[1] 牛世峰.公路弯道路段交通安全特性研究[D].长春:吉林大学,2008.
NIU Shifeng. Research on Traffic Safety Characteristics of Curved Section of Highway[D]. Changchun: Jilin University, 2008.
[2] NAVAS F, MILANS V. Mixing V2V- and non-V2V-equipped vehicles in car following[J]. Transportation Research Part C: Emerging Techno-logies, 2019, 108:167-181.
[3] JAHANGIRI A, BERARDI V J, MACHIANI S G. Application of real field connected vehicle data for aggressive driving identification on horizontal curves[J]. IEEE Transactions on Intelligent Transportation Systems, 2017, 19(7):2316-2324.
[4] HALLMARK S L. Relationship between speed and lateral position on curves[J]. Accident Reconstruction Journal, 2014, 24(6):12-15.
[5] CHARLTON S G, DE PONT J J. Curve Speed Management[M]. Wellington: Land Transport New Zealand, 2007.
[6] 秦晓辉,谢伯元.协同式自适应巡航技术发展现状及趋势[J]. 现代电信科技,2014(3):1-7.
QIN Xiaohui, XIE Boyuan. Development status and trend of cooperative adaptive cruise technology [J]. Modern Science & Technology of Teleco-mmunications, 2014(3):1-7.
[7] ZHAO Hongzhuan, SUN Dihua,YUE Hang, et al. Dynamic trust model for vehicular cyber-physical systems[J]. International Journal of Network Security, 2018, 20(1):157-167.
[8] FU Y C, LI C L, LUAN T H, et al. Infrastructure-cooperative algorithm for effective intersection collision avoidance[J]. Transportation Research Part C: Emerging Technologies, 2018, 89:188-204.
[9] ZHU Meixin, WANG Xuesong, HU Jingyun. Impact on car following behavior of a forward collision warning system with headway monitoring[J]. Transportation Research Part C: Emerging Technologies, 2020, 111:226-244.
[10] CHEN Z, PARK B B. Preceding vehicle identification for cooperative adaptive cruise control platoon forming[J]. IEEE Transactions on Intelligent Transportation Systems, 2020, 21(1):308-320.
[11] HUANG C M, LIN S Y. Cooperative vehicle collision warning system using the vector-based approach with dedicated short range communi-cation data transmission[J]. IET Intelligent Transport Systems, 2014, 8(2):124-134.
[12] ZHANG Ruifeng, CAO Libo, BAO Shan, et al. A method for connected vehicle trajectory prediction and collision warning algorithm based on V2V communication[J]. International Journal of Crashworthiness, 2017, 22(1):15-25.
[13] 覃频频,裴世康,吴达,等.协同自适应巡航控制车队仿真[J].计算机工程与应用,2020,56(4):230-240.
QIN Pinpin, PEI Shikang, WU Da, et al. Simulation of cooperative adaptive cruise control platoon.[J] Computer Engineering and Appli-cations, 2020, 56(4):230-240.
[14] KALMAN R E. A new approach to linear filtering and prediction problems[J]. Journal of Basic Engineering, 1960, 82:35-45.
[15] ALJAMAL M A, ABDELGHAFFAR H M , RAKHA H A. Real-time estimation of vehicle counts on signalized intersection approaches using probe vehicle data[J]. IEEE Transactions on Intelligent Transportation Systems, 2021, 22(5):2719-2729.
[16] 任珈民,宫宁生,韩镇阳.基于YOLOv3与卡尔曼滤波的多目标跟踪算法[J].计算机应用与软件,2020,37(5):169-176.
REN Jiamin, GONG Ningsheng, HAN Zhenyang. Multi-target tracking algorithm based on YOLOv3 and Kalman filter[J]. Computer Application and Software, 2020, 37(5):169-176.
[17] ROGER S, MARTN-SACRISTN D, GARCIA-ROGER D, et al. Low-latency layer-2-based multicast scheme for localized V2X communications[J]. IEEE Transactions on Intelligent Transportation Systems, 2018, 20(8):2962-2975.
[18] 申志昂.基于弯道工况的多目标优化自适应巡航控制研究[D].重庆:重庆理工大学,2020.
SHEN Zhiang. Research on Multi-objective Optimization Adaptive Cruise Control Based on Curved Road[D]. Chongqing: Chongqing University of Technology, 2020. |