首页> 外文会议>ASME international manufacturing science and engineering conference >HIERARCHICAL DECOMPOSITION OF A MANUFACTURING WORK CELL TO PROMOTE MONITORING, DIAGNOSTICS, AND PROGNOSTICS
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HIERARCHICAL DECOMPOSITION OF A MANUFACTURING WORK CELL TO PROMOTE MONITORING, DIAGNOSTICS, AND PROGNOSTICS

机译:制造工作单元的层次分解,以促进监视,诊断和代言

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Manufacturing work cell operations are typically complex, especially when considering machine tools or industrial robot systems. The execution of these manufacturing operations require the integration of layers of hardware and software. The integration of monitoring, diagnostic, and prognostic technologies (collectively known as prognostics and health management (PHM)) can aid manufacturers in maintaining the performance of machine tools and robot systems by providing intelligence to enhance maintenance and control strategies. PHM can improve asset availability, product quality, and overall productivity. It is unlikely that a manufacturer has the capability to implement PHM in every element of their system. This limitation makes it imperative that the manufacturer understand the complexity of their system. For example, a typical robot systems include a robot, end-effector(s), and any equipment, devices, or sensors required for the robot to perform its task. Each of these elements is bound, both physically and functionally, to one another and thereby holds a measure of influence. This paper focuses on research to decompose a work cell into a hierarchical structure to understand the physical and functional relationships among the system's critical elements. These relationships will be leveraged to identify areas of risk, which would drive a manufacturer to implement PHM within specific areas.
机译:制造工作单元的操作通常很复杂,尤其是在考虑机床或工业机器人系统时。这些制造操作的执行需要硬件和软件层的集成。监视,诊断和预测技术(统称为预测和健康管理(PHM))的集成可以通过提供增强维护和控制策略的情报来帮助制造商维持机床和机器人系统的性能。 PHM可以提高资产可用性,产品质量和整体生产率。制造商不太可能具有在其系统的每个元素中实施PHM的能力。此限制使得制造商必须了解其系统的复杂性。例如,典型的机器人系统包括机器人,末端执行器以及机器人执行其任务所需的任何设备,设备或传感器。这些要素中的每一个在物理上和功能上都相互绑定,因此具有一定的影响力。本文专注于将工作单元分解为分层结构的研究,以了解系统关键元素之间的物理和功能关系。这些关系将被用来识别风险区域,这将驱使制造商在特定区域内实施PHM。

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