CCOS: A Coded Computation Offloading Strategy for Satellite-Terrestrial Integrated Networks

被引:5
|
作者
Pang, Bo [1 ]
Gu, Shushi [1 ,2 ]
Zhang, Qinyu [1 ,2 ]
Zhang, Ning [3 ]
Xiang, Wei [2 ,4 ]
机构
[1] Harbin Inst Technol Shenzhen, Shenzhen 518055, Peoples R China
[2] Peng Cheng Lab, Shenzhen 518052, Peoples R China
[3] Univ Windsor, Windsor, ON N9B 3P4, Canada
[4] La Trobe Univ, Melbourne, Vic 3086, Australia
关键词
satellite-terrestrial integrated network; distributed computation offloading; coded computation; delay-energy cost optimization; SERVICES;
D O I
10.1109/IWCMC51323.2021.9498862
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
Ultra-dense computation services are widely distributed in various application scenarios with the rapid development of artificial intelligence and machine learning. Relying on the existing ground cellular networks, it is challenging to satisfy the 6G vision of full coverage and massive machine connectivity. Satellite-terrestrial integrated network (STIN) has abundant computation resources and seamless coverage ability, which can be served as an effective supplementary for the task allocating in cellular networks. Nevertheless, STIN has the characteristic of architecture complexity, unavoidable stragglers and high economic costs. The rational computation resource allocation among distributed on-orbit satellites becomes an urge problem, synthesizing these drawbacks in STINs. In this paper, to address these issues, we attempt to design a coded computation offloading strategy (CCOS) to migrate ground ultra-dense computing tasks to distributed satellite constellations in space. Considering the effect of unpredictable computation resource occupation on satellites, we investigate two coded computation methods, i.e., maximum distance separable (MDS) code and rateless code, to resist the random stragglers occurring on satellite nodes. Then, we formulate the optimization problem about minimizing the delay-energy tradeoff cost with different CCOSs under the tolerant time constraints, and obtain the optimal task offloading decisions (i.e., executing locations and coding parameters) using a proposed low-cost offloading decision searching algorithm (LODSA). Numerical simulation results show that, our coded computation strategies can significantly eliminate the effect of stragglers, and improve the cost performance obviously compared with the un-coded strategies in typical application cases.
引用
收藏
页码:242 / 247
页数:6
相关论文
共 50 条
  • [31] Computation Offloading for Integrated Satellite-Terrestrial Internet of Vehicles in 6G Edge Network: A Cooperative Stackelberg Game
    Chai, Zheng-Yi
    Kang, Hong-Shen
    Li, Ya-Lun
    Zhao, Ying-Jie
    Huang, Hao
    IEEE TRANSACTIONS ON INTELLIGENT TRANSPORTATION SYSTEMS, 2024, 25 (08) : 10389 - 10404
  • [32] Joint Satellite Gateway Placement and Routing for Integrated Satellite-Terrestrial Networks
    Torkzabn, Nariman
    Gholami, Anoushch
    Baras, John S.
    Papagianni, Chrysa
    ICC 2020 - 2020 IEEE INTERNATIONAL CONFERENCE ON COMMUNICATIONS (ICC), 2020,
  • [33] Joint User Association and Satellite Selection for Satellite-Terrestrial Integrated networks
    Qiu Wenjing
    Liu Aijun
    Han Chen
    CHINA COMMUNICATIONS, 2024, 21 (10) : 240 - 255
  • [34] Joint User Association and Satellite Selection for Satellite-Terrestrial Integrated networks
    Qiu Wenjing
    Liu Aijun
    Han Chen
    China Communications, 2024, 21 (10) : 240 - 255
  • [35] Computation Offloading for Integrated Satellite-Terrestrial Internet of Vehicles in 6G Edge Network: A Cooperative Stackelberg Game
    Chai, Zheng-Yi
    Kang, Hong-Shen
    Li, Ya-Lun
    Zhao, Ying-Jie
    Huang, Hao
    IEEE TRANSACTIONS ON INTELLIGENT TRANSPORTATION SYSTEMS, 2024, 25 (08) : 10389 - 10404
  • [36] QoS-Aware Multihop Task Offloading in Satellite-Terrestrial Edge Networks
    Zhao, Liang
    Liu, Yuhang
    Hawbani, Ammar
    Lin, Na
    Zhao, Wei
    Yu, Keping
    IEEE INTERNET OF THINGS JOURNAL, 2024, 11 (19): : 31453 - 31466
  • [37] Performance Analysis of Task Offloading in Double-Edge Satellite-Terrestrial Networks
    Wang, Peng
    Zhang, Xing
    Zhang, Jiaxin
    Wang, Zhi
    COMMUNICATIONS AND NETWORKING, CHINACOM 2018, 2019, 262 : 531 - 540
  • [38] A Dynamic Service Reconfiguration Method for Satellite-Terrestrial Integrated Networks
    Qiao, Wenxin
    Lu, Hao
    Lu, Yu
    Meng, Lijie
    Liu, Yicen
    FUTURE INTERNET, 2021, 13 (10)
  • [39] Proactive Eavesdropping Performance for Integrated Satellite-Terrestrial Relay Networks
    Wu, Zheping
    Guo, Kefeng
    Li, Xingwang
    Zhang, Yu-Dong
    Zhu, Mingfu
    Song, Houbing
    Wu, Min
    IEEE OPEN JOURNAL OF THE COMMUNICATIONS SOCIETY, 2023, 4 : 2985 - 2999
  • [40] Distributed User Association With Grouping in Satellite-Terrestrial Integrated Networks
    Dai, Cui-Qin
    Li, Shipeng
    Wu, Jinsong
    Chen, Qianbin
    IEEE INTERNET OF THINGS JOURNAL, 2022, 9 (12) : 10244 - 10256