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Predictive Ecological Cooperative Control of Electric Vehicles Platoon on Hilly Roads
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作者 Bingbing Li Weichao Zhuang +4 位作者 Boli Chen Hao Zhang Sheng Yu Jianrun Zhang Guodong Yin 《Chinese Journal of Mechanical Engineering》 2025年第2期360-373,共14页
The integration of eco-driving and cooperative adaptive cruise control(CACC)with platoon cooperative control(eco-CACC)has emerged as a pivotal approach for improving vehicle energy efficiency.Nonetheless,the prevailin... The integration of eco-driving and cooperative adaptive cruise control(CACC)with platoon cooperative control(eco-CACC)has emerged as a pivotal approach for improving vehicle energy efficiency.Nonetheless,the prevailing eco-CACC implementations still exhibit limitations in fully harnessing the potential energy savings.This can be attributed to the intricate nature of the problem,characterized by its high nonlinearity and non-convexity,making it challenging for conventional solving methods to find solutions.In this paper,a novel strategy based on a decentralized model predictive control(MPC)framework,called predictive ecological cooperative control(PECC),is proposed for vehicle platoon control on hilly roads,aiming to maximize the overall energy efficiency of the platoon.Unlike most existing literature that focuses on suboptimal coordination under predefined leading vehicle trajectories,this strategy employs an approach based on the combination of a long short-term memory network(LSTM)and genetic algorithm(GA)optimization(GA-LSTM)to predict the future speed of the leading vehicle.Notably,a function named the NotchFilter function(NF(?))is introduced to transform the hard state constraints in the eco-CACC problem,thereby alleviating the burden of problem-solving.Finally,through simulation comparisons between PECC and a strategy based on the common eco-CACC modifications,the effectiveness of PECC in improving platoon energy efficiency is demonstrated. 展开更多
关键词 Electric vehicles platoon Model predictive control Energy efficiency Cooperative adaptive cruise control Genetic algorithm
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Platoon模式下车载自组织网络性能分析与研究 被引量:2
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作者 赵海 雷凯茹 +1 位作者 司帅宗 许子文 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2017年第5期634-638,共5页
Platoon的性能可以通过车载自组织网络和协同自适应巡航控制系统得到进一步的提升.提出了一种适用于大规模platoon与自由车辆协同运动的管理协议和管理策略.通过设计适用于platoon的车辆移动模型,并应用于SUMO交通仿真软件中,对车辆场... Platoon的性能可以通过车载自组织网络和协同自适应巡航控制系统得到进一步的提升.提出了一种适用于大规模platoon与自由车辆协同运动的管理协议和管理策略.通过设计适用于platoon的车辆移动模型,并应用于SUMO交通仿真软件中,对车辆场景进行了仿真.同时设计适用于大规模platoon和自由运动车辆的通信分簇协议,利用网络仿真软件NS2对通信性能进行分析,结果证明platoon改善和提升了道路性能和通信性能. 展开更多
关键词 platoon 智能驾驶模型 车载自组织网络 分簇算法 SUMO NS2
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车载网中platoon的动态稳定性
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作者 赵海 许子文 +1 位作者 司帅宗 彭海霞 《控制与决策》 EI CSCD 北大核心 2017年第9期1719-1723,共5页
车载网中platoon的稳定性直接决定了道路的安全性.对于platoon编组而言,"稳定"意味着在受到干扰时platoon的结构能保持相对稳定,并且干扰不会被放大.对此,研究platoon在受到干扰时的内部动态特性.通过分析可知,内部间距的变... 车载网中platoon的稳定性直接决定了道路的安全性.对于platoon编组而言,"稳定"意味着在受到干扰时platoon的结构能保持相对稳定,并且干扰不会被放大.对此,研究platoon在受到干扰时的内部动态特性.通过分析可知,内部间距的变化符合阻尼运动,并采用SUMO(simulation of urban mobility)仿真软件做了大量实验以证实分析结论.此外,还讨论了不同加速度对欠阻尼的影响,总结出加速度与稳定性之间的关系. 展开更多
关键词 platoon 阻尼特性 稳定性 智能驾驶员模型
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Proactive Platooning Based on C-V2X to Relieve Congestion at a Signalized Intersection 被引量:1
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作者 Wei Gao Yan Shi Shanzhi Chen 《China Communications》 SCIE CSCD 2023年第2期155-167,共13页
Nowadays urban traffic congestion becomes a major issue due to the increase in vehicles that lead to more commuting time,accidents,traffic violations,and high fuel consumption.Platooning is a good way to solve traffic... Nowadays urban traffic congestion becomes a major issue due to the increase in vehicles that lead to more commuting time,accidents,traffic violations,and high fuel consumption.Platooning is a good way to solve traffic congestion because it drives with a smaller inter-vehicle distance than human-driving.This paper proposes proactive platooning based on C-V2X(cellular vehicle-to-everything)to relieve congestion.Proactive platooning reduces the inter-vehicle distance and increases the throughput of signalized intersections through integrating the networked control platooning and computation-centralized platooning.Model and simulation experiments of proactive platooning were conducted to verify the impact of inter-vehicle distance on platooning latency,platooning safety,and traffic throughput.Simulation results show that the optimal inter-vehicle distance under proactive platooning is less than half of human-driving at a signalized intersection. 展开更多
关键词 platooning communication platooning safety C-V2X signalized intersection
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A distributed algorithm for signal coordination of multiple agents with embedded platoon dispersion model
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作者 别一鸣 王殿海 +1 位作者 马东方 朱自博 《Journal of Southeast University(English Edition)》 EI CAS 2011年第3期311-315,共5页
In order to reduce average arterial vehicle delay, a novel distributed and coordinated traffic control algorithm is developed using the multiple agent system and the reinforce learning (RL). The RL is used to minimi... In order to reduce average arterial vehicle delay, a novel distributed and coordinated traffic control algorithm is developed using the multiple agent system and the reinforce learning (RL). The RL is used to minimize average delay of arterial vehicles by training the interaction ability between agents and exterior environments. The Robertson platoon dispersion model is embedded in the RL algorithm to precisely predict platoon movements on arteries and then the reward function is developed based on the dispersion model and delay equations cited by HCM2000. The performance of the algorithm is evaluated in a Matlab environment and comparisons between the algorithm and the conventional coordination algorithm are conducted in three different traffic load scenarios. Results show that the proposed algorithm outperforms the conventional algorithm in all the scenarios. Moreover, with the increase in saturation degree, the performance is improved more significantly. The results verify the feasibility and efficiency of the established algorithm. 展开更多
关键词 multiple agents signal coordination reinforce learning platoon dispersion model
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Intelligent reflecting surface-assisted federated learning in multi-platoon collaborative networks
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作者 Xiaoting Ma Junhui Zhao +1 位作者 Jieyu Liao Ziyang Zhang 《Digital Communications and Networks》 SCIE CSCD 2023年第3期628-637,共10页
Inspired by mobile edge computing(MEC),edge learning has gained a momentum by directly performing model training at network edge without sending massive data to a centralized data center.However,the quality of model t... Inspired by mobile edge computing(MEC),edge learning has gained a momentum by directly performing model training at network edge without sending massive data to a centralized data center.However,the quality of model training will be affected by the limited communication and computing resources of network edge.In this paper,how to improve the training performance of a federated learning system aided by intelligent reflecting surface(IRS)over vehicle platooning networks is studied,where multiple platoons train a shared federated learning model.Multi-platoon cooperation can alleviate the pressure of data processing caused by the limited computing resources of single platoon.Meanwhile,IRS can enhance the inter-platoon communication in a cost-effective and energy-efficient manner.Firstly,the federated learning optimization problem of maximizing the learning accuracy is formulated by jointing platoon scheduling,bandwidth allocation and phase shifts at the IRS to maximize the number of scheduled platoon.Specif-ically,in the proposed learning architecture each platoon updates the learning model with its own data and uploads it to the global model through IRS-based wireless networks.Then,a method based on sequential optimization algorithm(SOA)and a group-based optimization method are analyzed for single IRS aided and large-scale IRS aided commu-nication,respectively.Finally,a platoon scheduling scheme is designed based on the communication reliability and computing reliability of platoons.Simulation results demonstrate that large-scale IRS assisted communication can effectively improve the reliability of multi-user communication networks.The scheduling scheme based on learning reliability balances the communication performance and computing performance of platoons. 展开更多
关键词 Vehicle platooning networks Federated learning Intelligent reflecting surface platoon scheduling Resource allocation
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Dynamic Event-Triggered Scheduling and Platooning Control Co-Design for Automated Vehicles Over Vehicular Ad-Hoc Networks 被引量:35
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作者 Xiaohua Ge Shunyuan Xiao +2 位作者 Qing-Long Han Xian-Ming Zhang Derui Ding 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2022年第1期31-46,共16页
This paper deals with the co-design problem of event-triggered communication scheduling and platooning control over vehicular ad-hoc networks(VANETs)subject to finite communication resource.First,a unified model is pr... This paper deals with the co-design problem of event-triggered communication scheduling and platooning control over vehicular ad-hoc networks(VANETs)subject to finite communication resource.First,a unified model is presented to describe the coordinated platoon behavior of leader-follower vehicles in the simultaneous presence of unknown external disturbances and an unknown leader control input.Under such a platoon model,the central aim is to achieve robust platoon formation tracking with desired inter-vehicle spacing and same velocities and accelerations guided by the leader,while attaining improved communication efficiency.Toward this aim,a novel bandwidth-aware dynamic event-triggered scheduling mechanism is developed.One salient feature of the scheduling mechanism is that the threshold parameter in the triggering law is dynamically adjusted over time based on both vehicular state variations and bandwidth status.Then,a sufficient condition for platoon control system stability and performance analysis as well as a co-design criterion of the admissible event-triggered platooning control law and the desired scheduling mechanism are derived.Finally,simulation results are provided to substantiate the effectiveness and merits of the proposed co-design approach for guaranteeing a trade-off between robust platooning control performance and communication efficiency. 展开更多
关键词 Automated vehicles dynamic event-triggered communication information flow topology platooning control vehicular ad-hoc networks(VANETs)
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Cooperative adaptive bidirectional control of a train platoon for efficient utility and string stability 被引量:8
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作者 高士根 董海荣 +3 位作者 宁滨 Roberts Clive 陈磊 孙绪彬 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第9期161-170,共10页
This paper proposes cooperative adaptive control schemes for a train platoon to improve efficient utility and guarantee string stability. The control schemes are developed based on a bidirectional strategy, i.e., the ... This paper proposes cooperative adaptive control schemes for a train platoon to improve efficient utility and guarantee string stability. The control schemes are developed based on a bidirectional strategy, i.e., the information of proximal(preceding and following) trains is used in the controller design. Based on available proximal information(prox-info) of location, speed, and acceleration, a direct adaptive control is designed to maintain the tracking interval at the minimum safe distance. Based on available prox-info of location, an observer-based adaptive control is designed to achieve the same target, which alleviates the requirements of equipped sensors to measure prox-info of speed and acceleration. The developed schemes are capable of on-line estimating of the unknown system parameters and stabilizing the closed-loop system, the string stability of train platoon is guaranteed on the basis of Lyapunov stability theorem. Numerical simulation results are presented to verify the effectiveness of the proposed control laws. 展开更多
关键词 train platoon string stability cooperative adaptive control efficient utility
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Resilient and Safe Platooning Control of Connected Automated Vehicles Against Intermittent Denial-of-Service Attacks 被引量:23
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作者 Xiaohua Ge Qing-Long Han +1 位作者 Qing Wu Xian-Ming Zhang 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2023年第5期1234-1251,共18页
Connected automated vehicles(CAVs)serve as a promising enabler for future intelligent transportation systems because of their capabilities in improving traffic efficiency and driving safety,and reducing fuel consumpti... Connected automated vehicles(CAVs)serve as a promising enabler for future intelligent transportation systems because of their capabilities in improving traffic efficiency and driving safety,and reducing fuel consumption and vehicle emissions.A fundamental issue in CAVs is platooning control that empowers a convoy of CAVs to be cooperatively maneuvered with desired longitudinal spacings and identical velocities on roads.This paper addresses the issue of resilient and safe platooning control of CAVs subject to intermittent denial-of-service(DoS)attacks that disrupt vehicle-to-vehicle communications.First,a heterogeneous and uncertain vehicle longitudinal dynamic model is presented to accommodate a variety of uncertainties,including diverse vehicle masses and engine inertial delays,unknown and nonlinear resistance forces,and a dynamic platoon leader.Then,a resilient and safe distributed longitudinal platooning control law is constructed with an aim to preserve simultaneous individual vehicle stability,attack resilience,platoon safety and scalability.Furthermore,a numerically efficient offline design algorithm for determining the desired platoon control law is developed,under which the platoon resilience against DoS attacks can be maximized but the anticipated stability,safety and scalability requirements remain preserved.Finally,extensive numerical experiments are provided to substantiate the efficacy of the proposed platooning method. 展开更多
关键词 Connected automated vehicles(CAVs) cooperative adaptive cruise control denial-of-service(DoS)attacks resilient control vehicle platooning vehicle-to-vehicle communication
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Communication Resource-Efficient Vehicle Platooning Control With Various Spacing Policies 被引量:8
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作者 Xiaohua Ge Qing-Long Han +1 位作者 Xian-Ming Zhang Derui Ding 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2024年第2期362-376,共15页
Platooning represents one of the key features that connected automated vehicles may possess as it allows multiple automated vehicles to be maneuvered cooperatively with small headways on roads. However, a critical cha... Platooning represents one of the key features that connected automated vehicles may possess as it allows multiple automated vehicles to be maneuvered cooperatively with small headways on roads. However, a critical challenge in accomplishing automated vehicle platoons is to deal with the effects of intermittent and sporadic vehicle-to-vehicle data transmissions caused by limited wireless communication resources. This paper addresses the co-design problem of dynamic event-triggered communication scheduling and cooperative adaptive cruise control for a convoy of automated vehicles with diverse spacing policies. The central aim is to achieve automated vehicle platooning under various gap references with desired platoon stability and spacing performance requirements, while simultaneously improving communication efficiency. Toward this aim, a dynamic event-triggered scheduling mechanism is developed such that the intervehicle data transmissions are scheduled dynamically and efficiently over time. Then, a tractable co-design criterion on the existence of both the admissible event-driven cooperative adaptive cruise control law and the desired scheduling mechanism is derived. Finally, comparative simulation results are presented to substantiate the effectiveness and merits of the obtained results. 展开更多
关键词 Automated vehicles constant time headway spacing constant spacing cooperative adaptive cruise control event-triggered communication vehicle platooning
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An empirical study of DSRC V2V performance in truck platooning scenarios 被引量:7
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作者 Song Gao Alvin Lim David Bevly 《Digital Communications and Networks》 SCIE 2016年第4期233-244,共12页
Among many safety applications enabled by Dedicated Short Range Communication (DSRC), truck platooning provides many incentives to commercial companies. This paper studies DSRC Vehicle-to-Vehicle (V2V) performance... Among many safety applications enabled by Dedicated Short Range Communication (DSRC), truck platooning provides many incentives to commercial companies. This paper studies DSRC Vehicle-to-Vehicle (V2V) performance in truck platooning scenarios through real-world experiments. Commercial DSRC equipments and semi-trailer trucks are used in this study. We mount one DSRC antenna on each side of the truck. One set of dynamic tests and a few sets of static tests are conducted to explore DSRC behaviors under different situations. From the test results, we verified some of our speculations. For example, hilly roads can affect delivery ratio and antennas mounted on opposite sides of a truck can suffer from low delivery ratio at curved roads. In addition, we also found that antennas can sometimes suffer from low delivery ratio even when the trucks are on straight roads, possibly due to reflections from the nearby terrain. Fortunately, the delivery ratio can be greatly improved by using the two side antennas alternately. 展开更多
关键词 Empirieal study DSRC V2V performance Truck platooning Delivery ratio
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Platoon车辆自动控制方法及性能分析 被引量:2
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作者 赵海 郭红叶 +1 位作者 司帅宗 朱剑 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2018年第6期781-786,共6页
在车辆编队platoon的控制管理中领头车辆为跟随车辆周期性广播其运动参数及驾驶行为等信息是必要的.为了保证车队稳定性和鲁棒性,提出一种platoon车辆的自适应控制方法,该方法考虑领头车辆和相邻前车的动态信息,对包括车辆动力学和控制... 在车辆编队platoon的控制管理中领头车辆为跟随车辆周期性广播其运动参数及驾驶行为等信息是必要的.为了保证车队稳定性和鲁棒性,提出一种platoon车辆的自适应控制方法,该方法考虑领头车辆和相邻前车的动态信息,对包括车辆动力学和控制子系统的闭环线性系统,采用H∞控制理论求解最优控制增益函数,并给出系统传递函数矩阵和间距误差函数所满足的队列稳定性条件.最后,用该方法得到platoon车辆运动参数及间距误差的变化轨迹,并对比仅考虑前车信息的控制方法.数值结果表明所提方法的控制效果更好,能实现车辆的渐进跟随,保证队列稳定性和驾驶安全性. 展开更多
关键词 platoon 自适应控制 鲁棒控制理论 队列稳定性 渐进跟随
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Large-Scale Vehicle Platooning:Advances and Challenges in Scheduling and Planning Techniques 被引量:4
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作者 Jing Hou Guang Chen +5 位作者 Jin Huang Yingjun Qiao Lu Xiong Fuxi Wen Alois Knoll Changjun Jiang 《Engineering》 SCIE EI CAS CSCD 2023年第9期26-48,共23页
Through vehicle-to-vehicle(V2V)communication,autonomizing a vehicle platoon can significantly reduce the distance between vehicles,thereby reducing air resistance and improving road traffic efficiency.The gradual matu... Through vehicle-to-vehicle(V2V)communication,autonomizing a vehicle platoon can significantly reduce the distance between vehicles,thereby reducing air resistance and improving road traffic efficiency.The gradual maturation of platoon control technology is enabling vehicle platoons to achieve basic driving functions,thereby permitting large-scale vehicle platoon scheduling and planning,which is essential for industrialized platoon applications and generates significant economic benefits.Scheduling and planning are required in many aspects of vehicle platoon operation;here,we outline the advantages and challenges of a number of the most important applications,including platoon formation scheduling,lane-change planning,passing traffic light scheduling,and vehicle resource allocation.This paper’s primary objective is to integrate current independent platoon scheduling and planning techniques into an integrated architecture to meet the demands of large-scale platoon applications.To this end,we first summarize the general techniques of vehicle platoon scheduling and planning,then list the primary scenarios for scheduling and planning technique application,and finally discuss current challenges and future development trends in platoon scheduling and planning.We hope that this paper can encourage related platoon researchers to conduct more systematic research and integrate multiple platoon scheduling and planning technologies and applications. 展开更多
关键词 Autonomous vehicle platoon Autonomous driving Connected and automated vehicles Scheduling and planning techniques
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Stability analysis of lead-vehicle control model in cooperative adaptive cruise control platoon within heterogeneous traffic flow 被引量:5
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作者 Gu Haiyan Zhang Jian +1 位作者 Jin Peter J Ran Bin 《Journal of Southeast University(English Edition)》 EI CAS 2018年第3期386-393,共8页
In order to analyze the stability impact of cooperative adaptive cruise control (CACC) platoon, an adaptive control model designed for the lead vehicle in a CACC platoon (LCACC model) in heterogeneous traffic flow... In order to analyze the stability impact of cooperative adaptive cruise control (CACC) platoon, an adaptive control model designed for the lead vehicle in a CACC platoon (LCACC model) in heterogeneous traffic flow with both CACC and manual vehicles is proposed. Considering the communication delay of a CACC platoon, a frequency-domain approach is taken to analyze the stability conditions of the novel lead-vehicle CACC model. Field trajectory data from the next-generation simulation (NGSIM) data is used as the initial condition. To account for car- following behaviors in reality, an intelligent driver model (IDM) is calibrated with the same NGSIM dataset from a previous study to model manual vehicles. The stability conditions of the proposed model are validated by the ring- road stability analysis. The ring-road test results indicate the potential of the LCACC model for improving the traffic flow stability impact of CACC platoons. Sensitivity analysis shows that the CACC fleet size has impact on the parameters of the LCACC model. 展开更多
关键词 stability analysis cooperative adaptive cruisecontrol (CACC) platoon lead-vehicle model frequency-domain approach
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Markov chain-based platoon recognition model in mixed traffic with human-driven and connected and autonomous vehicles 被引量:3
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作者 DING Shen-zhen CHEN Xu-mei YU Lei 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第5期1521-1536,共16页
Many vehicle platoons are interrupted while traveling on roads,especially at urban signalized intersections.One reason for such interruptions is the inability to exchange real-time information between traditional huma... Many vehicle platoons are interrupted while traveling on roads,especially at urban signalized intersections.One reason for such interruptions is the inability to exchange real-time information between traditional human-driven vehicles and intersection infrastructure.Thus,this paper develops a Markov chain-based model to recognize platoons.A simulation experiment is performed in Vissim based on field data extracted from video recordings to prove the model’s applicability.The videos,recorded with a high-definition camera,contain field driving data from three Tesla vehicles,which can achieve Level 2 autonomous driving.The simulation results show that the recognition rate exceeds 80%when the connected and autonomous vehicle penetration rate is higher than 0.7.Whether a vehicle is upstream or downstream of an intersection also affects the performance of platoon recognition.The platoon recognition model developed in this paper can be used as a signal control input at intersections to reduce the unnecessary interruption of vehicle platoons and improve traffic efficiency. 展开更多
关键词 mixed traffic connected and autonomous vehicles Markov chain platoon recognition Vissim simulation
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Platoon架构下VANETs车间通信过程及性能分析 被引量:2
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作者 郭红叶 赵海 +1 位作者 司帅宗 彭海霞 《软件学报》 EI CSCD 北大核心 2019年第4期1121-1135,共15页
智能车辆编组platoon的稳定运行需要车辆间实时可靠的信息传输来保证.针对应用专用短程通信(DSRC)技术来实现车载自组织网路(VANETs)车间通信的platoon架构,提出了一种车间通信网络性能的分析方法,分别对platoon组内智能车辆间通信和多... 智能车辆编组platoon的稳定运行需要车辆间实时可靠的信息传输来保证.针对应用专用短程通信(DSRC)技术来实现车载自组织网路(VANETs)车间通信的platoon架构,提出了一种车间通信网络性能的分析方法,分别对platoon组内智能车辆间通信和多个platoons组间通信的过程进行了分析.该方法采用长度有限的M/G/1/K排队模型分析数据包到达媒体访问控制(MAC)层的排队过程,得到不同网络负载下缓冲区排队状态的平稳分布;并且在缓冲区可能处于空闲状态时,利用Markov模型分析方法得到不同车辆位置的车间通信性能.研究结果表明:网络数据流量、信道条件、MAC层缓冲区排队过程、争用信道退避过程以及platoon参数对车间通信的包传输时延和包丢失概率等网络性能有显著影响,数值分析结果验证了专用短程通信技术下的车间通信具有较小的信息传输延时,能够满足platoon稳定运行的要求. 展开更多
关键词 platoon 专用短程通信技术 M/G/1/K排队模型 传输延时 包丢失概率
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Distributed Platooning Control of Automated Vehicles Subject to Replay Attacks Based on Proportional Integral Observers 被引量:2
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作者 Meiling Xie Derui Ding +3 位作者 Xiaohua Ge Qing-Long Han Hongli Dong Yan Song 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2024年第9期1954-1966,共13页
Secure platooning control plays an important role in enhancing the cooperative driving safety of automated vehicles subject to various security vulnerabilities.This paper focuses on the distributed secure control issu... Secure platooning control plays an important role in enhancing the cooperative driving safety of automated vehicles subject to various security vulnerabilities.This paper focuses on the distributed secure control issue of automated vehicles affected by replay attacks.A proportional-integral-observer(PIO)with predetermined forgetting parameters is first constructed to acquire the dynamical information of vehicles.Then,a time-varying parameter and two positive scalars are employed to describe the temporal behavior of replay attacks.In light of such a scheme and the common properties of Laplace matrices,the closed-loop system with PIO-based controllers is transformed into a switched and time-delayed one.Furthermore,some sufficient conditions are derived to achieve the desired platooning performance by the view of the Lyapunov stability theory.The controller gains are analytically determined by resorting to the solution of certain matrix inequalities only dependent on maximum and minimum eigenvalues of communication topologies.Finally,a simulation example is provided to illustrate the effectiveness of the proposed control strategy. 展开更多
关键词 Automated vehicles platooning control proportional-integral-observers(PIOs) replay attacks TIME-DELAYS
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Ensuring Secure Platooning of Constrained Intelligent and Connected Vehicles Against Byzantine Attacks:A Distributed MPC Framework 被引量:2
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作者 Henglai Wei Hui Zhang +1 位作者 Kamal AI-Haddad Yang Shi 《Engineering》 SCIE EI CAS CSCD 2024年第2期35-46,共12页
This study investigates resilient platoon control for constrained intelligent and connected vehicles(ICVs)against F-local Byzantine attacks.We introduce a resilient distributed model-predictive platooning control fram... This study investigates resilient platoon control for constrained intelligent and connected vehicles(ICVs)against F-local Byzantine attacks.We introduce a resilient distributed model-predictive platooning control framework for such ICVs.This framework seamlessly integrates the predesigned optimal control with distributed model predictive control(DMPC)optimization and introduces a unique distributed attack detector to ensure the reliability of the transmitted information among vehicles.Notably,our strategy uses previously broadcasted information and a specialized convex set,termed the“resilience set”,to identify unreliable data.This approach significantly eases graph robustness prerequisites,requiring only an(F+1)-robust graph,in contrast to the established mean sequence reduced algorithms,which require a minimum(2F+1)-robust graph.Additionally,we introduce a verification algorithm to restore trust in vehicles under minor attacks,further reducing communication network robustness.Our analysis demonstrates the recursive feasibility of the DMPC optimization.Furthermore,the proposed method achieves exceptional control performance by minimizing the discrepancies between the DMPC control inputs and predesigned platoon control inputs,while ensuring constraint compliance and cybersecurity.Simulation results verify the effectiveness of our theoretical findings. 展开更多
关键词 Model predictive control Resilient control platoon control Intelligent and connected vehicle Byzantine attacks
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考虑通信延时的platoon跟车控制模型 被引量:1
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作者 于冲 赵海 +1 位作者 司帅宗 朱剑 《控制与决策》 EI CSCD 北大核心 2019年第2期377-382,共6页
自主巡航控制与车载自组织网络是形成platoon的两项关键技术.自主巡航控制为车辆自动驾驶提供支持,车载自组织网络使车辆间通信成为可能.以往的研究通常将platoon中的通信与控制分开讨论,忽略了两者之间的内在联系,造成在通信不理想的... 自主巡航控制与车载自组织网络是形成platoon的两项关键技术.自主巡航控制为车辆自动驾驶提供支持,车载自组织网络使车辆间通信成为可能.以往的研究通常将platoon中的通信与控制分开讨论,忽略了两者之间的内在联系,造成在通信不理想的情况下platoon的跟车控制效果不佳的结果.对此,分别建立platoon结构模型与通信模型,分析通信与控制的相互作用,并在IDM(Intelligent driver model)模型的基础上增加加权约束规则和信息预估策略,提出一种弥补通信延时影响的改进跟车控制模型,期望降低通信延时对platoon的影响作用,提升platoon的整体性能.在SUMO、OMNeT++及VEINS联合搭建的platoon仿真平台上对模型性能进行评估,实验结果表明,在存在通信延时的场景下改进跟车模型可以有效提升platoon的稳定性和安全性. 展开更多
关键词 platoon 车辆间通信 延时 跟车控制 加权约束 信息预估
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Better Platooning toward Autonomous Driving:Inter-Vehicle Communications with Directional Antenna 被引量:1
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作者 Xiaoyan Wang Diquan Wang +1 位作者 Nobuhiro Ariyasu Masahiro Umehira 《China Communications》 SCIE CSCD 2021年第7期44-57,共14页
Recently,in the researches on vehicular Internet-of-Things(IoT),platooning have received lots of attentions due to its potential to improve the fuel efficiency and driving experience.Platoon is a group of vehicles tha... Recently,in the researches on vehicular Internet-of-Things(IoT),platooning have received lots of attentions due to its potential to improve the fuel efficiency and driving experience.Platoon is a group of vehicles that act as smart agents,they travel collaboratively by following the leading human-driven vehicle.A vehicle in the platoon utilizes radar and wireless communication to share important information to other vehicles in the same platoon such as speed and acceleration,to realize the safe and efficient driving.The quality of wireless communication is of great importance to manage and maintain the platoons.However,in a scenario that a large number of vehicles exist,communication delay and packet loss caused by channel congestion may endanger the safe intervehicle distance.In this paper,we introduce intervehicle communication with directional antenna into platooning.By extensive simulations,we evaluate the packet delay and inter-vehicle distance in both normal driving and braking scenarios,and verify the usefulness of directional antenna in platooning for vehicular IoT. 展开更多
关键词 vehicular IoT inter-vehicle communications directional antenna platoon safety
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