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Relay-Assisted Edge Computing Framework for Dynamic Resource Allocation and Multiple-Access Task Processing in Digital Divide Regions

delete2024-11-01
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PRE
AI
Z
Zhenyang Shu
X
Xiaoheng Deng *
L
Leilei Wang
J
Jinsong Gui
S
Shaohua Wan
H
Honggang Zhang
G
Geyong Min
DOI:10.1109/JIOT.2024.3439332delete
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Abstract

Abstract

En 中文
In the digital divide regions, the edge computing can improve the performance of application services for the Internet of Things (IoT) devices. However, the lagging of information and communication technology (ICT) results in congested access spectrum and imbalanced computational load. Moreover, the mobility of IoT devices further exacerbates the fluctuating quality of communication links and the frequent changing of access positions. So, how to realize the reliable service requirements of devices in a heterogeneous environment with multiscale constraints should be considered appropriately and comprehensively. In this article, we model a relay-assisted multiaccess edge computing (MEC) framework, employing multihop transmission to enable the cross-domain service coverage. Under this framework, we formulate a quantitative model to characterize communication and computation processes within task migration, and derive analytical results for service latency. To improve the access resource efficiency, we adopt a joint nonorthogonal multiple access (NOMA) scheme to extend the transmission dimension, and employ proportional fairness to dynamically allocate resources. Besides, we propose a multiagent deep reinforcement learning (DRL) for optimizing the long-term task offloading scheduling, address the optimization problem of maximizing the system throughput efficiency. And we improve the action exploration and output dimensions of DRL to achieve convergence and performance enhancement. Simulation and analytical results show that our proposed algorithm outperforms the comparison algorithms in the key performance indicators.
Keywords:
digital divide regions
multiaccess edge computing (MEC)
Deep reinforcement learning (DRL)
digital divide regions
relay
relay
nonorthogo- nal multiple access (NOMA)
relay

Journal

IEEE Internet of Things Journal cover
IEEE Internet of Things Journal
IF:
8.9
Papers:
1.4W
Citations:
7.8W

Organization

U
university of massachusetts system
Scholars:
3.8W
Papers: 3.5W
Citations: 42
C
Central South University
Scholars:
10.0W
Papers: 7.2W
Citations: 10.9W
S
shenzhen institute for advanced study, uestc
Scholars:
419
Papers: 371
Citations: 1
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