姓 名:
姚志洪
职 务:
职 称:
助理教授
学 历:
博士研究生
学 位:
博士
通信地址:
犀浦X2513-1
邮 编:
611756
办公电话:
电子邮箱:
zhyao@swjtu.edu.cn
教师个人主页链接:
https://zhyao.mysxl.cn/
研究生招生网链接:
https://faculty.swjtu.edu.cn/yaozhihong/
[1] 2018.09—2019.09 威斯康辛大学麦迪逊分析,土木与环境工程学院,交通工程专业,博士(联合培养)。
[2] 2015.09—2019.12 西南交通大学,交通运输与物流学院,交通工程专业,博士。
[3] 2014.09—2015.07 西南交通大学,交通运输与物流学院,交通工程专业,硕士。
[4] 2010.09—2014.07 西南交通大学,交通运输与物流学院,交通工程专业,本科。
[1] 2020.04—2020.07 西南交通大学,交通运输与物流学院,交通工程系,助理教授
[2] 2020.07—至今 西南交通大学,交通运输与物流学院,交通工程系,讲师
[1] 智能网联交通系统建模、仿真、优化与控制
[2] 城市交通信号控制与优化
[3] 交通仿真建模与优化
[4] 交通大数据与机器学习
[1] 交通工程
[2] 交通运输规划与管理
[3] 交通运输工程(交通工程方向)
[1] 国家自然科学基金青年基金项目:非完全智能网联环境下交叉口混合车队队列与信号协同控制优化,2021.01-2023.12,24万元,主持。
[2] 四川省科技计划项目:智能网联环境下混合交通流全样本车辆轨迹重构与交通状态估计方法,2021.04-2023.03,10万元,主持。
[3] 综合交通大数据国工室交大数科创新中心项目:智能交通信号控制优化与可视化平台,2020.08-2021.08,15万元,主持。
[4] 中央高校基本科研业务-理工科科技创新项目:考虑时延的智能网联汽车混合交通流稳定性与基本图研究,2021.04-2023.04,10万元,主持。
[5] 重庆市交通运输工程重点实验室开放课题:基于车联网数据的城市交通信号自适应控制优化理论与方法,2019.01-2020.12,3万元,主持。
[6] 四川省科技计划项目:面向效率与稳定性的自动车编队运行管控方法研究,2020.01-2022.12,50万元,参与。
[7] 四川省科技计划项目:基于异质性共乘意愿的交通管理问题研究,2020.01-2021.12,30万元,参与。
[8] 国家自然科学基金青年基金项目:切换系统可达集计算研究即其在非线性系统形式化验证中的应用,2017.01-2019.12,22万元,参与。
[9] 重庆市应用开发计划重点项目:复杂城市环境下综合交通枢纽内外部交通系统动态仿真研究,2017.01-2018.12,200万元,参与。
[1] 学术素养与研究方法(研究生),学术型研究生。
[2] 道路通行能力理论与应用(研究生),交通工程、交通运输规划与管理、交通运输工程(交通工程方向)。
[3] 大数据与人工智能(本科),交通运输专业。
[4] 交通运输导论(本科),交通运输大类。
[4] 交通运输法规(本科),交通工程专业、交通运输专业。
[1] Y Jiang, S Wang, Z Yao*, et al. A Cellular Automata Model for Mixed Traffic Flow Considering the Driving Behavior of Connected Automated Vehicle Platoons[J]. Physica A-Statistical Mechanics and Its Applications, 2021, 582:126262. (A+)
[2] Z Yao, Y Wang, B Liu*, et al. Fuel Consumption and Transportation Emissions Evaluation of Mixed Traffic Flow with Connected Automated Vehicles and Human-driven Vehicles on Expressway [J]. Energy, 2021, 230: 120766. (A++)
[3] Y Jiang, B Zhao, M Liu, Z Yao*. A Two-Level Model for Traffic Signal Timing and Trajectories Planning of Multiple CAVs in a Random Environment [J]. Journal of Advanced Transportation, 2021, 2021: 9945398. (A+)
[4] Z Yao*, H Jiang, Y Cheng, et al. Integrated Schedule and Trajectory Optimization for Connected Automated Vehicles in a Conflict Zone [J]. IEEE Transactions on Intelligent Transportation Systems, 2020. (In press) (A++)
[5] Z Yao*, Y Jiang, R Hu, et al. Stability and Safety Evaluation of Mixed Traffic Flow with Connected Automated Vehicles on Expressways [J]. Journal of Safety Research, 2020, 75: 262-274. (A+)
[6] Z Yao*, T Xu, Y Jiang, et al. Linear Stability Analysis of Heterogeneous Traffic Flow Considering Degradations of Connected Automated Vehicles and Reaction Time[J]. Physica A-Statistical Mechanics and Its Applications, 2021, 561:125218. (A+,ESI高被引)
[7] Z Yao*, B Zhao, T Yuan*, et al. Reducing Gasoline Consumption in Mixed Connected Automated Vehicles Environment: A Joint Optimization Framework for Traffic Signals and Vehicle Trajectory [J]. Journal of Cleaner Production, 2020, 265: 121836. (A++)
[8] Z Yao, L Shen*, R Liu, et al. A Dynamic Predictive Traffic Signal Control Framework in a Cross-Sectional Vehicle Infrastructure Integration Environment [J]. IEEE Transactions on Intelligent Transportation Systems, 2020, 21(4): 1455-1466. (A++,ESI高被引)
[9] Z Yao, Y Jiang*, B Zhao, et al. A Dynamic Optimization Method for Adaptive Signal Control in a Connected Vehicle Environment [J]. Journal of Intelligent Transportation Systems: Technology, Planning, and Operations, 2020, 24(2): 184-200. (A+)
[10] Z Yao, B Zhao, L Qin, et al. An Efficient Heterogeneous Platoon Dispersion Model for Real-time Traffic Signal Control [J]. Physica A-Statistical Mechanics and Its Applications, 2020, 539: 122982. (A+)
[11] Z Yao, T Xu, Y Cheng, et al. Dynamic Platoon Dispersion Model based on Real-time Link Travel Time [J]. IET Intelligent Transport Systems, 2019, 13(11): 1694-1700. (A+)
[12] Z Yao, R Hu, Y Wang, et al. Stability Analysis and the Fundamental Diagram for Mixed Connected Automated and Human-driven Vehicles [J]. Physica A-Statistical Mechanics and Its Applications, 2019, 533: 121931. (A+)
[13] L Shen, R Liu, Z Yao*, et al. Development of Dynamic Platoon Dispersion Models for Predictive Traffic Signal Control [J]. IEEE Transactions on Intelligent Transportation Systems, 2019, 20(2): 431-440. (A++)
[14] Y Jiang, Z Yao*, X Luo, et al. Heterogeneous Platoon Flow Dispersion Model Based on Truncated Mixed Simplified Phase-type Distribution of Travel Speed [J]. Journal of Advanced Transportation, 2016, 50: 2160-2173. (A+)
[15] Z Yao*, S Wang, M Liu, et al. A Two-level Model for Traffic Signal Timing and Trajectories Planning of Multiple Connected Automated Vehicles in a Random Environment [C]. Transportation Research Board of the National Academies, Washington, 2021. (A)
[16] Z Yao*, M Liu, T Xu, et al. Stability Analysis of Heterogeneous Traffic Flow Considering Degradations of Connected Automated Vehicles and Time Delays [C]. Transportation Research Board of the National Academies, Washington, 2021. (A)
[17] Z Yao*, K Gao, Y Cheng, et al. A Kalman Filtering Method for Real-Time Queue Length Estimation in a Connected Vehicle Environment [C]. Transportation Research Board of the National Academies, Washington, 2021. (A)
[18] Z Yao, Y Jiang*, X Luo, et al. Dynamic Traffic Flow Prediction Model for Real-Time Adaptive Signal Control in Vehicle Infrastructure Integration Environment [C]. Transportation Research Board of the National Academies, Washington, 2017. (A)
[19] Z Yao, P Han, B Zhao, et al. High-Granularity Dynamic Traffic Flow Prediction Model Based on Artificial Neural Network [C]. Transportation Research Board of the National Academies, Washington, 2017. (A)
[20] 蒋阳升, 蒋浩然, 姚志洪*, 等. 基于虚拟车队的自动交叉路口车辆时序优化模型[J].中国公路学报, 2021. (A+)
[21] 姚志洪, 沈旅欧*, 巫威眺, 等. 基于行程时间分布的异质交通流车队离散模型[J].中国公路学报, 2016, 29(08): 134-142,151. (A+)
[1] 车路协同自动驾驶发展报告2019,主要撰写者(12/49)
[2] 车路协同自动驾驶发展路线图2020,主要撰写者(67/100)
[1] 用于出租车乘客出行目的的预测方法
[2] 一种车路协同自动驾驶的主动感知系统
[3] 城市快速路主辅路车路协同专用道系统
[4] 基于可达性和可达强度的公交线路网络优化方法
[5] 自动驾驶专用车道上应急管理和道路救援的方法
[6] 一种自动驾驶专用道进出口匝道的进入与离开方法
[7] 自动驾驶专用车道自动、手动模式切换系统及其应用
[8] 车联网环境下基于卡尔曼滤波的车辆排队长度估计方法
[9] 自动驾驶专用车道上故障及事故类型识别和道路救援的方法
[1] 交叉口信号配时软件
[2] 交叉口信号配时时段划分软件
[3] 智能交通信号控制优化与可视化平台
[4] 智能网联车混合交通流车辆轨迹重构软件
[5] 基于元胞自动机的单车道智能网联车轨迹生成软件
[6] 基于元胞自动机的智能网联车混合交通流仿真与基本图生成软件
[1] 2020中国(小谷围)人工智能创新创业大赛 最具创意奖(指导老师)
[2] 西南交通大学 优秀博士学位论文
[3] 中国交通运输协会青年工作会议 优秀论文
[4] 2019年WTC世界交通运输大会 优秀论文
[1] Journal of Advanced Transportation, Academic Editor
[2] SAE International, Handling Editor
[3] 世界交通运输大会交通仿真技术委员会 委员
[4] 世界交通运输大会CAV与道路交通技术委员会 委员
[1] ACM Transactions on Intelligent Systems and Technology (A++), Reviewer
[2] IEEE Transactions on Intelligent Transportation Systems (A++), Reviewer
[3] IEEE Transactions on Transportation Electrification (A++), Reviewer
[4] Engineering Applications of Artificial Intelligence (A++), Reviewer
[5] Future Generation Computer Systems (A++), Reviewer
[6] IEEE Internet of Things Journal (A++), Reviewer
[7] Journal of Cleaner Production (A++), Reviewer
[8] Energy Policy (A++), Reviewer
[9] IEEE Transactions on Vehicular Technology (A+), Reviewer
[10] IEEE Transactions on Intelligent Vehicles (A+), Reviewer
[11] Transportmetrica A: Transport Science (A+), Reviewer
[12] Transportmetrica B: Transport Dynamics (A+), Reviewer
[13] Journal of Intelligent Transportation Systems (A+), Reviewer
[14] IET Intelligent Transport Systems (A+), Reviewer
[15] Transportation Research Record (A+), Reviewer
[16] Physica A: Statistical Mechanics and its Applications (A+), Reviewer
[17] Journal of Advanced Transportation (A+), Reviewer
[18] Engineering Computations (A+), Reviewer
[19] Computer Networks (A+), Reviewer
[20] 中国公路学报(A+), Reviewer
详情见个人网站。