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Heavy traffic analysis of a single vehicle loop in an automated storage and retrieval system

机译:自动存储和检索系统中单个车辆环路的大流量分析

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We consider an automated storage/retrieval system in which cargo moves between the storage/retrieval machines and the system entrance/exit stations through a single automated vehicle loop. Past studies indicated that the cargo waiting time in the loop is affected by the dispatching rules, which govern the sequence of the cargo to be handled. In this paper, we show that the loop configuration, which has received little research attention, also has a big impact on the cargo waiting time. When the first-come-first-served dispatching rule is used, we derive the relationship between the number of stations and the ratio of the average cargo retrieval time to the average cargo storage time. When the first-encountered-first-served dispatching rule is used, we show that even the arrangement of the input channel and the output channel of a station can have significant impact on the cargo waiting time. Furthermore, we derive a formula for the vehicle visit rate for each station under heavy traffic conditions. This formula helps to explain the phenomenon that the waiting times at different stations can be very different even when the loop is symmetrically designed and the cargo arrival rates to the stations are similar. In addition to analytical models, we use simulations to evaluate the performance of different loop configurations. Our research suggests that a substantial improvement can be achieved by making proper adjustments to the loop configuration.
机译:我们考虑一种自动存储/取回系统,其中货物通过单个自动车辆回路在存储/取回机器与系统进/出站之间移动。过去的研究表明,回路中的货物等待时间受调度规则的影响,后者决定了要处理的货物的顺序。在本文中,我们表明,受到很少研究关注的环路配置对货物等待时间也有很大影响。当使用先到先得的调度规则时,我们得出站数与平均货物提取时间与平均货物存储时间之比之间的关系。当使用“先遇先服务”调度规则时,我们表明,即使一个站的输入通道和输出通道的安排也会对货物的等待时间产生重大影响。此外,我们导出了在交通繁忙的情况下每个站点的车辆访问率的公式。该公式有助于解释以下现象:即使环路是对称设计的,到达不同站点的货物到达率相似,在不同站点的等待时间也可能非常不同。除了分析模型外,我们还使用仿真来评估不同回路配置的性能。我们的研究表明,通过对环路配置进行适当的调整可以实现实质性的改进。

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