Cooperative Hybrid Nonorthogonal Multiple Access-Based Mobile-Edge Computing in Cognitive Radio Networks

In order to efficiently compute the primary data and support the secondary quality-of-service (QoS) requirement, we propose a cooperative hybrid non-orthogonal multiple access (NOMA) scheme for mobile edge computing (MEC) assisted cognitive radio networks. In the proposed scheme, the primary computa...

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Published inIEEE transactions on cognitive communications and networking Vol. 8; no. 2; pp. 1104 - 1117
Main Authors Wang, Dawei, Zhou, Fuhui, Lin, Wensheng, Ding, Zhiguo, Al-Dhahir, Naofal
Format Journal Article
LanguageEnglish
Published Piscataway IEEE 01.06.2022
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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ISSN2332-7731
2332-7731
DOI10.1109/TCCN.2022.3164928

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Abstract In order to efficiently compute the primary data and support the secondary quality-of-service (QoS) requirement, we propose a cooperative hybrid non-orthogonal multiple access (NOMA) scheme for mobile edge computing (MEC) assisted cognitive radio networks. In the proposed scheme, the primary computation task is securely offloaded to the secondary base station, and the hybrid NOMA technique is adopted to provide secondary spectrum access and secure the primary offloading simultaneously. The weighted energy consumption minimization problem for both the primary and secondary systems is first studied under the constraints of the primary system's secure outage probability and the secondary system's QoS requirements, and a two-stage algorithm is proposed to derive the optimal power, time slot and computation task allocation. To motivate the secondary system's cooperation, we optimally allocate the transmit power, time slot and computation task, such that the average secondary system's rate is maximized under the primary system's security requirement, and we derive closed-form expressions for the optimal resource allocations. Numerical results demonstrate the performance superiority of the proposed scheme compared with the full-offloading scheme in terms of the energy consumption and the average secondary rate.
AbstractList In order to efficiently compute the primary data and support the secondary quality-of-service (QoS) requirement, we propose a cooperative hybrid non-orthogonal multiple access (NOMA) scheme for mobile edge computing (MEC) assisted cognitive radio networks. In the proposed scheme, the primary computation task is securely offloaded to the secondary base station, and the hybrid NOMA technique is adopted to provide secondary spectrum access and secure the primary offloading simultaneously. The weighted energy consumption minimization problem for both the primary and secondary systems is first studied under the constraints of the primary system’s secure outage probability and the secondary system’s QoS requirements, and a two-stage algorithm is proposed to derive the optimal power, time slot and computation task allocation. To motivate the secondary system’s cooperation, we optimally allocate the transmit power, time slot and computation task, such that the average secondary system’s rate is maximized under the primary system’s security requirement, and we derive closed-form expressions for the optimal resource allocations. Numerical results demonstrate the performance superiority of the proposed scheme compared with the full-offloading scheme in terms of the energy consumption and the average secondary rate.
Author Wang, Dawei
Lin, Wensheng
Zhou, Fuhui
Ding, Zhiguo
Al-Dhahir, Naofal
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Snippet In order to efficiently compute the primary data and support the secondary quality-of-service (QoS) requirement, we propose a cooperative hybrid non-orthogonal...
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SubjectTerms Algorithms
Cognitive radio
Communication system security
Computation offloading
Computing time
Edge computing
Energy consumption
Hybrid non-orthogonal multiple access
Mobile computing
NOMA
Nonorthogonal multiple access
Optimization
primary secure offloading
Quality of service
Radio networks
Reliability
Resource allocation
secondary transmission rate
Task analysis
Title Cooperative Hybrid Nonorthogonal Multiple Access-Based Mobile-Edge Computing in Cognitive Radio Networks
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