高架桥场景下车联网机会路由的混合链路连接模型

Xing Tang, Yongbiao Tao, W. Liu, Bing-Xin Shi, Jing Wang
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引用次数: 0

摘要

高架桥结构的建立是为了缓解大城市的交通拥堵,特别是在中国的许多大中型城市。在车联网(IoV)网络中,城市高架桥场景中,不同高度、不同层次的两辆车之间建立了层间链路。高架桥的桥面在层间链路的传播路径中起着阻碍作用,可能导致链路质量的下降。然而,当流量稀疏或无法找到层内链路时,层间链路可能会带来更多的通信机会。与传统的三维无线网络相比,高架桥阴影场景场景的层间链路显示出以往研究未解决的独特特性。本文旨在估计唯一链路连通性特征,并弄清楚层间链路是否可以提高机会路由性能。为此,我们首先考虑高架桥独特的结构,建立了精确的混合链路可用性和可靠性模型。其次,我们结合我们的链路模型设计了一个新的度量机会路由。仿真结果表明,利用层间链路可以提高机会路由的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Hybrid Link Connectivity Model for Opportunistic Routing in IoV Networks under Viaduct Scenarios
Viaduct structures have been built to ease traffic congestion in large-sized cities, especially in many large-medium cities in China. In Internet of Vehicles (IoV) networks, inter-level links in urban viaduct scenarios are established between two vehicles on different levels with various heights. The bridge surface of the viaduct acts as an obstacle in the propagation paths of inter-level links and may cause a degradation of the link quality. However, inter-level links may bring more commu-nication opportunities when the traffic is sparse or no intra-level link can be found. Compared with traditional three-dimensional wireless networks, inter-level links for viaduct shadowing sce-narios reveal unique characteristics which are not addressed by previous studies. This paper aims to estimate the unique link connectivity characteristics and figure out whether inter-level links can enhance opportunistic routing performance. To this end, we first build an accurate hybrid link availability and reliability model by considering the unique structure of viaducts. Second, we design a new metric over opportunistic routing combined with our link model. Simulation results show that taking advantage of inter-level links can improve the performance of opportunistic routing.
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