Collaborative construction and embedding strategy of aviation information network service function chain

被引:0
作者
Song X. [1 ]
Zhao S. [1 ]
Wang X. [1 ]
Hao S. [1 ]
机构
[1] School of Information and Navigation, Air Force Engineering University, Xi'an
[2] Unit 93721 of the PLA, Shuozhou
来源
Xi Tong Gong Cheng Yu Dian Zi Ji Shu/Systems Engineering and Electronics | 2022年 / 44卷 / 11期
关键词
ant colony algorithm; aviation information network; network function virtualization; service function chain; virtual network function;
D O I
10.12305/j.issn.1001-506X.2022.11.32
中图分类号
学科分类号
摘要
Aiming at the problem of efficient deployment of combat missions in aviation information network with sensitive mission delay and limited resource carrying capacity, a collaborative construction and embedding strategy of service function chain based on network function virtualization is proposed. This strategy takes the load rate of platform and link as reference, determines the platform mapped by service function, coordinates the service chain construction scheme with the network resource status, and obtains the best service chain construction scheme. The mapping and construction results are obtained by the improved ant colony algorithm and the breadth-first search algorithm respectively. The results show that the proposed strategy can effectively improve the acceptance rate of the task request, shorten the average waiting time of the task, and ensure the quick response of the task while satisfying more task requirements under the condition of low time complexity. © 2022 Chinese Institute of Electronics. All rights reserved.
引用
收藏
页码:3556 / 3563
页数:7
相关论文
共 27 条
[1]  
YI B, WANG X W, LI K Q, Et al., A comprehensive survey of network function virtualization, Computer Networks, 133, 3, pp. 212-262, (2018)
[2]  
M1AO W, M1N G Y, WU Y L, Et al., Stochastic performance-analysis of network function virtualization in future internet, IEEE Journal on Selected Areas in Communications, 37, 3, pp. 613-626, (2019)
[3]  
ZHAO S H, CHEN K F, LYU N, Et al., Software-defined airborne tactical network for aviation cluster, Journal of Communications, 38, 8, pp. 140-155, (2017)
[4]  
CHEN K F, LYU N, ZHAO S H, Et al., A scheme for improving the communications efficiency between the control plane and data plane of the SDN-enabled airborne tactical network, IEEE Access, 6, pp. 37286-37301, (2018)
[5]  
ZHANG N, YANG P, ZHANG S, Et al., Software defined networking enabled wireless network virtualization: challenges and solutions, IEEE Network, 31, 5, pp. 42-49, (2017)
[6]  
SUN S Q, PENG J H, YOU W, Et al., Collaborative construction and mapping algorithm of service function chain based on resource sensing in 5G network, Journal of Xi' an Jiaotong University, 54, 8, pp. 140-148, (2020)
[7]  
YE Z L, CAO X J, WANG J P, Et al., Joint topology design and mapping of service function chains for efficient, scalable, and reliable network functions virtualization, IEEE Network, 30, 3, pp. 81-87, (2016)
[8]  
REDDY V S, BAUMGARTNER A, BAUSCHERT T., Robust embedding of VNF/service chains with delay bounds, Proc. of the IEEE Conference on Network Function Virtualization and Software Defined Networks, (2017)
[9]  
LI J L, SHI W S, YE Q, Et al., Online joint VNF chain composition and embedding for 5G networks [C], Proc. of the IEEE Global Communications Conference, (2019)
[10]  
BECK M T, BOTERO J F, KAI S., Coordinated allocation of service function chains, Proc. of the IEEE Network Function Virtualization & Software Defined Networks, (2017)