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Prototyping installation and commissioning of novel a cleaning robot by using virtual tools – lessons learned

机译:使用虚拟工具对新型清洁机器人进行原型安装和调试-经验教训

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This paper presents a simulation study in which virtual product development tools are used to support the design of a novel robotic cleaning solution for fish processing facilities. The installation and commissioning of complex equipment in these facilities are challenging owing to the unavailability of accurate spatial data of the facilities; this generally results in delays. Delays causing unplanned stops are particularly undesirable in fish processing plants because processing facilities produce fish five days a week throughout the year. In this study, virtual tools such as 3D-CAD and 3D-scanning are utilized in product development processes to develop virtual factory layouts; these are used for simulation. These virtual tools are aimed at reducing delays during installation and commissioning of complex products in fish processing plants. The results reveal that the application of 3D-scanning and simulation technology in virtual factory layouts can reduce the installation and commissioning time for retrofitting manufacturing equipment, which are important aspects for reducing the risk of bacterial contamination in fish processing facilities. The results also reveal that virtual factory layouts, 3D-scanning, and simulation may enable further research in fish processing facilities, e.g., simulating new fish processing concepts without intervention in operational fish processing plants. Simulation and 3D-scan data aids product development processes by reducing time and uncertainty and by discovering design errors at an early stage.
机译:本文提出了一项仿真研究,其中使用虚拟产品开发工具来支持用于鱼类加工设施的新型机器人清洁解决方案的设计。由于无法获得设施的准确空间数据,因此在这些设施中安装和调试复杂设备具有挑战性。这通常会导致延迟。在鱼类加工厂中,造成计划外停机的延迟是特别不希望的,因为加工厂一年四季都每周生产五天。在这项研究中,在产品开发过程中使用了3D-CAD和3D扫描等虚拟工具来开发虚拟工厂布局。这些用于仿真。这些虚拟工具旨在减少鱼品加工厂复杂产品的安装和调试过程中的延迟。结果表明,在虚拟工厂布局中应用3D扫描和仿真技术可以减少翻新制造设备的安装和调试时间,这对于降低鱼类加工设施中细菌污染的风险至关重要。结果还表明,虚拟工厂布局,3D扫描和模拟可以使对鱼类加工设施的进一步研究成为可能,例如,模拟新的鱼类加工概念而无需干预运营中的鱼类加工工厂。仿真和3D扫描数据通过减少时间和不确定性以及及早发现设计错误来辅助产品开发过程。

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