首页> 外文期刊>CIRP Journal of Manufacturing Science and Technology >Biomimetics applied to factory layout planning: Fibonacci based patterns, spider webs and nautilus shell as bio-inspiration to reduce internal transport costs in factories
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Biomimetics applied to factory layout planning: Fibonacci based patterns, spider webs and nautilus shell as bio-inspiration to reduce internal transport costs in factories

机译:仿生学应用于工厂布局规划:基于斐波那契的图案,蜘蛛网和鹦鹉螺壳作为生物灵感,可降低工厂内部的运输成本

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This paper presents a novel bio-inspired approach to assign operational resources (OR's) like machines, workstations and departments within factory layouts. We investigated the structures and growth processes of the nautilus shell (Nautilus macromphalus) and found that these biological principles and structures help to enhance the allocation of operational resources within factory layouts. Furthermore, we investigated input-output-processes in nature, especially the webs of orb-weaver spiders (Araneidae), to mimic the pattern for factory layouts. In addition, the hunting behaviour of the spider was examined and imitated. To prove the feasibility of the proposed methodology, the first step was to collect material flow data from three Austrian factories. We implemented the original factory layouts within our model as reference. As second step, we applied traditional logistical methods for layout planning according to theory. In a third step, we applied our nautilus shell and spider web layout approach to arrange the material flow system of the three factories. After examining 21 different variants, we found that our bio-inspired approaches were able to keep up with traditional layouts, and in the 3rd factory, one biomimetical approach could even beat the best traditional layout by 13.6%.
机译:本文提出了一种新颖的,受生物启发的方法,可在工厂布局内分配机器,工作站和部门等运营资源(OR)。我们研究了鹦鹉螺壳(鹦鹉螺)的结构和生长过程,发现这些生物学原理和结构有助于增强工厂布局内的运营资源分配。此外,我们研究了自然界中的输入-输出过程,尤其是球形编织蜘蛛(蜘蛛科)的网,以模仿工厂布局的图案。另外,检查并模仿了蜘蛛的狩猎行为。为了证明该方法的可行性,第一步是从三个奥地利工厂收集物料流数据。我们在模型中实现了原始工厂布局,以作为参考。第二步,我们根据理论将传统的物流方法应用于布局规划。在第三步中,我们应用了鹦鹉螺贝壳和蜘蛛网布局方法来布置这三个工厂的物料流系统。在检查了21种不同的变体之后,我们发现我们的生物启发方法能够与传统布局保持一致,在第三工厂中,一种生物模仿方法甚至可以比最佳传统布局高13.6%。

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