National Repository of Grey Literature 3 records found  Search took 0.00 seconds. 
Asset Administration Shell for the operator
Houdek, Vojtěch ; Kaczmarczyk, Václav (referee) ; Baštán, Ondřej (advisor)
This bachelor thesis deals with the topic of AAS (asset administration shell), an element of industry 4.0. The first half of the work consists of a theoretical analysis of the concept of AAS and its active and passive parts. The second half is devoted to the practical design and implementation of AAS for the operator. The implementation of the communication architecture and the selection of suitable Hardware for AAS are addressed here. The resulting implementation deals with programming the active and passive part of AAS in C/C ++ and mobile applications in Android Studio using the programming language Kotlin
An Asset Administration Shell of Industry 4.0 Components
Pečinka, Tomáš ; Zezulka, František (referee) ; Marcoň, Petr (advisor)
This bachelor thesis focuses on decentralized industrial control using Asset Administration Shell (AAS). The theoretical part of the thesis introduces the reader to the concepts of Industry 4.0 and explains the structure and methods of creating AAS. It also describes a research of available software platforms for AAS development and a description of communication between AAS. The second half of the paper is devoted to the design of a practical demonstrator that serves to illustrate decentralized control in practice. The design of the hardware and software parts of the demonstrator and the approach to creating individual AASs are described. The resulting demonstrator consists of two 3D printers, an customer e-shop and a smart warehouse. AAS for these components are created in programming language Python.
Asset Administration Shell for the operator
Houdek, Vojtěch ; Kaczmarczyk, Václav (referee) ; Baštán, Ondřej (advisor)
This bachelor thesis deals with the topic of AAS (asset administration shell), an element of industry 4.0. The first half of the work consists of a theoretical analysis of the concept of AAS and its active and passive parts. The second half is devoted to the practical design and implementation of AAS for the operator. The implementation of the communication architecture and the selection of suitable Hardware for AAS are addressed here. The resulting implementation deals with programming the active and passive part of AAS in C/C ++ and mobile applications in Android Studio using the programming language Kotlin

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