Performance Analysis of IEEE 802.11p Protocol in IoV under Error-Prone Channel Conditions

被引:3
|
作者
Li S. [1 ,2 ]
Li H. [1 ]
Gaber J. [3 ]
Yang S. [2 ]
Yang Q. [2 ]
机构
[1] School of Sciences, Lanzhou University of Technology, Lanzhou
[2] School of Electrical and Information Engineering, Lanzhou University of Technology, Lanzhou
[3] Department of Computer Science and Computer Engineering, Universite de Technologie Belfort-Montbeliard, Belfort
关键词
All Open Access; Gold;
D O I
10.1155/2023/5476836
中图分类号
学科分类号
摘要
The complexity of the channel condition in the Internet of vehicles (IoV) may increase the bit error rate (BER) of the intelligent vehicle terminals, resulting in data transmission failures or errors. Therefore, it is necessary to improve the performance of communication protocols under error-prone channel conditions. This article investigates the influence of the access categories’ (ACs) performance with channel errors by using four A C s to cause service differentiation based on the enhanced distributed channel access (EDCA) mechanism of the IEEE 802.11p. To address the error-prone characteristics of the channel and unsaturated traffic conditions, a three-dimensional Markov model is developed first, followed by an analysis of the characteristics and mutual transition probabilities of the seven classes of states in the model, and then, the steady-state equations of the system are developed to derive the steady-state distribution to study system performance. The model considers the backoff phase, the freezing of the backoff counter, the retransmission limit, the probability of collisions occurring, the size of the maximum and minimum contention window, and the number of interframe intervals. These parameters are chosen to meet the requirements for the protocol to operate, while also preventing overestimation of throughput and avoiding having packets being served all the time. We derive expressions for the throughput and delay of A C s under the conditions of error channels and unsaturated traffic. The impact of channel errors on the throughput and delay of A C s is evaluated by numerical simulation. Numerical results show that too many stations in the system will increase the average access delay and decrease throughput. The increase in BER will seriously decrease the performance of high-priority A C s . The throughput of the A C s is also modeled to vary with frame length and BER, and the variation curves of the optimal frame lengths for A C 3 and A C 2 were obtained. Copyright © 2023 Suoping Li et al.
引用
收藏
相关论文
共 50 条
  • [21] Performance Characterization for IEEE 802.11p Network With Single Channel Devices
    Misic, Jelena
    Badawy, Ghada
    Misic, Vojislav B.
    IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2011, 60 (04) : 1775 - 1787
  • [22] Modeling and Performance Analysis of the IEEE 802.11p MAC for VANETs
    Shah, A. F. M. Shahen
    Ilhan, Haci
    Tureli, Ufuk
    2019 42ND INTERNATIONAL CONFERENCE ON TELECOMMUNICATIONS AND SIGNAL PROCESSING (TSP), 2019, : 393 - 396
  • [23] Performance analysis of packet dropping probability under error-prone channel in WLAN
    Cheng, Yuan
    Zhang, Yuan
    Gao, Xi-Qi
    Tongxin Xuebao/Journal on Communications, 2007, 28 (05): : 126 - 131
  • [24] Performance Analysis of IEEE 802.11p in the Presence of Hidden Terminals
    Priyanka Rathee
    Rishipal Singh
    Sushil Kumar
    Wireless Personal Communications, 2016, 89 : 61 - 78
  • [25] Performance Analysis of IEEE 802.11p in the Presence of Hidden Terminals
    Rathee, Priyanka
    Singh, Rishipal
    Kumar, Sushil
    WIRELESS PERSONAL COMMUNICATIONS, 2016, 89 (01) : 61 - 78
  • [26] Performance Analysis of the IEEE 802.11p Multichannel MAC Protocol in Vehicular Ad Hoc Networks
    Song, Caixia
    SENSORS, 2017, 17 (12)
  • [27] Performance Analysis of Broadband Access for Vehicles Based on Dedicated Optimized IEEE 802.11p Protocol
    Nai Wei
    Zhang Fangqi
    Yu Yi
    Dong Decun
    2015 27TH CHINESE CONTROL AND DECISION CONFERENCE (CCDC), 2015, : 1895 - 1899
  • [28] Performance Analysis of IEEE 802.11 DCF under Different Channel Conditions
    Zhang, Yongyong
    Li, Suoping
    Shang, Zihan
    Zhang, Qiqi
    PROCEEDINGS OF 2019 IEEE 8TH JOINT INTERNATIONAL INFORMATION TECHNOLOGY AND ARTIFICIAL INTELLIGENCE CONFERENCE (ITAIC 2019), 2019, : 1904 - 1907
  • [29] Channel Estimation Schemes for IEEE 802.11p Standard
    Zhao, Zijun
    Cheng, Xiang
    Wen, Miaowen
    Jiao, Bingli
    Wang, Cheng-Xiang
    IEEE INTELLIGENT TRANSPORTATION SYSTEMS MAGAZINE, 2013, 5 (04) : 38 - 49
  • [30] Performance Evaluation of IEEE 802.11p MAC Protocol in VANETs Safety Applications
    Miao, Lusheng
    Djouani, Karim
    Van Wyk, Barend Jacobus
    Hamam, Yskandar
    2013 IEEE WIRELESS COMMUNICATIONS AND NETWORKING CONFERENCE (WCNC), 2013, : 1663 - 1668