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A model for the periodic optimization of bus dispatching times

机译:定期优化公交调度时间的模型

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We model the problem of dispatching time control in rolling horizons following a periodic optimization approach reactionary to travel time and passenger demand disturbances. This model provides more flexibility to transport planners allowing them to adjust the bus schedules during the daily operations. We prove that our periodic optimization model is a convex quadratic program, guaranteeing the global optimality of its solution. To reduce the computational burden, we introduce an iterative algorithm that uses gradient approximations to obtain an approximate dispatching solution. The proposed solution method is found to be significantly faster than exact optimization approaches for quadratic programming and maintains an (almost) negligible optimality gap in realistic bus operation scenarios. Finally, we show that our periodic optimization method outperforms myopic methods that adjust the dispatching time of each bus trip in isolation using operational data from bus line 302 in Singapore.
机译:我们按照周期性优化方法对滚动时间范围内的调度时间控制问题进行建模,该优化方法对旅行时间和乘客需求干扰起反作用。该模型为运输计划人员提供了更大的灵活性,使他们可以在日常操作中调整公交车时刻表。我们证明我们的周期优化模型是一个凸二次规划,保证了其解的全局最优性。为了减少计算负担,我们引入了一种迭代算法,该算法使用梯度近似值来获得近似调度解。发现所提出的解决方案方法比用于二次编程的精确优化方法快得多,并且在现实的公交车运行场景中保持了(几乎)可以忽略的最优间隙。最后,我们证明了我们的周期性优化方法优于近视方法,该方法使用来自新加坡的公交302线的运行数据来独立地调整每个公交行程的调度时间。

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