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Stowage decisions in multi-zone storage systems

机译:多区域存储系统中的积载决策

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The stowage decision determines how arriving products are distributed in a storage system or warehouse. In particular, we consider the zone-stowage decision for large warehouses that are organised into distinct storage zones. An example would be a multi-floor warehouse where each floor is a storage zone. Each storage zone has limited picking capacity; we want to stow the product inventory across the storage zones so as to be able to meet uncertain demand requirements with the limited picking capacity in each zone. Determining how to spread the inventory across the storage zones is the zone-stowage decision that we consider in this paper. With a simulation study, we identify two zone-stowage policies that are effective in balancing the picking workload across different storage zones. The first zone-stowage policy achieves a chaining-inspired allocation by splitting the received quantity for each product across two storage zones; the second zone-stowage policy explicitly tracks the expected workload for each storage zone, termed the velocity of the zone, and then stows arriving products to the storage zone with the smallest velocity.
机译:积载决策确定到达的产品如何在存储系统或仓库中分配。特别是,我们考虑将大型仓库组织成不同的存储区域的区域存储决策。一个例子是多层仓库,其中每个楼层都是一个存储区。每个存储区的拣选能力有限;我们希望在整个存储区域中存放产品库存,以便能够在每个区域的拣选能力有限的情况下满足不确定的需求要求。确定如何在存储区域之间分配库存是我们在本文中考虑的区域存储决策。通过模拟研究,我们确定了两个区域存储策略,它们在平衡不同存储区域的拣选工作量方面有效。第一个区域存储策略通过将每个产品的接收数量分配到两个存储区域中来实现链接启发式的分配。第二个区域存储策略明确跟踪每个存储区域的预期工作量(称为区域速度),然后将到达的产品以最小速度存储到存储区域。

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