arrow
Return

Mobile Edge Computing-Enabled Heterogeneous Networks

delete2021-02-01
delete51
delete
OA
AI
C
Chanwon Park
J
Jemin Lee *
DOI:10.1109/TWC.2020.3030178delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
The mobile edge computing (MEC) has been introduced for providing computing capabilities at the edge of networks to improve the latency performance of wireless networks. In this paper, we provide the novel framework for MEC-enabled heterogeneous networks (HetNets), composed of the multi-tier networks with access points (APs) (i.e., MEC servers), which have different transmission power and different computing capabilities. In this framework, we also consider multiple-type mobile users with different sizes of computation tasks, and they offload the tasks to a MEC server, and receive the computation resulting data from the server. We derive the successful edge computing probability (SECP), defined as the probability that a user offloads and finishes its computation task at the MEC server within the target latency. We provide a closed-form expression of the approximated SECP for general case, and closed-form expressions of the exact SECP for special cases. This paper then provides the design insights for the optimal configuration of MEC-enabled HetNets by analyzing the effects of network parameters and bias factors, used in MEC server association, on the SECP. Specifically, it shows how the optimal bias factors in terms of SECP can be changed according to the numbers of user types and tiers of MEC servers, and how they are different to the conventional ones that did not consider the computing capabilities and task sizes.
Keywords:
Servers
Task analysis
Downlink
Uplink
Wireless communication
Heterogeneous networks
Edge computing
Mobile edge computing
heterogeneous network
latency
offloading
queueing theory
stochastic geometry
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

IEEE Transactions on Wireless Communications cover
IEEE Transactions on Wireless Communications
IF:
10.7
Papers:
1.3W
Citations:
5.3W

Organization

No organization information available
Cited Papers

Cited Papers

Energy-Efficient Resource Allocation for Mobile-Edge Computation Offloading
err2017-03-01
err1.2K
PREAI
errYou, Changsheng; Huang, Kaibin; Chae, Hyukjin; Kim, Byoung-Hoon
errShare
errSave
Offloading in Mobile Edge Computing: Task Allocation and Computational Frequency Scaling
err2017-01-01
err754
PREAI
errThinh Quang Dinh; Tang, Jianhua; La, Quang Duy; Quek, Tony Q. S.
errShare
errSave
Uplink User Process in Poisson Cellular Network
err2017-09-01
err7
PREAI
errMondal, Washim Uddin; Das, Goutam
errShare
errSave
Energy-Latency Tradeoff for Energy-Aware Offloading in Mobile Edge Computing Networks
err2018-08-01
err451
PREAI
errZhang, Jiao; Hu, Xiping; Ning, Zhaolong; Ngai, Edith C. -H.; Zhou, Li; Wei, Jibo; Cheng, Jun; Hu, Bin
errShare
errSave
Collaborative Mobile Edge Computing in 5G Networks: New Paradigms, Scenarios, and Challenges
err2017-04-01
err504
errOAAI
errTran, Tuyen X.; Hajisami, Abolfazl; Pandey, Parul; Pompili, Dario
errShare
errSave
researcher View more