arrow
Return

Efficient UAV-based mobile edge computing using differential evolution and ant colony optimization

delete2022-02-04
delete29
delete
OA
AI
M
Mohamed H. Mousa
M
Mohamed K. Hussein *
DOI:10.7717/peerj-cs.870delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
Internet of Things (IoT) tasks are offloaded to servers located at the edge network for improving the power consumption of IoT devices and the execution times of tasks. However, deploying edge servers could be difficult or even impossible in hostile terrain or emergency areas where the network is down. Therefore, edge servers are mounted on unmanned aerial vehicles (UAVs) to support task offloading in such scenarios. However, the challenge is that the UAV has limited energy, and IoT tasks are delay-sensitive. In this paper, a UAV-based offloading strategy is proposed where first, the IoT devices are dynamically clustered considering the limited energy of UAVs, and task delays, and second, the UAV hovers over each cluster head to process the offloaded tasks. The optimization problem of dynamically determining the optimal number of clusters, specifying the member tasks of each cluster, is modeled as a mixed-integer, nonlinear constraint optimization. A discrete differential evolution (DDE) algorithm with new mutation and crossover operators is proposed for the formulated optimization problem, and compared with the particle swarm optimization (PSO) and genetic algorithm (GA) meta-heuristics. Further, the ant colony optimization (ACO) algorithm is employed to identify the shortest path over the cluster heads for the UAV to traverse. The simulation results validate the effectiveness of the proposed offloading strategy in terms of tasks delays and UAV energy consumption.
Keywords:
Internet of things
Mobile edge computing
Computation offloading
Differential evolution
Ant colony optimization
Particle swarm optimization
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

PeerJ Computer Science cover
PeerJ Computer Science
IF:
2.5
Papers:
3.4K
Citations:
6.9K

Organization

U
University of Jeddah
Scholars:
2.3K
Papers: 2.6K
Citations: 3.6K
E
egyptian knowledge bank (ekb)
Scholars:
11.6W
Papers: 9.3W
Citations: 84
Cited Papers

Cited Papers

errShare
errSave
Identity Model for Blockchain-Based Land Registry System: A Comparison
err2022-02-15
err0
errOAAI
errMohammed Shuaib; Noor Hafizah Hassan; Sahnius Usman; Shadab Alam; Surbhi Bhatia; Deepika Koundal; Arwa Mashat; Assaye Belay
errShare
errSave
Air-Ground Integrated Mobile Edge Networks: Architecture, Challenges, and Opportunities
err2018-08-01
err255
errOAAI
errCheng, Nan; Xu, Wenchao; Shi, Weisen; Zhou, Yi; Lu, Ning; Zhou, Haibo; Shen, Xuemin (Sherman)
errShare
errSave
Evolutionary offloading in an edge environment
err2021-09-01
err19
errOAAI
errZakaryia, Samah A.; Ahmed, Safaa A.; Hussein, Mohamed K.
errShare
errSave
Deep Reinforcement Learning Based Dynamic Trajectory Control for UAV-Assisted Mobile Edge Computing
err2022-10-01
err150
errOAAI
errWang, Liang; Wang, Kezhi; Pan, Cunhua; Xu, Wei; Aslam, Nauman; Nallanathan, Arumugam
errShare
errSave
Joint Offloading and Trajectory Design for UAV-Enabled Mobile Edge Computing Systems
err2019-04-01
err394
PREAI
errHu, Qiyu; Cai, Yunlong; Yu, Guanding; Qin, Zhijin; Zhao, Minjian; Li, Geoffrey Ye
errShare
errSave
Aeronautical Ad Hoc Networking for the Internet-Above-the-Clouds
err2019-05-01
err133
errOAAI
errZhang, Jiankang; Chen, Taihai; Zhong, Shida; Wang, Jingjing; Zhang, Wenbo; Zuo, Xin; Maunder, Robert G.; Hanzo, Lajos
errShare
errSave
An improved differential evolution algorithm and its application in optimization problem
err2021-01-05
err232
PREAI
errDeng, Wu; Shang, Shifan; Cai, Xing; Zhao, Huimin; Song, Yingjie; Xu, Junjie
errShare
errSave
A Survey on Mobile Edge Networks: Convergence of Computing, Caching and Communications
err2017-01-01
err726
errOAAI
errWang, Shuo; Zhang, Xing; Zhang, Yan; Wang, Lin; Yang, Juwo; Wang, Wenbo
errShare
errSave
researcher View more