Real-Time Detection of DoS Attacks in IEEE 802.11p Using Fog Computing for a Secure Intelligent Vehicular Network

被引:10
|
作者
Erskine, Samuel Kofi [1 ]
Elleithy, Khaled M. [1 ]
机构
[1] Univ Bridgeport, Comp Sci & Engn Dept, Bridgeport, CT 06604 USA
关键词
Cuckoo; CSA (ABC); Firefly; Genetic Algorithm (GA); Vehicular Cloud and Fog Computing (VFC); DoS attacks; IEEE; 802; 11P; VANET; ITS; AD-HOC NETWORKS; MISBEHAVIOR DETECTION; WIRELESS NETWORKS; SERVICE ATTACKS; EFFICIENT; PROTOCOL;
D O I
10.3390/electronics8070776
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
The vehicular ad hoc network (VANET) is a method through which Intelligent Transportation Systems (ITS) have become important for the benefit of daily life. Real-time detection of all forms of attacks, including hybrid DoS attacks in IEEE 802.11p, has become an urgent issue for VANET. This is due to sporadic real-time exchange of safety and road emergency message delivery in VANET. Sporadic communication in VANET has the tendency to generate an enormous amount of messages. This leads to overutilization of the road side unit (RSU) or the central processing unit (CPU) for computation. Therefore, efficient storage and intelligent VANET infrastructure architecture (VIA), which includes trustworthiness, are required. Vehicular Cloud and Fog Computing (VFC) play an important role in efficient storage, computation, and communication needs for VANET. This research utilizes VFC integration with hybrid optimization algorithms (OAs), which also possess swarm intelligence, including Cuckoo/CSA Artificial Bee Colony (ABC) and Firefly/Genetic Algorithm (GA), to provide real-time detection of DoS attacks in IEEE 802.11p, using VFC for a secure intelligent vehicular network. Vehicles move ar a certain speed and the data is transmitted at 30 Mbps. Firefly Feed forward back propagation neural network (FFBPNN) is used as a classifier to distinguish between the attacked vehicles and the genuine vehicles. The proposed scheme is compared with Cuckoo/CSA ABC and Firefly GA by considering jitter, throughput, and prediction accuracy.
引用
收藏
页数:36
相关论文
共 50 条
  • [1] Real-Time Detection of Denial-of-Service Attacks in IEEE 802.11p Vehicular Networks
    Lyamin, Nikita
    Vinel, Alexey
    Jonsson, Magnus
    Loo, Jonathan
    [J]. IEEE COMMUNICATIONS LETTERS, 2014, 18 (01) : 110 - 113
  • [2] Secure Intelligent Vehicular Network Using Fog Computing
    Erskine, Samuel Kofi
    Elleithy, Khaled M.
    [J]. ELECTRONICS, 2019, 8 (04)
  • [3] FPGA-Based Vehicular Channel Emulator for Real-Time Performance Evaluation of IEEE 802.11p Transceivers
    T. M. Fernández-Caramés
    M. González-López
    L. Castedo
    [J]. EURASIP Journal on Wireless Communications and Networking, 2010
  • [4] FPGA-Based Vehicular Channel Emulator for Real-Time Performance Evaluation of IEEE 802.11p Transceivers
    Fernandez-Carames, T. M.
    Gonzalez-Lopez, M.
    Castedo, L.
    [J]. EURASIP JOURNAL ON WIRELESS COMMUNICATIONS AND NETWORKING, 2010,
  • [5] Doppler Shift Signature for BPSK in a Vehicular Network: IEEE 802.11p
    Feukeu, E. A.
    Ngwira, S. M.
    Zuva, T.
    [J]. 2015 IEEE INTERNATIONAL CONFERENCE ON MECHATRONICS AND AUTOMATION, 2015, : 1744 - 1749
  • [6] Real Time Detection of MAC Layer DoS Attacks in IEEE 802.11 Wireless Networks
    Dasari, Mallesham
    [J]. 2017 14TH IEEE ANNUAL CONSUMER COMMUNICATIONS & NETWORKING CONFERENCE (CCNC), 2017, : 939 - 944
  • [7] An Intelligent Interface Selection Scheme for Vehicular Communication System Using LTE and IEEE 802.11p
    Park, Jinho
    Lee, Won-Hwa
    Lee, Sang-Sun
    [J]. 2016 INTERNATIONAL CONFERENCE ON INFORMATION AND COMMUNICATION TECHNOLOGY CONVERGENCE (ICTC 2016): TOWARDS SMARTER HYPER-CONNECTED WORLD, 2016, : 868 - 870
  • [8] Performance of Real-Time Wireless Communication for Railway Environments with IEEE 802.11p
    Richter, Daniel
    Beilharz, Jossekin
    Pirl, Lukas
    Werling, Christian
    Polze, Andreas
    [J]. PROCEEDINGS OF THE 52ND ANNUAL HAWAII INTERNATIONAL CONFERENCE ON SYSTEM SCIENCES, 2019, : 7529 - 7534
  • [9] Vehicular networks using the IEEE 802.11p standard: An experimental analysis
    Teixeira, Fernando A.
    e Silva, Vinicius F.
    Leoni, Jesse L.
    Macedo, Daniel F.
    Nogueira, Jose M. S.
    [J]. VEHICULAR COMMUNICATIONS, 2014, 1 (02) : 91 - 96
  • [10] Performance evaluation of the ADSA in a vehicular network: MAC approach in IEEE 802.11p
    Feukeu, E. A.
    Djouani, K.
    Kurien, A.
    [J]. JOURNAL OF AMBIENT INTELLIGENCE AND HUMANIZED COMPUTING, 2015, 6 (03) : 351 - 360