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An integrated simulation-optimization framework for the operational planning of seaport container terminals

机译:用于海港集装箱码头运营计划的集成仿真优化框架

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In this article the operational planning of seaport container terminals is considered by defining a suitable integrated framework in which simulation and optimization interact. The proposed tool is a simulation environment (implemented by using the Arena software) representing the dynamics of a container terminal. When the system faces some particular conditions (critical events), an optimization procedure integrated in the simulation tool is called. This means that the simulation is paused, an optimization problem is solved and the relative solution is an input for the simulation environment where some system parameters are modified (generally, the handling rates of some resources are changed). For this reason, in the present article we consider two modelling and planning levels about container terminals. The simulation framework, based on an appropriate discrete-event model, represents the dynamic behaviour of the terminal, thus it needs to be quite detailed and it is used as an operational planning tool. On the other hand, the optimization approach is devised in order to define some system parameters such as the resource handling rates; in this sense, it can be considered as a tool for tactical planning. The optimization procedure is based on an aggregate representation of the terminal where the dynamics is modelled by means of discrete-time equations.
机译:本文通过定义合适的集成框架来考虑海港集装箱码头的运营计划,在该框架中模拟和优化会相互影响。所提出的工具是一个模拟环境(通过使用Arena软件实现),它代表了集装箱码头的动态。当系统面临某些特定条件(紧急事件)时,将调用集成在仿真工具中的优化过程。这意味着仿真被暂停,解决了优化问题,相对的解决方案是仿真环境的输入,在仿真环境中修改了一些系统参数(通常会更改某些资源的处理率)。因此,在本文中,我们考虑关于集装箱码头的两个建模和规划级别。基于合适的离散事件模型的仿真框架代表了终端的动态行为,因此需要非常详细,并用作操作计划工具。另一方面,设计优化方法是为了定义一些系统参数,例如资源处理率。从这个意义上讲,它可以被视为战术计划的工具。优化过程基于终端的总体表示,其中通过离散时间方程对动力学进行建模。

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