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Distributed optimization for real-time railway traffic management

机译:实时铁路交通管理的分布式优化

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We introduce a distributed optimization method for improving the computational efficiency of real-time traffic management approaches for large-scale railway networks. We first decompose the whole network into a pre-defined number of regions by using an integer linear optimization approach. For each resulting region, a mixed-integer linear programming approach is used to address the traffic management problem, with micro details of the network and incorporated with the train control problem. For handling the interactions among regions, an alternating direction method of multipliers (ADMM) algorithm based solution approach is developed to solve the subproblem of each region through coordination with the other regions in an iterative manner. A priority rule based solution approach is proposed to generate feasible suboptimal solutions, in case of lack of convergence. Numerical experiments are conducted based on the Dutch railway network to show the performance of the proposed solution approaches, in terms of effectiveness and efficiency. We also show the trade-off between solution quality and computational efficiency.
机译:我们介绍了一种分布式优化方法,提高了大型铁路网络实时交通管理方法的计算效率。我们首先通过使用整数线性优化方法将整个网络分解为预定义数的区域。对于每个所得到的区域,使用网络的微细详细信息来解决交通管理问题的混合整数线性编程方法,并与列车控制问题结合。为了处理区域之间的相互作用,开发了一种基于乘法器(ADMM)算法的交替方向方法,以通过以迭代方式与其他区域的协调来解决每个区域的子问题。基于优先级规则的解决方案方法是建议在缺乏收敛的情况下产生可行的次优解决方案。基于荷兰铁路网络进行了数值实验,以表明提出的解决方案方法的性能,在有效性和效率方面。我们还展示了解决方案质量和计算效率之间的权衡。

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