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Development and simulation analysis of real-time, dual-load yard truck control systems for seaport container transshipment terminals

机译:港口集装箱转运码头实时双载货场卡车控制系统的开发和仿真分析

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摘要

We show how a seaport container terminal’s long-run average quay crane rate depends on the system that automatically assigns yard trucks to container transportation jobs in the terminal in real time. Several real-time, dual-load yard truck control systems are proposed and evaluated by a fully-integrated, discrete event simulation model of a vessel-to-vessel transshipment terminal. The model is designed to reproduce the microscopic, stochastic, real-time environment at a multiple-berth facility. Overall, the literature still lacks a comprehensive analysis that (1) considers different methods for controlling dual-load vehicles in real time within a fully-integrated, stochastic container terminal environment and (2) compares them in terms of an absolute global performance measure such as average quay crane rate. This paper provides such an analysis.
机译:我们展示了海港集装箱码头的长期平均码头起重机率如何取决于实时自动将堆场卡车分配给码头中的集装箱运输工作的系统。提出了几种实时,双负载的堆场卡车控制系统,并通过船对船转运码头的完全集成的离散事件仿真模型进行了评估。该模型旨在重现多泊位设施的微观,随机,实时环境。总体而言,文献仍缺乏全面的分析:(1)考虑在完全集成的随机集装箱码头环境中实时控制双载车辆的不同方法,(2)在绝对全球性能指标方面进行比较作为平均码头起重机率。本文提供了这样的分析。

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