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Eco-based pavement lifecycle maintenance scheduling optimization for equilibrated networks

机译:基于生态的路面生命周期维护调度均衡网络优化

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摘要

This paper proposes a bi-level mathematical programming framework for pavement maintenance to minimize fuel consumption in equilibrated networks. The proposed model extends research in the area by formulating the interaction between network equilibrium and various maintenance activities. The volume of traffic, age of the pavement, initial conditions, and interference due to maintenance are considered in developing this long-term deterioration model. The fuel consumption induced by roughness and traffic disruption is further investigated in the optimization process. A modified active set algorithm with nested sub-programming is developed to generate the detailed solutions. The performance of the proposed model was tested by comparing it with two other mainstream strategies: worst first and threshold control. The results show that ecobased method outperformed prevalent models by reducing extra fuel consumption by 20%. They thus show that eco-based optimal scheduling has the potential to aid in long-term maintenance decisions and reduce the energy cost.
机译:本文提出了一种用于路面维护的双层数学规划框架,以最大限度地减少平衡网络中的燃料消耗。通过制定网络均衡与各种维护活动之间的相互作用,该模型在该地区延伸了研究。在开发这种长期劣化模型时,考虑了在开发这种长期恶化模型时,在开发这种长期恶化模型时,人行道的数量,人行道的年龄,初始条件和由于维护而受到干扰。在优化过程中进一步研究了由粗糙度和交通中断引起的燃料消耗。开发了一种具有嵌套子编程的修改的活动集算法以生成详细解决方案。通过将其与另外两种主流策略进行比较来测试所提出的模型的性能:最糟糕的第一和阈值控制。结果表明,通过将额外的燃料消耗降低20%,ECOBASED方法优于普遍的模型。因此,它们表明,基于生态的最优调度具有有助于长期维护决策并降低能源成本。

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