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Vehicle routing problem with time windows having stochastic customers demands and stochastic service times: Modelling and solution

机译:车辆路由问题与时间窗户具有随机客户需求和随机服务时间:建模和解决方案

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On-time and foolproof demand satisfaction has gained attention in today's transportation and logistics industries due to their direct impact on business success. However, the uncertainty in customer's demand, travel times or service times make it difficult to achieve 100% accuracy of these objectives. In the present study, one such issue has been considered as vehicle routing problem with time windows having stochastic demands and stochastic service times. To address this problem, a mathematical model has been developed which tries to maximize customer's satisfaction and at the same time minimize total transportation cost. A modified ant colony system is proposed to solve the developed mathematical model. Numerical results on suitably modified datasets of Solomon benchmarks show that the proposed approach provides low cost solutions while maximizing the number of customers served and minimizing the penalties imposed due to late deliveries with little increase in total travelled distance. Certain penalties formulations provide several managerial insights to decision makers in the transportation industry. (C) 2019 Elsevier B.V. All rights reserved.
机译:随时和万无一失的需求满足在当今的运输和物流行业中受到关注,因为它们对业务成功的直接影响。然而,客户需求,旅行时间或服务时间的不确定性使得难以实现这些目标的100%准确性。在本研究中,一个这样的问题被视为具有随机需求和随机服务时间的时间窗口的车辆路由问题。为了解决这个问题,已经开发了一种数学模型,它试图最大限度地提高客户的满意度,同时最大限度地减少总运输成本。提出了一种改进的蚁群系统来解决开发的数学模型。 Solomon基准测试的适当改进的数据集上的数值结果表明,该方法提供了低成本解决方案,同时最大化客户数量,并最大限度地减少由于延迟交付而最大限度地施加的处罚,而且总旅行距离几乎没有增加。某些处罚制剂为交通行业的决策者提供了几个管理层。 (c)2019 Elsevier B.v.保留所有权利。

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