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A simulation-based genetic algorithm approach for reducing emissions from import container pick-up operation at container terminal

机译:一种基于模拟的遗传算法,用于减少集装箱码头进口集装箱取货操作产生的排放

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摘要

Emissions from idle truck engines are a main source of pollution at container terminals. In this study, we focus on reducing such emission from waiting trucks as well as the related crane operations with a new truck arrival control method that gives individual truck limited time slots for entry. We develop a method to optimize the time slot assignment for individual trucks, aiming at minimizing total emissions from trucks and cranes at import yards. The method applies discrete event simulation to estimate total truck waiting times and crane moving distance, and then applies a genetic algorithm to minimize the generated emissions from these trucks and cranes. The experiment result shows that the truck arrivals should be controlled based on the stacking of import containers, and that such control is necessary for reducing truck idling emissions at a congested container terminal.
机译:空转卡车发动机的排放是集装箱码头污染的主要来源。在这项研究中,我们致力于通过一种新的卡车到达控制方法来减少等待卡车以及相关起重机操作产生的排放,该方法为单个卡车提供了有限的进入时间。我们开发了一种优化单个卡车的时隙分配的方法,旨在最大程度地减少进口场卡车和起重机的总排放量。该方法应用离散事件模拟来估计卡车的总等待时间和起重机的移动距离,然后应用遗传算法以最小化这些卡车和起重机产生的排放。实验结果表明,应根据进口集装箱的堆放情况来控制卡车的到站,这对于减少拥挤的集装箱码头的卡车空转排放是必要的。

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