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Overtaking Safety Evaluation and Setting of Auxiliary Lane on Two-Lane Highway in China

机译:中国两车道高速公路超车安全评价及辅助车道设置

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摘要

Overtaking experiments on four two-lane highways were conducted. The data of overtaking conflict time (the time difference between the time of driving back to the original lane and the time of meeting with the first opposing vehicle) and experimental drivers' risk feeling were observed. Membership was adopted to denote the experimental drivers' risk feelings which also denote the severity of traffic conflict. Membership ranges from 0 to 1 and corresponding risk becomes higher; that is, traffic conflict becomes more serious. According to the observed relationship between overtaking conflict time, and drivers' risk feeling membership, Cauchy distribution function was adopted as membership function. The thresholds of the severity of traffic conflict were determined through Delphi method. The relationship model among traffic volume, overtaking conflict time and design speed was established according to experimental data. Then the idea of setting auxiliary lane on two-lane highway in China was presented. And the traffic volume values that need setting auxiliary lane corresponding to different design speed and traffic conflict degree were given according to the established model. It is expected to improve the traffic safety level of two-lane highway in China through setting auxiliary lane.
机译:在四条两车道高速公路上进行了超车实验。观察到超车冲突时间(回到原车道的时间与与第一个对面的车辆相遇的时间之间的时间差)和实验驾驶员的风险感觉数据。成员资格被用来表示实验驾驶员的风险感觉,也表示交通冲突的严重性。成员资格范围从0到1,相应的风险变高;即,交通冲突变得更加严重。根据观察到的超车时间与驾驶员风险感觉隶属关系,采用柯西分布函数作为隶属函数。通过Delphi方法确定交通冲突严重程度的阈值。根据实验数据建立了交通量,超车冲突时间与设计速度之间的关系模型。然后提出了在中国两车道高速公路上设置辅助车道的想法。根据建立的模型,给出了需要设置不同设计速度和交通冲突程度的辅助车道的交通量值。通过设置辅助车道,有望提高中国两车道的交通安全水平。

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  • 来源
    《Mathematical Problems in Engineering》 |2016年第1期|2603828.1-2603828.6|共6页
  • 作者单位

    School of Transportation Science and Engineering Harbin Institute of Technology Harbin 150090 China;

    School of Transportation Science and Engineering Jilin Jianzhu University Changchun 130018 China;

    School of Civil Engineering Changchun Institute of Technology Changchun 130012 China;

    School of Water Conservancy and Civil Engineering Northeast Agricultural University Harbin 150030 China;

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