Magnus Volkmann

dblp:240/9711 · DBLP profile ↗
← Back
3ranked-venue papers
0as first author
3since 2021 · last 2023
0000-0001-8870-4026ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Systems, architecture and hardware · 3 · 3 since 2021
YearPublicationVenuePosition
2023 Implementation of Asset Administration Shells in a Shared Production Scenario with Gaia-X
abstract
Flexibility, agility and resilience of value chains are becoming increasingly important. One possible approach to achieving these goals could be the paradigm of cloud manufacturing, especially the shared production scenario, where a federation of trusted partners dynamically share manufacturing capabilities, capacity, and services over digital interfaces throughout the product lifecycle. This includes an automated bidding procedure in a cross-enterprise network. The Capability, Service, Skill (CSS) model provides a common terminology for Industry 4.0 applications. The paper focuses on enabling a shared production based on the CSS model through the implementation of the Asset Administration Shell (AAS), the use of the Industry 4.0 Language (I4.0L) and Gaia-X. It shows what a centralized approach to shared production using these technologies could look like. The scenario of a negotiation process to find suitable manufacturers for a customized product is described, and the different concepts are assigned to the elaborated steps of the I4.0L bidding procedure. In addition, the required AAS and its Submodels are designed for each step of the bidding procedure. Based on the results, the necessary standardization needs are outlined.
Marco Simon, Simon Jungbluth, Abdullah Farrukh, Magnus Volkmann, Jesko Hermann, Martin Ruskowski
ETFA4
2023 Interaction between FeasibilityCheck, PreconditionCheck and SkillExecution in skill-based machining
abstract
In order to react more dynamically and flexibly to individual customer requirements, the concepts of skill-based engineering can also be applied in the field of machining. FeasibilityCheck, PreconditionCheck and SkillExecution have emerged as important basic components of complex manufacturing skills in order to be able to control skills usefully and efficiently, especially for machine tools. This paper describes the roles of each basic skill component in machining skills and shows how they can be used. Furthermore, the concept of IDs for referencing already given ParameterSets is evaluated for machining skills. A prototype implementation shows how these ParameterSetIDs can be used to efficiently interact with the basic skill components. The results show the fundamental sense of this separation of FeasibilityCheck, PreconditionCheck and SkillExecution and support the usefulness of using ParameterSetIDs.
Simon Lamoth, Magnus Volkmann, Jesko Hermann, Martin Ruskowski
ETFA3
2022 Dynamic Replanning using Multi-Agent Systems and Asset Administration Shells
abstract
To improve the fault tolerance of production systems against unforeseen events, modern production systems must be able to react more autonomously with suitable solutions to reach their goals. Such events within the company, e.g., resource breakdowns, require the possibility of internal replanning of the production schedule. Multi-Agent Systems (MAS) can provide this required flexibility. To enable standardized interaction for agents, a vendor-independent description of products and production equipment, as well as their capabilities and skills, must be developed. The Asset Administration Shell (AAS) provides the standardized meta-model to achieve this goal. In this paper, a product AAS and the submodel for the required production plan are designed. Moreover, the associated MAS and interaction for the execution and replanning of the production sequence are presented. The system is validated using an assembly use-case in the real-world demonstrator environment of the SmartFactoryKL. Combining the concepts of MAS with the standardized structures of the AAS, skills and capabilities tackles the problem of MAS to be deployed in different companies. This approach enables widespread use and scalability of MAS leveraging their advantages in terms of flexibility and efficient reconfiguration.
Simon Jungbluth, Jesko Hermann, William Motsch, Monireh Pourjafarian, Aleksandr Sidorenko, Magnus Volkmann, Kuno Zoltner, Christiane Plociennik, Martin Ruskowski
ETFA6