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Parked Vehicles Task Offloading in Edge Computing

delete2022-01-01
delete11
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OA
AI
K
Khoa Nguyen *
S
Steve Drew
C
Changcheng Huang
J
Jiayu Zhou
DOI:10.1109/ACCESS.2022.3167641delete
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Abstract

Abstract

En 中文
The analytical research has recently indicated that the computational resources of Connected Autonomous Vehicles (CAVs) have been wasted since almost all vehicles spend over 95% of their time in parking lots. This paper presents a collaborative computing framework to efficiently offload online computational tasks to parked vehicles (PVs) during peak business hours. To maintain the service continuity, we advocate for integrating Kubernetes-based container orchestration to leverage its advanced features (e.g., auto-healing, load balancing, and security). We analytically formulate the task-offloading problem and then propose an intelligent meta-heuristic algorithm to dynamically deal with online heterogeneous demands. Additionally, we take a cumulative incentives model into account, where the PV owners are able to earn profit by sharing their computation resources. We also compare our algorithm with several existent heuristics on different sizes of the parking lot. Extensive simulation results show that our proposed computing framework significantly increases the possibility of accepting the online tasks and improves average task offloading cost by at least 40%. Besides, we quantify the PV availability by task acceptance ratios, which can be a critical criterion for network planners to achieve desired network service goals.
Keywords:
Task analysis
Cloud computing
Edge computing
Collaboration
Costs
Containers
Computer architecture
Parked vehicles
cloud computing
edge computing
collaborative cloud-edge computing
online task offloading
container orchestration
Kubernetes

Journal

IEEE Access cover
IEEE Access
IF:
3.6
Papers:
9.8W
Citations:
29.4W

Organization

U
University of Calgary
Scholars:
3.8W
Papers: 3.3W
Citations: 52
C
carleton university
Scholars:
7.5K
Papers: 8.3K
Citations: 5
M
michigan state university
Scholars:
3.6W
Papers: 3.2W
Citations: 44
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Cited Papers

Cited Papers

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Parked Vehicular Computing for Energy-Efficient Internet of Vehicles: A Contract Theoretic Approach
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errLi, Chunhai; Wang, Siming; Huang, Xumin; Li, Xiaohuan; Yu, Rong; Zhao, Feng
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Edge Computing and Networking: A Survey on Infrastructures and Applications
err2019-01-01
err63
errOAAI
errZhao, Yongli; Wang, Wei; Li, Yajie; Meixner, Carlos Colman; Tornatore, Massimo; Zhang, Jie
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Time modulation of spike‐and‐wave activity in generalized epilepsy
err2004-10-07
err0
PREAI
errPeter Kellaway; James D. Frost; James W. Crawley
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An efficient task offloading scheme in vehicular edge computing
err2020-06-02
err70
errOAAI
errRaza, Salman; Liu, Wei; Ahmed, Manzoor; Anwar, Muhammad Rizwan; Mirza, Muhammad Ayzed; Sun, Qibo; Wang, Shangguang
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The biosynthetic route from ornithine to proline.
err1979-02-01
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errOAAI
errL.J. Mestichelli; R.N. Gupta; I.D. Spenser
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researcher View more