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Virtual Fusion: Integrating Virtual Components into a Physical Manufacturing System

机译:虚拟融合:将虚拟组件集成到物理制造系统中

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Current manufacturing operations are increasingly pushed to boost profits through improved efficiency and quality. A common approach to enhance production is through the adoption of new machines, modified production schedules, and the integration of new products. Existing methods for validating the impact of these modifications either ignore the physical implementation challenges through only simulation-based analysis or require costly run off processes on the physical system. To mitigate these limitations, this paper presents a virtual fusion environment in which the physical and simulated systems are run simultaneously, enabling real-time analysis and integration of virtual parts within the physical manufacturing system. A virtual fusion filter is used to synchronize and augment input signals to a local controller to represent the physical effects of a given process on a virtual part within the physical system. Experimental results on a reconfigurable manufacturing test platform demonstrate the validity of the proposed approach.
机译:通过提高效率和质量,越来越多地推动当前的制造业务以提高利润。提高产量的常用方法是采用新机器,修改生产计划并集成新产品。用于验证这些修改的影响的现有方法要么仅通过基于仿真的分析就忽略了物理实施方面的挑战,要么需要在物理系统上进行昂贵的启动流程。为了减轻这些限制,本文提出了一个虚拟融合环境,在该环境中,物理和模拟系统可以同时运行,从而可以对物理制造系统中的虚拟零件进行实时分析和集成。虚拟融合滤波器用于同步和增强本地控制器的输入信号,以表示给定过程对物理系统内虚拟部分的物理影响。可重构制造测试平台上的实验结果证明了该方法的有效性。

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