arrow
Return

A Network Function Parallelism-Enabled MEC Framework for Supporting Low-Latency Services

delete2021-01-01
delete9
delete
OA
AI
刘梦洁 cover
刘梦洁 (Mengjie Liu) *
G
Gang Feng
Y
Yao Sun
N
Nan Chen
W
Wei Tan
DOI:10.1109/TSC.2021.3130247delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Mobile edge computing (MEC) enables users to offload computing tasks to edge servers for provisioning low-latency and computation-intensive services. To manage heterogeneous resources and improve service flexibility, MEC is entailed by new technologies, i.e., software defined networking (SDN) and network function virtualization (NFV), which allow services running on common commodity hardware instead of proprietary hardware. However, data processing via software on commodity servers may induce high latency due to limited processing capacity, which impedes the quality of service. Meanwhile, MEC is a resource-sharing system and thus fairness should be considered. In this paper, we propose a network function parallelism (NFP)-enabled MEC (NFPMec) framework for supporting low-latency services. To reap the potential benefits of the NFPMec, we formulate the fairness-aware throughput maximization problem (FTMP) with aim of maximizing the fairness-aware system throughput while satisfying the QoS requirements. We propose a relaxation-based generalized benders algorithm (RGBA) to decouple the FTMP into two sub-problems based on the non-linear convex duality theory. After relaxation, the sub-problems are solved by the Karush-Kuhn-Tucker (KKT) approach. The convergence of the RGBA is theoretically proved. The simulation results demonstrate that the proposed NFPMec outperforms SDN-enabled MEC networks in terms of resource utilization, service latency and system throughput.
Keywords:
Noise measurement
Throughput
Servers
Low latency communication
Software
Resource management
Quality of service
Network slicing
low-latency
MEC
network function parallelism
NFP-enabled MEC framework

Journal

IEEE Transactions on Services Computing cover
IEEE Transactions on Services Computing
IF:
5.8
Papers:
2.2K
Citations:
6.5K

Organization

H
huawei technologies
Scholars:
3.3K
Papers: 2.9K
Citations: 1
T
Tennessee Technological University
Scholars:
1.0K
Papers: 911
Citations: 608
U
university of glasgow
Scholars:
3.5W
Papers: 3.1W
Citations: 37
researcher View more organizations
Cited Papers

Cited Papers

Dynamic Network Slicing and Resource Allocation in Mobile Edge Computing Systems
err2020-07-01
err76
PREAI
errFeng, Jie; Pei, Qingqi; Yu, F. Richard; Chu, Xiaoli; Du, Jianbo; Zhu, Li
errShare
errSave
A free-floating bike repositioning problem with faulty bikes
err2019-01-01
err0
errOAAI
errMuhammad Usama; Yongjun Shen; Onaira Zahoor
errShare
errSave
Are local plants the best for ecosystem restoration? It depends on how you analyze the data
err2017-11-06
err0
errOAAI
errAnna Bucharova; Walter Durka; Norbert Hölzel; Johannes Kollmann; Stefan Michalski; Oliver Bossdorf
errShare
errSave
Protocol Function Block Mapping of Software Defined Protocol for 5G Mobile Networks
err2018-07-01
err16
errOAAI
errWen, Ruihan; Feng, Gang; Tan, Wei; Ni, Rui; Qin, Shuang; Wang, Gang
errShare
errSave
errShare
errSave
Effects of influenza vaccination in HIV-infected adults: a double-blind, placebo-controlled trial
err1998-05-01
err0
errOAAI
errSybil A Tasker; William A O'Brien; John J Treanor; Peter J Weiss; Patrick E Olson; Andrew H Kaplan; Mark R Wallace
errShare
errSave
researcher View more