Termite inspired algorithm for traffic engineering in hybrid software defined networks

被引:0
|
作者
Ammal R.A. [1 ]
Sajimon P.C. [1 ]
Vinodchandra S.S. [2 ]
机构
[1] Cyber Security Group, Centre for Development of Advanced Computing (CDAC), Thiruvananthapuram, Kerala
[2] Computer Centre, University of Kerala, Thiruvananthapuram, Kerala
来源
PeerJ Computer Science | 2020年 / 6卷
关键词
Hybrid SDN; Multi commodity flow (MCF); Software defined networking (SDN); Termite-inspired; Traffic engineering;
D O I
10.7717/PEERJ-CS.283
中图分类号
学科分类号
摘要
In the era of Internet of Things and 5G networks, handling real time network traffic with the required Quality of Services and optimal utilization of network resources is a challenging task. Traffic Engineering provides mechanisms to guide network traffic to improve utilization of network resources and meet requirements of the network Quality of Service (QoS). Traditional networks use IP based and Multi-Protocol Label Switching (MPLS) based Traffic Engineering mechanisms. Software Defined Networking (SDN) have characteristics useful for solving traffic scheduling and management. Currently the traditional networks are not going to be replaced fully by SDN enabled resources and hence traffic engineering solutions for Hybrid IP/SDN setups have to be explored. In this paper we propose a new Termite Inspired Optimization algorithm for dynamic path allocation and better utilization of network links using hybrid SDN setup. The proposed bioinspired algorithm based on Termite behaviour implemented in the SDN Controller supports elastic bandwidth demands from applications, by avoiding congestion, handling traffic priority and link availability. Testing in both simulated and physical test bed demonstrate the performance of the algorithm with the support of SDN. In cases of link failures, the algorithm in the SDN Controller performs failure recovery gracefully. The algorithm also performs very well in congestion avoidance. The SDN based algorithm can be implemented in the existing traditional WAN as a hybrid setup and is a less complex, better alternative to the traditional MPLS Traffic Engineering setup. © 2020 Ammal et al.
引用
收藏
相关论文
共 50 条
  • [21] Taxonomy of traffic engineering mechanisms in software-defined networks: a survey
    Mohammadi, Ramin
    Akleylek, Sedat
    Ghaffari, Ali
    Shirmarz, Alireza
    TELECOMMUNICATION SYSTEMS, 2022, 81 (03) : 475 - 502
  • [22] Distributed Traffic Engineering for Multi-Domain Software Defined Networks
    Zhao, Laiping
    Hua, Jingyu
    Liu, Yangyang
    Qu, Wenyu
    Zhang, Suohao
    Zhong, Sheng
    2019 39TH IEEE INTERNATIONAL CONFERENCE ON DISTRIBUTED COMPUTING SYSTEMS (ICDCS 2019), 2019, : 492 - 502
  • [23] QoC-Aware Control Traffic Engineering in Software Defined Networks
    Sridharan, Vignesh
    Mohan, Purnima Murali
    Gurusamy, Mohan
    IEEE TRANSACTIONS ON NETWORK AND SERVICE MANAGEMENT, 2020, 17 (01): : 280 - 293
  • [24] Boosting performance for software defined networks from traffic engineering perspective
    Salman, Mohammed I.
    Wang, Bin
    COMPUTER COMMUNICATIONS, 2021, 167 : 55 - 62
  • [25] Clustered robust routing for traffic engineering in software-defined networks
    Sanvito, Davide
    Filippini, Ilario
    Capone, Antonio
    Paris, Stefano
    Leguay, Jeremie
    COMPUTER COMMUNICATIONS, 2019, 144 : 175 - 187
  • [26] Multicast Traffic Engineering with Segment Trees in Software-Defined Networks
    Wang, Chih-Hang
    Chiang, Sheng-Hao
    Shen, Shan-Hsiang
    Yang, De-Nian
    Chen, Wen-Tsuen
    IEEE INFOCOM 2020 - IEEE CONFERENCE ON COMPUTER COMMUNICATIONS, 2020, : 1808 - 1817
  • [27] Taxonomy of traffic engineering mechanisms in software-defined networks: a survey
    Ramin Mohammadi
    Sedat Akleylek
    Ali Ghaffari
    Alireza Shirmarz
    Telecommunication Systems, 2022, 81 : 475 - 502
  • [28] An intelligent multicast traffic engineering method over software defined networks
    Mohammadi, Reza
    Javidan, Reza
    Rikhtegar, Negar
    Keshtgari, Manijeh
    JOURNAL OF HIGH SPEED NETWORKS, 2020, 26 (01) : 77 - 88
  • [29] Multicast tree construction algorithm for dynamic traffic on software defined networks
    Gururaj Bijur
    M. Ramakrishna
    Karunakar A. Kotegar
    Scientific Reports, 11
  • [30] Multicast tree construction algorithm for dynamic traffic on software defined networks
    Bijur, Gururaj
    Ramakrishna, M.
    Kotegar, Karunakar A.
    SCIENTIFIC REPORTS, 2021, 11 (01)