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Robotics in order picking: evaluating warehouse layouts for pick, place, and transport vehicle routing systems

机译:机器人拣选:评估仓库布局,用于挑选,放置和运输车辆路由系统

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摘要

Motivated by recent technological advances in mobile robotics, this paper explores a novel approach for warehouse order picking. In particular, this work considers two types of commercially available mobile robots - one that can grasp items from a shelf (a picker) and another (a transporter) that can quickly deliver all items from the pick list to the packing station. A new vehicle routing problem is defined which seeks to minimise the time to deliver all items from a pick list to the packing station, a problem termed the pick, place, and transport vehicle routing problem. A mixed integer linear programming formulation is developed to answer three related research questions. First, what combination of picker and transport robots is required to obtain performance exceeding traditional human-based picking operations? Second, how should the composition of the robot fleet be altered to affect the greatest performance improvements? Finally, what are the impacts of warehouse layout designs when coordinated mobile robots are deployed? An extensive numerical analysis reveals that, (1) increasing the number of cross aisles decreases system performance; (2) centrally located packing stations improve system performance; and (3) the average distance from each pick location to the packing station and the average distance between pick locations are effective metrics for identifying specific fleet modifications that are likely to yield system improvements.
机译:本文探讨了移动机器人技术进步的最新技术进步,探讨了仓库订单采摘的新方法。特别是,这项工作考虑了两种类型的市售移动机器人 - 一种可以掌握来自架子(拾取器)的物品和另一个(传送器),可以快速将所有物品从拣选列表迅速传送到包装站。定义了一种新的车辆路由问题,该问题旨在最大限度地减少将所有项目从选择列表传送到包装站的时间,所谓的选择,放置和传输车辆路由问题。开发了一种混合整数线性规划制剂以应对三个相关的研究问题。首先,需要采摘机器和运输机器人的组合来获得超过传统的基于人的采摘操作的性能?第二,如何改变机器人舰队的组成如何影响最大的性能改进?最后,在部署协调移动机器人时,仓库布局设计的影响是什么?广泛的数值分析显示,(1)增加横向通道的数量会降低系统性能; (2)集中的包装站改善了系统性能; (3)从每个拣选位置到包装站的平均距离以及选择位置之间的平均距离是用于识别可能产生系统改进的特定车队修改的有效度量。

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