Smart manufacturing

Интеллектуальное производство
Andrew Kusiak
2017-07-14

Internet of Thingscyber-physical systemspredictive engineeringsmart manufacturingsustainable supply chains
Manufacturing has evolved and become more automated, computerised and complex. In this paper, the origin, current status and the future developments in manufacturing are disused. Smart manufacturing is an emerging form of production integrating manufacturing assets of today and tomorrow with sensors, computing platforms, communication technology, control, simulation, data intensive modelling and predictive engineering. It utilises the concepts of cyber-physical systems spearheaded by the internet of things, cloud computing, service-oriented computing, artificial intelligence and data science. Once implemented, these concepts and technologies would make smart manufacturing the hallmark of the next industrial revolution. The essence of smart manufacturing is captured in six pillars, manufacturing technology and processes, materials, data, predictive engineering, sustainability and resource sharing and networking. Material handling and supply chains have been an integral part of manufacturing. The anticipated developments in material handling and transportation and their integration with manufacturing driven by sustainability, shared services and service quality and are outlined. The future trends in smart manufacturing are captured in ten conjectures ranging from manufacturing digitisation and material-product-process phenomenon to enterprise dichotomy and standardisation.
1
Its technological foundation combines cyber-physical systems, the Internet of Things, cloud and service-oriented computing, artificial intelligence, and data science.
2
Material handling and supply chains are expected to integrate more closely with manufacturing through sustainability, shared services, and service-quality objectives.
3
Smart manufacturing integrates manufacturing assets with sensors, computing, communication, control, simulation, data-intensive modelling, and predictive engineering.
4
The framework is organized around six pillars: manufacturing technologies and processes, materials, data, predictive engineering, sustainability, and resource-sharing networks.
5
The paper identifies ten future smart-manufacturing conjectures spanning manufacturing digitization, material–product–process relationships, enterprise dichotomy, and standardization.

smart manufacturing as an integrated production system

its evolution, technological foundations, key pillars, material-handling and supply-chain integration, sustainability, and future development trends

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2017-07-14
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Andrew Kusiak
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