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Capacity Matching Based Model for Protected Left Turn Phases Design of Adjacent Signalized Intersections Along Arterial Roads

机译:基于容量匹配的主干道相邻信号交叉口保护左转相设计模型

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摘要

A protected left turn phase is often used at intersections with heavy left turns. This may induce a capacity gap between adjacent intersections along the arterial road among which only parts of intersection are with protected left turn phase. A model for integrated optimization of protected left turn phases for adjacent intersections along the arterial road is developed to solve this problem. Two objectives are considered: capacity gap minimization and capacity maximization. The problems are formulated as Binary-Integer-Linear-Programs, which are solvable by standard branch-and-bound routine. A set of constraints have been set up to ensure the feasibility of the resulting optimal left turn phase type and signal settings. A field intersections group of the Wei-er Road of Ji’nan city is used to test the proposed model. The results show that the method can decrease the capacity gap between adjacent intersections, reduce the delay as well as increase the capacity in comparison with the field signal plan and signal plan optimized by Synchro. The sensitivity analysis has further demonstrated the potential of the proposed approach to be applied in coordinated design of left turn phases between adjacent intersections along the arterial road under different traffic demandpatterns.
机译:受保护的左转相位通常用于左转较重的交叉路口。这可能会导致沿干线道路的相邻交叉路口之间的通行能力差距,其中只有交叉路口的部分具有受保护的左转相位。为解决此问题,开发了一种用于沿道路交叉路口的相邻交叉路口的受保护左转弯相位的综合优化模型。考虑了两个目标:容量差距最小化和容量最大化。这些问题被表述为二进制整数线性程序,可以通过标准的分支定界例程来解决。已经建立了一组约束条件,以确保产生最佳左转相位类型和信号设置的可行性。济南市渭二路的一个野外交叉口组用于测试该模型。结果表明,与同步信号方案和同步方案优化后的信号方案相比,该方法可以减小相邻交叉口之间的通行能力差距,减少时延并提高通行能力。敏感性分析进一步证明了该方法在不同交通需求模式下沿主干道相邻交叉路口之间左转弯相位的协调设计中应用的潜力。

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