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Enhancing transportation network capacity by congestion pricing with simultaneous toll location and toll level optimization

机译:通过拥堵收费和同时的收费站位置和收费水平优化来提高交通网络的容量

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摘要

In previous studies of congestion pricing, the objective was to minimize total travel time or maximize total social welfare of all travellers in transportation networks. In this article, a new objective function of maximizing the reserve capacity of networks is proposed, and a new bi-level model is formulated for the implementation of congestion pricing, where either link tolls or path tolls are charged. Since the bi-level model is neither convex nor differentiable, the traditional gradient based methods cannot solve the problem for a global optimum. To circumvent the difficulty of computing, the congestion pricing problem of simultaneous toll link and toll level optimization is formulated as a single-level optimization program with equilibrium constraints. Then the equilibrium constraints, the travel time functions, and toll location constraints are all linearized by introducing mixed integer variables. As a result, the overall problem is formulated into a mixed-integer linear program, which can determine the global optimum. Numerical results show that this approach is effective and efficient.
机译:在先前的交通拥堵定价研究中,目标是使运输网络中所有旅行者的总旅行时间减至最少或使社会旅行者的总社会福利最大化。本文提出了一种最大化网络备用容量的新目标函数,并为实现拥塞定价制定了新的双层模型,其中对链路通行费或路径通行费进行收费。由于双层模型既不是凸的也不是可微的,传统的基于梯度的方法无法解决全局最优问题。为了避免计算的困难,将同时进行的收费链路和收费水平优化的拥挤定价问题表述为具有均衡约束的单级优化程序。然后,通过引入混合整数变量将平衡约束,旅行时间函数和通行费位置约束全部线性化。结果,整个问题被公式化为一个混合整数线性程序,该程序可以确定全局最优值。数值结果表明,该方法是有效的。

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  • 来源
    《Engineering Optimization》 |2012年第4期|p.477-488|共12页
  • 作者

    Xiaoning Zhang;

  • 作者单位

    School of Economics and Management, Tongji University, Siping Road 1239, Shanghai, 200092, China;

    Faculty of Technology, Policy and Management, Delft University of Technology, The Netherlands;

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  • 正文语种 eng
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