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Travel time analysis of the dual command cycle in the split-platform AS/RS with I/O dwell point policy

机译:具有I / O驻留点策略的拆分平台AS / RS中双命令周期的运行时间分析

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摘要

In conventional automated storage and retrieval systems (AS/RS), storage and retrieval (S/R) machine travels simultaneously in the horizontal and vertical directions. However, S/R machine cannot support overly heavy loads, such as sea containers, so a new AS/RS, called split-platform AS/RS (SP-AS/RS), was introduced and studied in recent years. The SP-AS/RS employs vertical and horizontal platforms, which move independently, and are capable of handling heavy loads. The vertical platform which represents an elevator (or lift) with the elevator's lifting table carries the load up and down among different tiers and the horizontal platform which represents the shuttle carrier or the shuttle vehicle can access all cells of the tier in which it belongs to. Single command cycle (SC) and dual command cycle (DC) are two main operating modes in AS/RSs. However, travel time models in all previous articles related to the SP-AS/RS are only for the SC. In this study, we first present a continuous travel time model for the DC in the SP-AS/RS under input and output (I/O) dwell point policy and validate its accuracy by computer simulations. Our model and simulation results both show that the square-in-time rack incurs the smallest expected travel time. After comparing with the existing model for the SC, we find that the DC is better than the SC in terms of the expected travel time.
机译:在常规的自动存储和检索系统(AS / RS)中,存储和检索(S / R)机器同时在水平和垂直方向上行驶。但是,S / R机器无法支撑诸如海运集装箱之类的超重负载,因此近年来引入并研究了一种新的AS / RS,称为拆分平台AS / RS(SP-AS / RS)。 SP-AS / RS使用垂直和水平平台,它们独立移动并能够处理重物。代表电梯(或升降机)的垂直平台以及电梯的升降台在不同层之间上下载,而代表穿梭车或穿梭车的水平平台可以访问其所属层的所有单元。单命令周期(SC)和双命令周期(DC)是AS / RS中的两个主要操作模式。但是,先前所有与SP-AS / RS相关的文章中的旅行时间模型仅适用于SC。在这项研究中,我们首先提出在输入和输出(I / O)停留点策略下,SP-AS / RS中DC的连续旅行时间模型,并通过计算机仿真验证其准确性。我们的模型和仿真结果均表明,时间平方架产生的预期旅行时间最小。与SC的现有模型进行比较后,我们发现DC在预期的行驶时间方面比SC更好。

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