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The Emergency Vehicle Routing Problem with Uncertain Demand under Sustainability Environments

机译:可持续环境下需求不确定的应急车辆路径问题

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The reasonable utilization of limited resources is critical to realize the sustainable developments. In the initial 72-h crucial rescue period after the disaster, emergency supplies have always been insufficient and the demands in the affected area have always been uncertain. In order to improve timeliness, utilization and sustainability of emergency service, the allocation of the emergency supplies and the emergency vehicle routes should be determined simultaneously. Assuming the uncertain demands follow normal distribution, an optimization model for the emergency vehicle routing, by considering the insufficient supplies and the uncertain demands, is developed. The objective function is applied to minimize the total costs, including the penalty costs induced by more or less supplies than the actual demands at all demand points, as well as the constraints of the time windows and vehicle load capacity taken into account. In more details, a solution method for the model, based on the genetic algorithm, is proposed, which solves the problem in two stages. A numerical example is presented to demonstrate the efficiency and validity of the proposed model and algorithm.
机译:合理利用有限的资源对于实现可持续发展至关重要。在灾难发生后的最初的72小时关键救援期内,紧急物资始终不足,受灾地区的需求始终不确定。为了提高应急服务的及时性,利用率和可持续性,应同时确定应急物资和应急车辆路线的分配。假设不确定需求遵循正态分布,考虑供应不足和不确定需求,建立了应急车辆路径优化模型。应用目标函数是为了使总成本最小化,包括在所有需求点上由比实际需求多或少的供应所引起的惩罚成本,以及对时间窗和车辆载重量的限制。更详细地,提出了一种基于遗传算法的模型求解方法,该方法可以分两个阶段解决。数值例子说明了所提模型和算法的有效性和有效性。

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