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Fault-Tolerant Aware Task Offloading Based on Reinforcement Learning in Mobile Edge Computing

delete2025-11-24
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PRE
AI
S
Saiqin Long
C
C. V. Guru Rao
刘昊霖 (Haolin Liu)
陈允杰 (Yunjie Chen)
Z
Zhetao Li
J
Jing Shang
Q
Qingyong Deng
DOI:10.1109/TMC.2025.3636100delete
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Abstract

Abstract

En 中文
In recent years, Mobile Edge Computing (MEC) has been widely used for latency-sensitive tasks, but task scheduling in dynamic edge environments still faces two key challenges. First, edge devices are prone to failures, and existing fault-tolerance mechanisms lack task-aware modeling, making it hard to ensure timeliness and reliability under failures. Second, due to limited perception, high communication costs, and complex task structures, current scheduling strategies still struggle with adaptability and stability in dynamic systems. In this paper, we propose a Fault-Tolerant Discrete Soft Actor-Critic scheduling algorithm (FT-DSAC). Initially, we design a Primary-Backup-based Fault-Tolerant (PBFT) scheduling mechanism, which constrains task offloading locations and start times to effectively mitigate the impact of failures on task execution. Furthermore, we incorporate the Centralized Training and Distributed Execution (CTDE) architecture, which enables implicit collaborative scheduling decisions among edge servers to optimize system performance and reduce communication overhead. Finally, We conduct extensive experiments using both simulated data generated by DAGGEN and real-world workflow data. Experimental results show that the proposed algorithm significantly improves task execution success rates by 6% –19% and reduces latency by 9% –27% compared to mainstream benchmarks.
Keywords:
Mobile edge computing
fault-tolerant
task offloading
deep reinforcement learning

Journal

IEEE Transactions on Mobile Computing cover
IEEE Transactions on Mobile Computing
IF:
9.2
Papers:
5.6K
Citations:
1.8W

Organization

C
China Mobile
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939
Papers: 701
Citations: 2
X
xiangtan university
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1.5W
Papers: 9.1K
Citations: 8
G
guangxi normal university
Scholars:
1.7K
Papers: 588
Citations: 0
J
jinan university
Scholars:
4.3W
Papers: 2.6W
Citations: 38
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