Agent-based Order Release in Matrix-Structured Assembly Systems

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Schukat, E.; Rachner, J.; Maidl, A.; Göppert, A.; Adlon, T. et al.: Agent-based Order Release in Matrix-Structured Assembly Systems. In: Herberger, D.; Hübner, M. (Eds.): Proceedings of the Conference on Production Systems and Logistics: CPSL 2022. Hannover : publish-Ing., 2022, S. 652-661. DOI: https://doi.org/10.15488/12139

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Sum total of downloads: 482




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Abstract: 
The introduction of new variants and the difficulty of forecasting future market demand and developments aggravate the synchronisation of assembly lines. This ultimately leads to cycle time spreads and thus to efficiency losses, e.g. due to lower employee utilisation. In response, matrix-structured assembly systems have been developed as a concept of cycle time independent flow production. Essential characteristics of this type of assembly systems are the dissolution of both one-dimensionally arranged assembly stations as well as cycle times across assembly stations. In recent years, the focus has been on assembly control for the routing of orders through a matrix-structured assembly system. However, order release strategies have largely been neglected, which means that the actually promised performance of this new organisational form of assembly cannot be fulfilled. An agent-based release decision enables the optimal scheduling of new orders taking into account current information from the assembly system such as station states or the processing progress of orders that have already been released. This work extends and builds on existing agent-based approaches to control matrix-structured assembly systems in regard to order release. This results in a theoretical improvement in key performance indicators such as throughput time and station utilisation. For this purpose, the release process, as well as the associated calculation logics and constraints, are described and the implementation in an environmental model is outlined. An essential part of calculation logics is the prediction of all possible paths and capacity requirements resulting from routing and sequence flexibility. This work contributes to the practical realisation and economic operation of matrix-structured assembly systems.
License of this version: CC BY 3.0 DE
Document Type: BookPart
Publishing status: publishedVersion
Issue Date: 2022
Appears in Collections:Proceedings CPSL 2022
Proceedings CPSL 2022

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pos. country downloads
total perc.
1 image of flag of Germany Germany 327 67.84%
2 image of flag of United States United States 30 6.22%
3 image of flag of Russian Federation Russian Federation 21 4.36%
4 image of flag of Colombia Colombia 14 2.90%
5 image of flag of Pakistan Pakistan 12 2.49%
6 image of flag of France France 12 2.49%
7 image of flag of China China 11 2.28%
8 image of flag of Czech Republic Czech Republic 8 1.66%
9 image of flag of Italy Italy 5 1.04%
10 image of flag of United Kingdom United Kingdom 5 1.04%
    other countries 37 7.68%

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