Software-defined networking in vehicular networks: A survey

被引:28
|
作者
Mekki, Tesnim [1 ]
Jabri, Issam [2 ]
Rachedi, Abderrezak [3 ]
Chaari, Lamia [4 ]
机构
[1] Natl Sch Engineers Sfax, REDCAD Lab, Sfax, Tunisia
[2] Al Yamamah Univ, Coll Engn & Architecture, Riyadh, Saudi Arabia
[3] Univ Paris Est Marne La Vallee, LIGM, UMR8049, Mame La Vallee, France
[4] Sfax Univ, LT2S Lab Digital Res Ctr Sfax CNRS, Sfax, Tunisia
关键词
Classification; Software‐ defined networking; Vehicular ad hoc networks; Vehicular cloud; Vehicular fog; COMPREHENSIVE SURVEY; RESOURCE-MANAGEMENT; ROUTING PROTOCOL; SDN; 5G; INTERNET; ARCHITECTURE; CHALLENGES; OPTIMIZATION; SECURITY;
D O I
10.1002/ett.4265
中图分类号
TN [电子技术、通信技术];
学科分类号
0809 ;
摘要
Software-defined networking (SDN) is a new paradigm that consists in decoupling the control plane from the data plane, which offers the flexibility of configuring and managing networks. Recently, an extension of SDN to vehicular ad hoc networks (VANETs), named software-defined vehicular networks (SDVN), has been emerged to expand the capabilities of VANET in terms of the provided services and to overcome the VANET issues. Also, SDN has gained a lot of interest to be involved in the extensions of VANET, which are vehicular cloud and vehicular fog. In this paper, we overview the use of SDN in VANET. We survey its deployment in the classic vehicular networks, 5G-VANET, vehicular cloud, and vehicular fog. Thereafter, we discuss some case studies of SDN in the vehicular context. Then, we present a taxonomy of the existing architectures followed by the major challenges in the implementation of SDN in the vehicular context. Next, we review the tools used to simulate SDN-based VANET scenarios. Finally, we give some future research directions.
引用
收藏
页数:29
相关论文
共 50 条
  • [21] A survey on network forwarding in Software-Defined Networking
    Yang, Liang
    Ng, Bryan
    Seah, Winston K. G.
    Groves, Lindsay
    Singh, Deepak
    [J]. JOURNAL OF NETWORK AND COMPUTER APPLICATIONS, 2021, 176
  • [22] Resilience support in software-defined networking: A survey
    da Silva, Anderson Santos
    Smith, Paul
    Mauthe, Andreas
    Schaeffer-Filho, Alberto
    [J]. COMPUTER NETWORKS, 2015, 92 : 189 - 207
  • [23] Software-Defined Networking for Internet of Things: A Survey
    Bera, Samaresh
    Misra, Sudip
    Vasilakos, Athanasios V.
    [J]. IEEE INTERNET OF THINGS JOURNAL, 2017, 4 (06): : 1994 - 2008
  • [24] An Architecture for Hierarchical Software-Defined Vehicular Networks
    Correia, Sergio
    Boukerche, Azzedine
    Meneguette, Rodolfo I.
    [J]. IEEE COMMUNICATIONS MAGAZINE, 2017, 55 (07) : 80 - 86
  • [25] Review on Software-Defined Vehicular Networks (SDVN)
    Mohammed, Badiea Abdulkarem
    [J]. INTERNATIONAL JOURNAL OF COMPUTER SCIENCE AND NETWORK SECURITY, 2022, 22 (09): : 376 - 388
  • [26] A mobile edge computing/software-defined networking-enabled architecture for vehicular networks
    Muthanna, Ammar
    Shamilova, Regina
    Ateya, Abdelhamied A.
    Paramonov, Alexander
    Hammoudeh, Mohammad
    [J]. INTERNET TECHNOLOGY LETTERS, 2020, 3 (06)
  • [27] Software-defined vehicular networks: Opportunities and challenges
    Zhu, M.
    Cai, Z. P.
    Xu, M.
    Cao, J. N.
    [J]. ENERGY SCIENCE AND APPLIED TECHNOLOGY, 2016, : 247 - 251
  • [28] Software-Defined Networking
    Kirkpatrick, Keith
    [J]. COMMUNICATIONS OF THE ACM, 2013, 56 (09) : 16 - 19
  • [29] Software-Defined Networking
    Zhili Sun
    Jiandong Li
    Kun Yang
    [J]. ZTE Communications, 2014, 12 (02) : 1 - 2
  • [30] A survey on routing and load-balancing mechanisms in software-defined vehicular networks
    Malakar, Madhuri
    Mahapatro, Judhistir
    Ghosh, Timam
    [J]. WIRELESS NETWORKS, 2024, 30 (05) : 3181 - 3197