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Mixed Integer Programming Models on Scheduling Automated Stacking Cranes

机译:混合整数编程模型,以安排自动堆叠起重机

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Automated deep-sea container terminals are the main hubs to move millions of containers in today's global supply chains. Terminal operators often decouple the landside and waterside operations by stacking containers in stacks perpendicular to the quay. Traditionally, a single automated stacking cranes (ASC) is deployed at each stack to handle containers. A recent trend is to use new configurations with more than one crane to improve efficiency. A variety of new configurations have been implemented, such as twin, double, and triple ASCs. In this paper, the authors explore and review the mixed integer programming models that have been developed for the stacking operations of these new configurations. They further discuss how these models can be extended to contemplate diverse operational constraints including precedence constraints, interference constraints, and other objective functions.
机译:自动深海集装箱终端是在当今全球供应链中移动数百万个容器的主要枢纽。 终端操作员经常通过将容器堆叠在垂直于码头的堆栈中,使陆地和水边操作分离。 传统上,在每个堆栈中部署了一个自动堆叠起重机(ASC)以处理容器。 最近的趋势是使用具有多个起重机的新配置来提高效率。 已经实施了各种新配置,例如Twin,Double和Triple ASC。 在本文中,作者探索和回顾为这些新配置的堆叠操作开发的混合整数编程模型。 他们进一步讨论如何将这些模型扩展到考虑各种操作约束,包括优先限制,干扰约束和其他目标功能。

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