Delay Minimization for Massive Mimo Based Cooperative Mobile Edge Computing System With Secure Offloading

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Date

2022

Authors

Yılmaz, Simay
Özbek, Berna

Journal Title

Journal ISSN

Volume Title

Publisher

IEEE

Open Access Color

GOLD

Green Open Access

No

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Publicly Funded

No
Impulse
Average
Influence
Average
Popularity
Top 10%

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Abstract

Mobile edge computing (MEC) has been envisioned as a promising technology for enhancing the computational capacities of mobile devices by enabling task offloading. In this paper, we present a novel framework for a cooperative MEC system by employing Massive Multiple-Input Multiple-Output (MIMO) and non-orthogonal multiple access (NOMA) technologies, including security aspects. Specifically, in the proposed cooperative MEC system, there is no strong direct transmission link between the cell-edge user and the MEC server; consequently, the user sends their tasks to the MEC server through the helpers at the cell-centers. In the proposed framework, we minimize the overall delay, including secure offloading under the constraints of computing capability and transmit power. The proposed algorithm minimizes the overall delay in downlink and uplink transmission while satisfying security constraints to solve the formulated problem. The simulation results show that Massive MIMO based NOMA improves the performance of the secure MEC system by employing more than one helper.

Description

Keywords

Delay minimization, Delays, Massive MIMO, Mobile edge computing, Secure offloading, Task analysis, Transportation engineering, TA1001-1280, non-orthogonal multiple access (NOMA), Secure offloading, delay minimization, Transportation and communications, massive multiple input multiple output (MIMO), mobile edge computing (MEC), HE1-9990

Fields of Science

0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology

Citation

WoS Q

Q1

Scopus Q

Q1
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OpenCitations Citation Count
2

Source

IEEE Open Journal of Vehicular Technology

Volume

4

Issue

Start Page

149

End Page

161
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Citations

Scopus : 11

Captures

Mendeley Readers : 6

SCOPUS™ Citations

11

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Web of Science™ Citations

8

checked on Apr 27, 2026

Page Views

484

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Downloads

186

checked on Apr 27, 2026

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