Deadline-Constrained RSU-to-Vehicle Task Offloading Scheme for Vehicular Fog Networks

被引:6
作者
Khabbaz, Maurice [1 ]
机构
[1] Amer Univ Beirut, Comp Sci Dept, Beirut 110236, Lebanon
关键词
Task offloading; mobile edge computing; fog; deadline-constrained; modelling; performance analysis; RESOURCE-ALLOCATION;
D O I
10.1109/TVT.2023.3285255
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In Vehicular Fog Computing (VFC), the RSU-toVehicle (R2V) task offloading process is highly affected by undesirable yet sometimes inevitable events (e.g., buffer exhaustion, task HoL blocking and deadline expiry), the occurrence of which will notably alter the RSU's performance in terms of crucial Quality-of-Service (QoS) metrics such as the average system response time, the blocking and deadline expiry probabilities. This article proposes a novel R2V Deadline-Constrained Task Offload (R2V-DCTO) scheduling scheme with the objective of improving the RSU's performance in terms of the above-mentioned metrics; hence, filling an important literature gap. For this purpose, a stochastic modelling framework is established to capture theRSU's functional dynamics and assess its performance as it operates under R2V-DCTO. Extensive simulations are conducted to confirm the model's validity and accuracy and then compare R2V-DCTO's performance to that of the often adopted FIFO scheme. Results indicate that, on average, R2V-DCTOoutperforms FIFO by 33.4% in terms of the probability of deadline mismatch and by 83.3% in terms of mean system response time; those being critical QoS performance metrics.
引用
收藏
页码:14955 / 14961
页数:7
相关论文
共 21 条
[1]   UAVs for traffic monitoring: A sequential game-based computation offloading/sharing approach [J].
Alioua, Ahmed ;
Djeghri, Houssem-eddine ;
Cherif, Mohammed Elyazid Tayeb ;
Senouci, Sidi-Mohammed ;
Sedjelmaci, Hichem .
COMPUTER NETWORKS, 2020, 177
[2]   Modeling and Performance Analysis of Medium Access Control Schemes for Drive-Thru Internet Access Provisioning Systems [J].
Atallah, Ribal F. ;
Khabbaz, Maurice J. ;
Assi, Chadi M. .
IEEE TRANSACTIONS ON INTELLIGENT TRANSPORTATION SYSTEMS, 2015, 16 (06) :3238-3248
[3]  
Bardan R. A. E., 2009, M.Sc.E. Thesis
[4]  
Cao XW, 2018, IEEE INT WORK SIGN P, P111
[5]   Joint Offloading and Trajectory Design for UAV-Enabled Mobile Edge Computing Systems [J].
Hu, Qiyu ;
Cai, Yunlong ;
Yu, Guanding ;
Qin, Zhijin ;
Zhao, Minjian ;
Li, Geoffrey Ye .
IEEE INTERNET OF THINGS JOURNAL, 2019, 6 (02) :1879-1892
[6]   Joint Position and Time Allocation Optimization of UAV Enabled Time Allocation Optimization Networks [J].
Jiang, Miao ;
Li, Yiqing ;
Zhang, Qi ;
Qin, Jiayin .
IEEE TRANSACTIONS ON COMMUNICATIONS, 2019, 67 (05) :3806-3816
[7]   Resource Allocation for Vehicular Fog Computing Using Reinforcement Learning Combined With Heuristic Information [J].
Lee, Seung-seob ;
Lee, SuKyoung .
IEEE INTERNET OF THINGS JOURNAL, 2020, 7 (10) :10450-10464
[8]   Energy-Efficiency Computation Offloading Strategy in UAV Aided V2X Network With Integrated Sensing and Communication [J].
Liu, Qian ;
Liang, Hairong ;
Luo, Rui ;
Liu, Qilie .
IEEE OPEN JOURNAL OF THE COMMUNICATIONS SOCIETY, 2022, 3 :1337-1346
[9]  
Lopez PA, 2018, IEEE INT C INTELL TR, P2575, DOI 10.1109/ITSC.2018.8569938
[10]   ReViewNet: A Fast and Resource Optimized Network for Enabling Safe Autonomous Driving in Hazy Weather Conditions [J].
Mehra, Aryan ;
Mandal, Murari ;
Narang, Pratik ;
Chamola, Vinay .
IEEE TRANSACTIONS ON INTELLIGENT TRANSPORTATION SYSTEMS, 2021, 22 (07) :4256-4266