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A multi-tier linking approach to analyze performance of autonomous vehicle-based storage and retrieval systems

机译:一种多层链接方法,可分析基于自动车辆的存储和检索系统的性能

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To improve operational flexibility, throughput capacity, and responsiveness in order fulfillment operations, several distribution centers are implementing autonomous vehicle-based storage and retrieval system (AVS(RS) in their high-density storage areas. In such systems, vehicles are self-powered to travel in horizontal directions (x- and y- axes), and use lifts or conveyors for vertical motion (z-axis). In this research, we propose a multi-tier queuing modeling framework for the performance analysis of such vehicle-based warehouse systems. We develop an embedded Markov chain based analysis approach to estimate the first and second moment of inter-departure times from the load-dependent station within a semi-open queuing network. The linking solution approach uses traffic process approximations to analyze the performance of sub-models corresponding to individual tiers (semi-open queues) and the vertical transfer units (open queues). These sub-models are linked to form an integrated queuing network model, which is solved using an iterative algorithm. Performance estimates such as expected transaction cycle times and resource (vehicle and vertical transfer unit) utilization are determined using this algorithm, and can be used to evaluate a variety of design configurations during the conceptualization phase. (C) 2017 Elsevier Ltd. All rights reserved.
机译:为了提高订单执行操作的灵活性,吞吐能力和响应能力,一些配送中心正在其高密度存储区域中实施基于车辆的自动存储和检索系统(AVS(RS)),在这种系统中,车辆是自供电的在水平方向(x轴和y轴)上运行,并使用升降机或传送带进行垂直运动(z轴)。在本研究中,我们提出了多层排队建模框架来对这种基于车辆的性能进行分析我们开发了一种基于嵌入式马尔可夫链的分析方法,以估计半开放排队网络中与负载有关的站点的出发时间的第一和第二时刻,链接解决方案方法使用交通过程近似值来分析性能对应于各个层(半开放队列)和垂直传输单元(开放队列)的子模型这些子模型被链接以形成一个集成队列网络模型,使用迭代算法求解。使用此算法可以确定性能估计值,例如预期的交易周期时间和资源(车辆和垂直传输单元)的利用率,并且可以在概念化阶段用于评估各种设计配置。 (C)2017 Elsevier Ltd.保留所有权利。

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