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Essential challenges in motion control education

机译:运动控制教育中的基本挑战

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Smart mechatronic systems and applications with actively controlled moving elements face increasing demands on size, motion speed, precision, adaptability, self-diagnostic, connectivity, new cognitive features, etc. Fulfillment of these requirements is essential for building smart, safe and reliable production complexes. This, however, implies completely new demands on controlcurriculaof master degree students. The aim of this paper is to identify main gaps in motion control education and industrial practice with specific focus on multi-disciplinarity, i.e., contribute to a STEM education ecosystem.
机译:具有主动控制的运动元件的智能机电系统和应用面临着对尺寸,运动速度,精度,适应性,自我诊断,连通性,新的认知功能等不断增长的需求。满足这些要求对于构建智能,安全和可靠的生产基地至关重要。但是,这意味着对硕士生的控制课程提出了全新的要求。本文的目的是确定运动控制教育和工业实践中的主要差距,特别着重于多学科性,即为STEM教育生态系统做出贡献。

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