(基于(用户行为)的 LS 预测模型和(VLC/RF)-V2X 网络中的反 LS 逆向领导策略

IF 4.4 2区 计算机科学 Q1 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
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引用次数: 0

摘要

基于可见光通信(VLC)和射频(RF)的混合车对物(V2X)网络是未来车辆通信的最佳选择。本文首先提出了混合 V2X 网络中基于(用户行为)的纵向分离(LS)预测模型和反向引导策略。根据用户行为,LS 可分为主动分离(ASP)和被动分离(PSP)。根据 ASP 和 PSP 的特征,构建了纵向分离预测模型。通过该模型,可以在 ASP 和 PSP 发生之前分别对其进行预测。根据模型的预测结果,提出了排的反向领导策略。通过该策略,可以自适应地改变通信链路,以避免 LS 导致的中断。在这种方案(模型+策略)中,可以及时预测 LS 并提前移交通信链路。最后,通过基于 NGSIM 数据集和 PTV-Vissim 仿真软件的仿真,证明了模型的正确性和方案的有效性。此外,所提出的方案不仅具有中断和移交次数少的比较优势,还能显著降低路径损耗、平均中断时间和移交延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
(User behavior)-based LS prediction model and anti-LS reverse-leadership strategy in the (VLC/RF)-V2X network

The hybrid vehicle to everything (V2X) network based on visible light communication (VLC) and radio frequency (RF) is an excellent choice for future vehicle communication. In this paper, the (user behavior)-based longitudinal-separation (LS) prediction model and the reverse-leadership strategy in the hybrid V2X network are firstly proposed. By user behavior, the LS is divided into active separation (ASP) and passive separation (PSP). By characteristics of ASP and PSP, the longitudinal-separation prediction model is constructed. By this model, ASP and PSP can be predicted respectively before they occur. By the prediction result of the model, a reverse-leadership strategy for the platoon is presented. By this strategy, communication links can be self-adaptively changed to avoid outages caused by LS. In this scheme (model+strategy), LS can be predicted timely and communication links can be handed over in advance. Finally, the validity of the model and the effectiveness of the scheme are demonstrated by simulations based on data from NGSIM data set and PTV-Vissim simulation software. Besides, the proposed scheme not only has its comparative advantages of fewer outages and handovers, but also can decrease the path loss, average outage time and handover delay significantly.

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来源期刊
Computer Networks
Computer Networks 工程技术-电信学
CiteScore
10.80
自引率
3.60%
发文量
434
审稿时长
8.6 months
期刊介绍: Computer Networks is an international, archival journal providing a publication vehicle for complete coverage of all topics of interest to those involved in the computer communications networking area. The audience includes researchers, managers and operators of networks as well as designers and implementors. The Editorial Board will consider any material for publication that is of interest to those groups.
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