...
首页> 外文期刊>Transportation Research >Analysis of alternative treatments for left turn bicycles at tandem intersections
【24h】

Analysis of alternative treatments for left turn bicycles at tandem intersections

机译:分析左转自行车在串联交叉口的替代处理

获取原文
获取原文并翻译 | 示例

摘要

To improve the practical capacity of the tandem intersections and eliminate the conflicts between left-turn bicycles and left-turn vehicles at the main signal, four alternative designs are proposed from the aspects of time separation and spatial separation. In terms of time separation, left-turn bicycles and left-turn vehicles are separated by the two-step crossing for left-turn bicycles design and the exclusive phase for pedestrian and bicycles design. In terms of spatial separation, exclusive passing space for left-turn bicycles is provided by using partial left-turn design in the sorting area and moving the stop line backward. A linear programming model, which combining four optimization designs into one unified optimization framework, is established with the objective of maximizing the practical capacity of vehicles. A case study and extensive numerical analysis are used to validate the effectiveness and identify the application domain of these alternative designs. The results demonstrate the promising effect of the two-step crossing for left-turn bicycles design and the moving the stop line backward design in avoiding conflicts between left-turn bicycles and vehicles while improving the vehicular capacity. The two-step crossing for left-turn bicycles design can improve 10-20% vehicular capacity under almost all analysis conditions, but it increases the delay of left-turn bicycles. The benefit of the moving stop line backward design is sensitive to cycle length and the proportion of left-turn vehicles. It performs well when the cycle time exceeds 90 s, and the proportion of left-turn vehicles exceeds 30%.
机译:为了提高串联交叉口的实用能力,消除主信号处的左转自行车和左转车辆之间的冲突,从时间分离和空间分离方面提出了四种替代设计。在时间分离方面,左转自行车和左转车辆通过两步交叉分开,用于左转自行车设计和行人和自行车设计的独家阶段。就空间分离而言,通过在分拣区域中使用部分左转设计并向后向后移动止动线来提供左转自行车的独特传递空间。将四种优化设计结合成一个统一优化框架的线性编程模型,其目的是最大化车辆的实用容量。案例研究和广泛的数值分析用于验证这些替代设计的效果和识别应用领域。结果表明,两步交叉对左转自行车设计的有希望的效果以及移动停止线向后设计,在避免左转自行车和车辆之间的冲突,同时提高车辆容量。左转自行车设计的两步交叉可以在几乎所有分析条件下提高10-20%的车辆容量,但它增加了左转自行车的延迟。移动停止线向后设计的好处对循环长度和左转车辆的比例敏感。当循环时间超过90秒时,它表现良好,左转车辆的比例超过30%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号