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Frequency Design in Urban Transit Networks with Variable Demand: Model and Algorithm

机译:变需求城市公交网络的频率设计:模型和算法

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摘要

The goal of this study is to present a methodology for modeling the transit frequency design problem with variable demand. A bi-level optimization model based on a non-cooperative Stackelberg game is used to describe the problem. The upper-level operator problem is formulated as a non-linear optimization model to maximize demand while considering fleet size and frequency constraints. The lower-level user problem is formulated as a capacity-constrained stochastic user equilibrium assignment model with variable demand, considering transfer delays between transit lines. An efficient algorithm is also developed for solving the proposed :rnmodel. The upper-level model is solved by a gradient projection method. The gradient of the objective function is calculated at each iteration considering the fixed equilibrium overload delays determined by the lower-level model. The lower-level model is solved by an extant iterative balancing method, which was slightly modified for this study. An application of the proposed model and algorithm is presented using a small test network. The results of this application show that the developed algorithm converges well to an optimal point.
机译:这项研究的目的是提出一种建模具有可变需求的运输频率设计问题的方法。基于非合作Stackelberg博弈的双层优化模型用于描述问题。高层运营商问题被公式化为非线性优化模型,以在考虑车队规模和频率约束的同时最大化需求。考虑运输线路之间的转移延误,将较低级别的用户问题表述为具有可变需求的容量受限的随机用户均衡分配模型。还开发了一种有效的算法来解决所提出的模型。上层模型通过梯度投影法求解。考虑下级模型确定的固定平衡过载延迟,在每次迭代中计算目标函数的梯度。通过现有的迭代平衡方法解决了较低级别的模型,本研究对此模型进行了稍微修改。提出的模型和算法在小型测试网络中的应用。该应用程序的结果表明,所开发的算法可以很好地收敛到最佳点。

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