Wang Yang, Shi Jianghong, Fang Zhiyuan, Chen Lingyu
School of Informatics, Xiamen University, Xiamen 361005, China.
China Mobile Communications Group Shanxi Co., Ltd., Taiyuan 030032, China.
Sensors (Basel). 2023 Dec 3;23(23):9589. doi: 10.3390/s23239589.
The traditional vehicular ad hoc network (VANET), which is evolving into the internet of vehicles (IoV), has drawn great attention for its enormous potential in road safety improvement, traffic management, infotainment service support, and even autonomous driving. IEEE 802.11p, as the vital standard for wireless access in vehicular environments, has been released for more than one decade and its evolution, IEEE 802.11bd, has also been released for a few months. Since the analytical models for the IEEE 802.11p/bd medium access control (MAC) play important roles in terms of performance evaluation and MAC protocol optimization, a lot of analytical models have been proposed. However, the existing analytical models are still not accurate as a result of ignoring some important factors of the MAC itself and real communication scenarios. Motivated by this, a novel analytical model is proposed, based on a novel two-dimensional (2-D) Markov chain model. In contrast to the existing studies, all the important factors are considered in this proposed model, such as the backoff freezing mechanism, retry limit, post-backoff states, differentiated packet arrival probabilities for empty buffer queue, and queue model of packets in the buffer. In addition, the influence of the capture effect under a Nakagami- fading channel has also been considered. Then, the expressions of successful transmission, collided transmission, normalized unsaturated throughput, and average packet delay are all meticulously derived, respectively. At last, the accuracy of the proposed analytical model is verified via the simulation results, which show that it is more accurate than the existing analytical models.
传统的车载自组织网络(VANET)正在演进为车联网(IoV),因其在道路安全改善、交通管理、信息娱乐服务支持乃至自动驾驶方面的巨大潜力而备受关注。作为车载环境中无线接入的关键标准,IEEE 802.11p已发布十余年,其演进版本IEEE 802.11bd也已发布数月。由于IEEE 802.11p/bd媒体接入控制(MAC)的分析模型在性能评估和MAC协议优化方面发挥着重要作用,因此已经提出了许多分析模型。然而,由于忽略了MAC本身和实际通信场景的一些重要因素,现有的分析模型仍然不够准确。受此启发,基于一种新颖的二维(2-D)马尔可夫链模型,提出了一种新颖的分析模型。与现有研究相比,该模型考虑了所有重要因素,如退避冻结机制、重试限制、退避后状态、空缓冲队列的差异化分组到达概率以及缓冲器中分组的队列模型。此外,还考虑了Nakagami衰落信道下捕获效应的影响。然后,分别精心推导了成功传输、冲突传输、归一化非饱和吞吐量和平均分组延迟的表达式。最后,通过仿真结果验证了所提分析模型的准确性,结果表明该模型比现有分析模型更准确。