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INTEGRATING INTELLIGENCE AND KNOWLEDGE OF HUMAN FACTORS TO FACILITATE COLLABORATION IN MANUFACTURING

机译:整合人类因素的情报和知识,以促进制造业的合作

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The implementation of automation has become a common occurrence in recent years, and automated robotic systems are actively used in many manufacturing processes. However, fully automated manufacturing systems are far less common, and human operators remain prevalent. The resulting scenario is one where human and robotic operators work in close proximity, and directly affect the behavior of one another. Conversely to their robotic counterparts, human beings do not share the same level of repeatability or accuracy, and as such can be a source of uncertainty in such processes. Concurrently, the emergence of intelligent manufacturing has presented opportunities for adaptability within robotic control. This work examines relevant human factors and develops a learning model to examine how to utilize this knowledge and provide appropriate adaptability to robotic elements, with the intention of improving collaborative interaction with human colleagues, and optimized performance. The work is supported by an example case-study, which explores the application of such a control system, and its performance in a real-world production scenario.
机译:近年来,自动化的实施已成为常见的发生,并且在许多制造过程中积极使用自动机器人系统。然而,全自动制造系统远不太普遍,人类运营商仍然普遍存在。由此产生的情况是人类和机器人运算符在密切接近工作的情况,并直接影响彼此的行为。相反,他们的机器人对应物,人类不共享相同的重复性或准确性,因此可以成为这些过程中不确定性的来源。同时,智能制造的出现为机器人控制的适应性提出了机会。这项工作审查了相关的人类因素,并开发了一个学习模型,以检查如何利用这些知识,并为机器人元素提供适当的适应性,以提高与人类同事的合作互动,以及优化的性能。该工作得到了一个例子案例研究,该研究探讨了这种控制系统的应用,以及在真实的生产方案中的性能。

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