Study on Multi-Priority and Multi-Path QoS Routing Protocol for Airborne Heterogeneous Networks

被引:0
|
作者
Guo J. [1 ]
Zhang S. [1 ]
Zheng B. [2 ,3 ]
Zhang H. [2 ]
Liu W. [2 ]
机构
[1] School of Computer Science, Northwestern Polytechnical University, Xi'an
[2] Information and Navigation Institute, Air Force Engineering University, Xi'an
[3] School of Electronics and Information, Northwestern Polytechnical University, Xi'an
关键词
Airborne heterogeneous network; Multi-path; Multi-priority services; Multi-queue; QoS; Routing protocol; Simulation;
D O I
10.1051/jnwpu/20193740851
中图分类号
学科分类号
摘要
In order to guarantee the QoS requirements of multiple services in airborne all-domain heterogeneous and flexible networks, we propose a novel multi-priority and multi-path based QoS routing (MP2R) protocol in this paper. In the protocol, in terms of the route effectiveness and reliability, the route cost penalty function is constructed based on the multi-priority M/M/1 queueingqueuing system with the preemptive-resume policy. The minimum value of the function is derived through the optimization theory, and the optimum routing solution is acquired. The simulation results show that the MP2R protocol not only has the capabilities of differentiation services for different kinds of traffic and QoS provision, but also can utilize the network resource rationally, avoid congestion, achieve the load balancing, and meet the requirements of airborne all-domain heterogeneous and flexible networks effectively. © 2019 Journal of Northwestern Polytechnical University.
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页码:851 / 856
页数:5
相关论文
共 15 条
  • [1] Xiong H., Zhou G., Li Q., A Survey on Avionics Bus and Network Interconnections and Their Progress, Acta Aeronautica et Astronautica Sinica, 27, 6, pp. 1135-1144, (2006)
  • [2] Wang G., Gu Q., Wang M., Research on the Architecture Technology for New Generation Integrated Avionics, Acta Aeronautica et Astronautica Sinica, 35, 6, pp. 1473-1486, (2014)
  • [3] Xiao H., Xiong H., Li Q., Et al., The Technique of Fault Injection on Integrated Avionics System through AFDX, Electronics Optics & Control, 24, 10, pp. 75-84, (2017)
  • [4] Sun D., Jia S., Meng Y., Et al., Built-in-Test Design for Integrated Module Avionics Fibre Channel Networks, Aeronautical Computing Technique, 46, 6, pp. 108-112, (2016)
  • [5] Zhang H., Development Trend of the New Generation Integrated Avionics System, Aeronautical Manufacturing Technology, 52, 2, pp. 1-4, (2016)
  • [6] Uthra R.A., Raja S.V.K., QoS Routing in Wireless Sensor Networks-A Survey, ACM Computing Surveys, 45, 1, pp. 108-112, (2012)
  • [7] Felemban E., Lee C.G., Ekici E., MMSPEED: Multipath Multi-Speed Protocol for Qos Guarantee of Reliability and Timeliness in Wireless Sensor Networks, IEEE Trans on Mobile Computing, 5, 6, pp. 738-754, (2006)
  • [8] Kim S., An Ant-Based Multipath Routing Algorithm for QoS Aware Mobile Ad-Hoc Networks, Wireless Personal Communications, 66, 4, pp. 739-749, (2012)
  • [9] Krishna P., Saritha V., Vedha G., Et al., Quality-of-Service-Enabled Ant Colony-Based Multipath Routing for Mobile AD Hoc Networks, IET Communications, 6, 1, pp. 76-83, (2012)
  • [10] Moghdam M.N., Taheri H., Karrari M., Multi-Class Multipath Routing Protocol for Low Power Wireless Networks with Heuristic Optimal Load Distribution, Wireless Personal Communications, 82, 2, pp. 861-881, (2015)