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An architectural design of control software for automated container terminals

机译:用于自动化集装箱码头的控制软件的体系结构设计

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Automation of handling equipment is a current trend in port container terminal. Because a large number of equipment of different types are involved in the handling operation, the structure of control software is highly complicated. This paper introduces an architectural design of control software and a simulation-based test-bed for testing various control rules of the control software. The suggested control system consists of a ship operation manager (SOM) and system controllers for automated guided vehicles (AGVs) and automated yard cranes (AYCs). A SOM is in charge of dispatching tasks to equipment for preplanned load/unload operations. System controllers assign equipment to the SOM and maintain the information about the location and the status of equipment. To test the control system and the operation methods of the suggested container terminal, an object-oriented simulation system was developed using Java. Using the simulation system, several operation-related issues were tested, including the postponement of dispatching decisions and the sequence rearrangement of AGVs entering transfer areas under quay cranes (QCs).
机译:装卸设备的自动化是港口集装箱码头的当前趋势。由于处理操作涉及大量不同类型的设备,因此控制软件的结构非常复杂。本文介绍了控制软件的体系结构设计和基于仿真的测试平台,用于测试控制软件的各种控制规则。建议的控制系统包括船舶操作管理器(SOM)和用于自动引导车(AGV)和自动堆场起重机(AYC)的系统控制器。 SOM负责将任务调度到设备,以进行预先计划的装载/卸载操作。系统控制器将设备分配给SOM,并维护有关设备位置和状态的信息。为了测试建议的集装箱码头的控制系统和操作方法,使用Java开发了一个面向对象的仿真系统。使用模拟系统,测试了几个与操作相关的问题,包括推迟调度决策和进入码头起重机(QC)下的转移区域的AGV的顺序重新安排。

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