Autonomous Transport System With Taxi-Type Automated Guided Vehicles Based on Transport Density

Takuma Nakatani, Daiki Morikawa, N. Harada, T. Hirogaki, E. Aoyama
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Abstract

The importance of automated guided vehicles in flexible manufacturing systems is increasing because they can flexibly respond to changes in facilities and factory layouts. Herein, we propose an autonomous conveyance system for automated guided vehicles based on the operation of a taxi transportation system to solve indefinite and accidental problems. The system focuses on the application of traffic engineering knowledge to a flexible taxi transportation system. A taxi is a transport unit in a traffic system, with high adaptability to traveling routes and arrival/departure points. We also propose a task linear density based on transport density, which is an indicator of the scale of transport, such as that of rail transport. We evaluated the efficiency of an automated guided vehicle (AGV) transportation system that introduced waiting and cruising operations, which determine the taxi behavior, using the task linear density. The results indicate that the average matching time and task linear density were negatively correlated and that the transport efficiency improved when the P/Ds were frequently transported to a centralized location.
基于运输密度的出租车型自动导引车自主运输系统
自动导向车辆在柔性制造系统中的重要性正在增加,因为它们可以灵活地响应设施和工厂布局的变化。在此,我们提出一种基于计程车运输系统运作的自动导向车辆自主运输系统,以解决不确定性和偶然性问题。本系统的重点是将交通工程知识应用到灵活的出租车运输系统中。出租车是交通系统中的运输单元,对行驶路线和到达/出发点具有很高的适应性。我们还提出了一个基于运输密度的任务线性密度,运输密度是运输规模的一个指标,例如铁路运输的规模。我们利用任务线性密度评估了引入等待和巡航操作的自动引导车辆(AGV)运输系统的效率,这两个操作决定了出租车的行为。结果表明:平均匹配时间与任务线性密度呈负相关关系,频繁集中运输有利于提高运输效率;
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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