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Competences of cyber physical systems engineers — Survey results

机译:网络物理系统工程师的能力—调查结果

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摘要

Cyber physical systems (CPS) consist of physical and cyber components seamlessly integrated with each other. Being a core and an essential component within the digitalization process, CPS are becoming pervasive in all spheres of modern society. Understanding CPS structures and associated functionalities requires a multidisciplinary body of knowledge and engineering capabilities. Moreover, they are laying on the edge of a broad spectrum of methodologies and technologies, from mechatronics, communication, control and automation to information technologies, which are penetrating each corner of the society. It is obvious from the lifecycle of CPS, i.e., life cycle of the physical-part and the digital thread of the cyber-part, that developers, operators and managers of CPS have to acquire an essential interdisciplinary engineering qualification and a combination of skills and competencies from many different disciplines, including social and psychological aspects, among others. In order to develop and implement an adequate educational programme, two major aspects have been analysed in this paper: (i) identification and understanding of the minimal set of multidisciplinary competencies and qualifications needed and (ii) identification and classification of the critical gaps in the existing engineering curricula. The analysis is based on the findings of a survey conducted in two IEEE conferences closely related to the engineering disciplines associated with CPS.
机译:网络物理系统(CPS)由彼此无缝集成的物理和网络组件组成。作为数字化过程中的核心和必不可少的组成部分,CPS在现代社会的各个领域中正日益普及。了解CPS结构和相关功能需要知识和工程能力的多学科体系。而且,它们正处于从机电一体化,通信,控制和自动化到信息技术的广泛方法和技术的边缘,这些方法和技术已渗透到社会的各个角落。从CPS的生命周期(即物理部分和网络部分的数字线程的生命周期)可以明显看出,CPS的开发人员,运营商和管理人员必须获得基本的跨学科工程学资格以及技能和技能的结合。来自许多不同学科的能力,包括社会和心理方面。为了制定和实施适当的教育计划,本文分析了两个主要方面:(i)识别和理解所需的最少的多学科能力和资格,以及(ii)识别和分类现有的工程课程。该分析基于在两次与CPS相关的工程学科密切相关的IEEE大会上进行的一项调查的结果。

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