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Integrated passenger terminal capacity analysis under the capacity constraints of surrounding road network

机译:周边路网容量约束下的综合客运站容量分析

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摘要

Forecasting the demand of an integrated passenger terminal under the capacity constraints of its surrounding roads has always been a challenging problem for urban transportation terminals planning and construction in China. A bi-level model is proposed to forecast the passenger demand of an integrated terminal, whose throughput is restricted by the capacity of its surrounding road network. The upper level model maximizes the passenger flow of a terminal considering the capacity constraints of its surrounding road network. The User Equilibrium (UE) model is adopted as lower level model for traffic assignment. The adaptive genetic algorithm (AGA) is applied to solve this bi-level problem. The West- Lanzhou integrated passenger terminal in the Lanzhou city of China is used to test the feasibility and effectiveness of the proposed model. Test results show that, to reduce traffic congestion at the terminal, priority should be given to transportation mode with higher performance.
机译:在中国城市交通枢纽的规划和建设中,预测综合客运枢纽在其周围道路的通行能力限制下的需求一直是一个充满挑战的问题。提出了一种双层模型来预测综合终端的乘客需求,该综合终端的吞吐量受其周围道路网络的容量限制。考虑到其周围道路网络的通行能力限制,上层模型可最大化终端的客流。用户均衡(UE)模型被用作较低级别的流量分配模型。自适应遗传算法(AGA)用于解决该双层问题。使用中国兰州市的西兰州综合客运站来测试该模型的可行性和有效性。测试结果表明,为减少终端的交通拥堵,应优先选择性能更高的运输方式。

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