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Belt-conveyor based efficient parallel storage system design and travel time model analysis

机译:基于带式输送机的高效并行存储系统设计和行驶时间模型分析

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This paper presents a belt-conveyor based parallel storage system (PSS). Compared with the conventional AS/RS, it has advantages including more efficient utilisation of storage space, and faster storage and retrieval of products. The PSS consists of three components: the automated retrieval system (ARS), the automated storage system (ASS) and the compact storage rack (CSR). In the ARS, a vertical screw conveyor is used to facilitate the vertical movement of the unit loads, while a powered belt-conveyor is used for the horizontal dimension. Additionally, a powered conveyor system enables motion along the depth dimension, meaning each lane in the CSR is connected to several storage cells. Horizontal belt-conveyor and powered conveyor in the lane constitute cross-belt which causes the parallel process. On the other side of the rack, a unit load lift, a RGV lift, several rail-guided vehicles and a buffer rack constitute the ASS. Based on the system, we formulate separate travel-time models for ARS and ASS, under the assumption of randomised, uniformly distributed storage rack positions. Computer simulation with Matlab is used to validate the models, and optimise the automated storage system.
机译:本文介绍了一种基于皮带输送机的并行存储系统(PSS)。与传统的AS / RS相比,它具有优势,包括更有效地利用存储空间以及更快地存储和检索产品。 PSS由三个组件组成:自动检索系统(ARS),自动存储系统(ASS)和紧凑型存储架(CSR)。在ARS中,垂直螺旋输送机用于促进单位负载的垂直移动,而动力皮带输送机用于水平尺寸。此外,电动输送机系统可以沿深度方向运动,这意味着CSR中的每个通道都连接到几个存储单元。巷道中的水平皮带输送机和动力输送机构成交叉皮带,导致并行过程。在机架的另一侧,是由一个单元负载升降机,一个RGV升降机,几辆导轨车辆和一个缓冲机架组成的ASS。基于该系统,在随机,均匀分布的存储架位置的假设下,我们为ARS和ASS制定了单独的旅行时间模型。使用Matlab进行计算机仿真可验证模型并优化自动存储系统。

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