
multi-access edge computing
asymmetric frequency core
dynamic speed switching
author_facet Yao Chiang
Yu-Hsiang Chao
Chih-Ho Hsu
Chun-Ting Chou
Hung-Yu Wei
author_sort Yao Chiang
title Virtual Network Embedding With Dynamic Speed Switching Orchestration in Fog/Edge Network
title_short Virtual Network Embedding With Dynamic Speed Switching Orchestration in Fog/Edge Network
title_full Virtual Network Embedding With Dynamic Speed Switching Orchestration in Fog/Edge Network
title_fullStr Virtual Network Embedding With Dynamic Speed Switching Orchestration in Fog/Edge Network
title_full_unstemmed Virtual Network Embedding With Dynamic Speed Switching Orchestration in Fog/Edge Network
title_sort virtual network embedding with dynamic speed switching orchestration in fog/edge network
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description In the future 5G networks, network deployment flexibility and low network latency are two of the most critical requirements and issues. Recently, network virtualization and Fog/Edge computing have been proposed as two potential solutions to enable the desired future network environment. This paper investigates the Virtual Network Embedding (VNE) problem in a Multi-access Edge Computing (MEC) architecture, according to the standards proposed by European Telecommunications Standards Institute (ETSI). We propose an embedding algorithm, called PSO-CSNR, to optimize end-to-end latency constraints in an MEC network. In addition, we adopt Activity on Vertex (AOV) network as our Virtual Network Request (VNR), which is more realistic to real applications. Moreover, we consider the latest processor technologies for substrate nodes, where the CPUs are deployed with asymmetric core frequencies, and propose the second algorithm, called DSS. The DSS can dynamically orchestrate the processing speed of each virtual function, in order to decrease the processing time of virtual functions on virtual nodes, so that the Infrastructure Providers (InPs) can gain more profit in the same amount of time. We then combine the PSO-CSNR with DSS, and refer to it as VNE-DSSO. The simulation results show that the VNE-DSSO algorithm outperforms the other existing algorithms in terms of revenue, acceptance ratio and embedding cost.
topic Network function virtualization
virtual network embedding
multi-access edge computing
asymmetric frequency core
dynamic speed switching
url https://ieeexplore.ieee.org/document/9085392/
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