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快速路合流区大型车换道时空特征及风险研究 被引量:5
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作者 温惠英 李秋灵 赵胜 《华南理工大学学报(自然科学版)》 EI CAS CSCD 北大核心 2022年第5期11-21,共11页
为了研究大型车换道行为特性及其风险状况,基于无人机拍摄与图像识别技术,采集快速路合流区大型车运动轨迹数据,并对其换道特性和时空风险进行分析。结果表明:大型车换道持续时间的平均值为5.28 s,前半时间平均值为2.60 s,后半时间平均... 为了研究大型车换道行为特性及其风险状况,基于无人机拍摄与图像识别技术,采集快速路合流区大型车运动轨迹数据,并对其换道特性和时空风险进行分析。结果表明:大型车换道持续时间的平均值为5.28 s,前半时间平均值为2.60 s,后半时间平均值为2.68 s,纵向换道行驶距离平均值为78.12 m,均服从Weibull分布,且均与换道速度显著相关,大型车换道持续时间及前半时间均和与原车道前车间距、与目标车道前车间距显著相关,前半时间还与沿车道线距离显著相关;75.40%的大型车在合流区瓶颈路段前100 m内开始变道,且由外侧车道向内侧车道依次扩散;大型车与原车道前车的车间距和相对速度平均值最小,分别为22.91 m、-0.90 m/s,若换道间隙较小,驾驶员更倾向于在换道间隙缩小缓慢或不断扩大时换道;大型车换道时与原车道前车的碰撞风险最高,约有15.32%大型车换道时与前车处于不安全状态。 展开更多
关键词 大型车 快速路合流区 特性 风险 持续时间 换道速度 车间距 碰撞风险
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考虑与跟驰模型结合的自由换道模型及仿真 被引量:10
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作者 时柏营 杨晓光 于晓斐 《交通科学与工程》 2009年第4期91-96,共6页
考虑跟驰过程与换道过程的结合,在车辆换道过程的具体实施过程中引入跟驰模型,以全速度差模型为基础,对换道过程中的换道加速度进行确定,并通过对天津市视频录像换道时间的统计分析,建立了换道距离与换道时车头偏角之间的关系.最后利用N... 考虑跟驰过程与换道过程的结合,在车辆换道过程的具体实施过程中引入跟驰模型,以全速度差模型为基础,对换道过程中的换道加速度进行确定,并通过对天津市视频录像换道时间的统计分析,建立了换道距离与换道时车头偏角之间的关系.最后利用Netlogo平台对模型进行了实现与仿真分析,结果表明:该模型很好地体现了实际换道的特点. 展开更多
关键词 模型 跟车模型 结合 速度 转角
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Modelling of vehicle interaction behavior during discretionary lane-changing preparation process on freeway 被引量:1
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作者 Nie Jianqiang Zhang Jian Ran Bin 《Journal of Southeast University(English Edition)》 EI CAS 2018年第4期524-531,共8页
In order to increase the accuracy of microscopic traffic flow simulation,two acceleration models are presented to simulate car-following behaviors of the lane-changing vehicle and following putative vehicle during the... In order to increase the accuracy of microscopic traffic flow simulation,two acceleration models are presented to simulate car-following behaviors of the lane-changing vehicle and following putative vehicle during the discretionary lanechanging preparation( DLCP) process, respectively. The proposed acceleration models can reflect vehicle interaction characteristics. Samples used for describing the starting point and the ending point of DLCP are extracted from a real NGSIM vehicle trajectory data set. The acceleration model for a lanechanging vehicle is supposed to be a linear acceleration model.The acceleration model for the following putative vehicle is constructed by referring to the optimal velocity model,in which optimal velocity is defined as a linear function of the velocity of putative leading vehicle. Similar calibration,a hypothesis test and parameter sensitivity analysis were conducted on the acceleration model of the lane-changing vehicle and following putative vehicle,respectively. The validation results of the two proposed models suggest that the training and testing errors are acceptable compared with similar works on calibrations for car following models. The parameter sensitivity analysis shows that the subtle observed error does not lead to severe variations of car-following behaviors of the lane-changing vehicle and following putative vehicle. 展开更多
关键词 vehicle interaction behavior discretionary lane-changing preparation process lane-changing vehicle following putative vehicle optimal velocity model
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