Delay Minimization Using Hybrid RSMA-TDMA for Mobile Edge Computing
Rate-splitting multiple access (RSMA) has recently received attention due to its benefits in both spectral and energy efficiencies. In this paper, we propose a hybrid RSMA-time-division multiple access (TDMA) scheme for a mobile edge computing (MEC) system, where two edge users need to offload their...
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Published in | Electronics (Basel) Vol. 12; no. 11; p. 2550 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
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MDPI AG
05.06.2023
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ISSN | 2079-9292 2079-9292 |
DOI | 10.3390/electronics12112550 |
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Abstract | Rate-splitting multiple access (RSMA) has recently received attention due to its benefits in both spectral and energy efficiencies. In this paper, we propose a hybrid RSMA-time-division multiple access (TDMA) scheme for a mobile edge computing (MEC) system, where two edge users need to offload their task data to a MEC server. In the proposed scheme, the offloading time is divided into two time phases. Specifically, we design a cognitive radio (CR)-inspired RSMA scheme, in which two users, namely the primary user and secondary user, offload their task data to the MEC server in the first time phase, while only a single user can offload task data in the second time phase. With the aim of minimizing the overall offloading delay, we formulate the offloading delay minimization problem subject to the transmit power and total energy constraints. We transform the original fractional programming non-convex problem to a convex one by using the Dinkelbach transform and propose Dinkelbach and Newton iterative algorithms to determine the optimal transmit power allocation. Specifically, we establish the optimization criteria for the three offloading schemes and derive the corresponding closed-form expressions for the optimal power allocation. Compared to the existing offloading schemes, the numerical results show that the proposed hybrid RSMA-TDMA scheme in scenarios where having a limited energy budget is superior in offloading delay compared to other offloading schemes and the sum offloading delay tends to a constant with the increase in the energy budget. |
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AbstractList | Rate-splitting multiple access (RSMA) has recently received attention due to its benefits in both spectral and energy efficiencies. In this paper, we propose a hybrid RSMA-time-division multiple access (TDMA) scheme for a mobile edge computing (MEC) system, where two edge users need to offload their task data to a MEC server. In the proposed scheme, the offloading time is divided into two time phases. Specifically, we design a cognitive radio (CR)-inspired RSMA scheme, in which two users, namely the primary user and secondary user, offload their task data to the MEC server in the first time phase, while only a single user can offload task data in the second time phase. With the aim of minimizing the overall offloading delay, we formulate the offloading delay minimization problem subject to the transmit power and total energy constraints. We transform the original fractional programming non-convex problem to a convex one by using the Dinkelbach transform and propose Dinkelbach and Newton iterative algorithms to determine the optimal transmit power allocation. Specifically, we establish the optimization criteria for the three offloading schemes and derive the corresponding closed-form expressions for the optimal power allocation. Compared to the existing offloading schemes, the numerical results show that the proposed hybrid RSMA-TDMA scheme in scenarios where having a limited energy budget is superior in offloading delay compared to other offloading schemes and the sum offloading delay tends to a constant with the increase in the energy budget. |
Audience | Academic |
Author | Xiao, Fengcheng Mao, Yuming Liu, Hongwu Wu, Hua Chen, Pengxu |
Author_xml | – sequence: 1 givenname: Fengcheng surname: Xiao fullname: Xiao, Fengcheng – sequence: 2 givenname: Pengxu surname: Chen fullname: Chen, Pengxu – sequence: 3 givenname: Hua surname: Wu fullname: Wu, Hua – sequence: 4 givenname: Yuming surname: Mao fullname: Mao, Yuming – sequence: 5 givenname: Hongwu surname: Liu fullname: Liu, Hongwu |
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Snippet | Rate-splitting multiple access (RSMA) has recently received attention due to its benefits in both spectral and energy efficiencies. In this paper, we propose a... |
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SubjectTerms | Algorithms Analysis Cognitive radio Computation offloading Delay Digital multiplexing Edge computing Energy budget Energy consumption Energy efficiency Internet of Things Iterative algorithms Iterative methods Mathematical programming Mobile computing Multichannel communication Multiplexing Optimization Servers Time Division Multiple Access Unmanned aerial vehicles Wireless communications |
Title | Delay Minimization Using Hybrid RSMA-TDMA for Mobile Edge Computing |
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