可见光通信辅助多排安全信息传播

Seyhan Uçar, S. Ergen, Öznur Özkasap
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引用次数: 3

摘要

队列行驶是一种很有前途的车辆编队方式,自动驾驶车辆相互获取信息,并在一定距离内分组。另一方面,多排是一种增强版的排阵,指的是排链,其中排跟随另一个排。多排系统的主要目标之一是支持不同信息类型的数据传播。多排系统通常采用当前占主导地位的射频(RF)技术IEEE 802.11p进行通信。但是,IEEE 802.11p由于拥塞、射频的稀缺性和安全性而存在性能下降的问题,可能会降低安全应用的延迟和交付率。另一方面,可见光通信(VLC)是一种很有前途的补充技术,具有解决IEEE 802.11p问题的潜力。本文提出了一种基于IEEE 802.11p和VLC的混合安全消息传播协议,并对应用级数据流量下的混合安全消息传播方案进行了研究。我们开发了一个仿真平台来实现混合多排。我们证明了在基于IEEE 802.11p的多排中,丢包会导致较低的包投递率。虽然VLC提高了安全信息的传播性能,但混合多排结构仍然存在网络断开的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Visible light communication assisted safety message dissemination in multiplatoon
Platooning is a promising vehicle formation where autonomous vehicles are accessing each others information and grouped within a dose proximity. Multiplatoon, on the other hand, is an enhanced version of platooning that refers to the chain of platoons where platoons follow one another. One of the primary objectives for the multiplatoon system is to support data dissemination for different information types. Multiplatoon systems usually adopt the current dominant radio frequency (RF) technology IEEE 802.11p for communication. However, IEEE 802.11p suffers from problems of performance degradation due to the congestion, the scarcity of RF and security that may degrade the delay and delivery ratio of safety application. Visible Light Communication (VLC), on the other hand, is a promising complementary technology with the potential to address IEEE 802.11p problems. In this paper, we propose an IEEE 802.11p and VLC based hybrid safety dissemination protocol and investigate the hybrid safety message dissemination scheme in the presence of application level data traffic. We develop a simulation platform to realize the hybrid multiplatoon. We demonstrate that the packet loss results in low packet delivery ratio in IEEE 802.11p based multiplatoon. Although VLC increases the safety message dissemination performance, hybrid multiplatoon architecture still suffers from the disconnected network.
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