Traveling Salesman Problem with Optional Bonus Collection, Pickup Time and Passengers

J. G. L. Filho, M. Goldbarg, E. Goldbarg, V. A. Petch
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引用次数: 1

Abstract

This study introduces a variant of the Traveling Salesman Problem, named Traveling Salesman Problem with Optional Bonus Collection, Pickup Time and Passengers (PCVP-BoTc). It is a variant that incorporates elements of the Prize Collecting Traveling Salesman Problem and Ridesharing into the PCV. The objective is to optimize the revenue of the driver, which selectively defines which delivery or collection tasks to perform along the route. The economic effect of the collection is modeled by a bonus. The model can be applied to the solution of hybrid routing systems with route tasks and solidary transport. The driver, while performing the selected tasks, can give rides to persons who share route costs with him. Passengers are protected by restrictions concerning the maximum value they agree to pay for a ride and maximum travel duration. The activity of collecting the bonus in each locality demands a specific amount of time, affects the route duration, and is interconnected with the embarkment of passengers. Two mathematical formulations are presented for the problem and validated by a computational experiment using a solver. We propose four heuristic algorithms; three of them are hybrid metaheuristics. We tested the mathematical formulation implementations for 24 instances and the heuristic algorithms for 48.
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旅行推销员问题与可选的奖金收集,接送时间和乘客
本文引入了旅行推销员问题的一个变体,即具有可选奖金收集、接送时间和乘客的旅行推销员问题(PCVP-BoTc)。它是一个变体,结合了收集奖品旅行推销员问题和拼车到PCV的元素。目标是优化司机的收入,司机有选择地定义在路线上执行哪些交付或收集任务。收集的经济效果是通过奖金来模拟的。该模型可应用于具有路线任务和统一运输的混合路由系统的求解。司机在执行选定的任务时,可以让与他分担路线费用的人搭便车。乘客受到有关他们同意支付的最高车费和最长旅行时间的限制的保护。在每个地点收集奖金的活动需要特定的时间,影响路线的持续时间,并且与乘客的登船相关联。本文给出了该问题的两个数学公式,并通过求解器的计算实验进行了验证。我们提出了四种启发式算法;其中三个是混合元启发式。我们测试了24个实例的数学公式实现和48个实例的启发式算法。
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