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Mathematical models for Multi Container Loading Problems with practical constraints

机译:具有实际约束的多集装箱装载问题的数学模型

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We address the multi container loading problem of a company that serves its customers' orders by building pallets with the required products and loading them into trucks. The problem is solved by using integer linear models. To be useful in practice, our models consider three types of constraints: geometric constraints, so that pallets lie completely inside the trucks and do not overlap; weight constraints, defining the maximum weights supported by a truck and by each axle, as well as the position of the centre of gravity of the cargo; and dynamic stability constraints. These last constraints forbid empty spaces between pallets to avoid cargo displacement when the truck is moving, and limit differences between the heights of adjacent pallets to prevent tall pallets tipping over short ones. We also consider extensions of the models to the case of heavy loads, requiring a special configuration of the pallets in the truck, and to the case in which the orders must be served over a set of time periods to meet delivery dates. The computational study that we performed on a large number of real instances with up to 44 trucks shows that the proposed models are able to obtain optimal solutions in most cases and very small gaps when optimality could not be proven.
机译:我们解决了一家公司的多集装箱装载问题,该公司通过用所需产品建造托盘并将其装载到卡车中来满足客户的订单。通过使用整数线性模型可以解决该问题。为了在实践中有用,我们的模型考虑了三种约束:几何约束,以便货盘完全位于卡车内部且不会重叠;重量限制,定义了卡车和每个车轴支撑的最大重量以及货物重心的位置;和动态稳定性约束。这些最后的约束条件是禁止在托盘之间留有空的空间,以避免在卡车移动时货物移位,并限制相邻托盘的高度之间的差异,以防止高托盘倾倒在较短的托盘上。我们还考虑将模型扩展到重载的情况下,要求对卡车中的托盘进行特殊配置,并考虑到必须在一定时间范围内交付订单才能满足交货日期的情况。我们对多达44辆卡车的大量实际实例进行的计算研究表明,所提出的模型能够在大多数情况下获得最优解,而在无法证明最优性的情况下,差距很小。

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