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作 者:Jihong Liu Yiqing Zhou Ling Liu
机构地区:[1]State Key Lab of Processors,Institute of Computing Technology,Chinese Academy of Sciences,Beijing,100190,China [2]University of Chinese Academy of Sciences,Beijing,100049,China [3]Beijing Key Laboratory of Mobile Computing and Pervasive Device,Beijing,100190,China [4]Zhongke Nanjing Mobile Communication&Computing Innovation Institute,Nanjing,211100,China
出 处:《Digital Communications and Networks》2025年第1期191-199,共9页数字通信与网络(英文版)
基 金:supported by the National Natural Science Foundation of China under Grant U21A20449;in part by Jiangsu Provincial Key Research and Development Program under Grant BE2021013-2。
摘 要:Wireless communication-enabled Cooperative Adaptive Cruise Control(CACC)is expected to improve the safety and traffic capacity of vehicle platoons.Existing CACC considers a conventional communication delay with fixed Vehicular Communication Network(VCN)topologies.However,when the network is under attack,the communication delay may be much higher,and the stability of the system may not be guaranteed.This paper proposes a novel communication Delay Aware CACC with Dynamic Network Topologies(DADNT).The main idea is that for various communication delays,in order to maximize the traffic capacity while guaranteeing stability and minimizing the following error,the CACC should dynamically adjust the VCN network topology to achieve the minimum inter-vehicle spacing.To this end,a multi-objective optimization problem is formulated,and a 3-step Divide-And-Conquer sub-optimal solution(3DAC)is proposed.Simulation results show that with 3DAC,the proposed DADNT with CACC can reduce the inter-vehicle spacing by 5%,10%,and 14%,respectively,compared with the traditional CACC with fixed one-vehicle,two-vehicle,and three-vehicle look-ahead network topologies,thereby improving the traffic efficiency.
关 键 词:Communication delay Cooperative adaptive Cruise control Network topology String stability
分 类 号:TN929.5[电子电信—通信与信息系统] TP273[电子电信—信息与通信工程]
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