Basis for the model-driven engineering of manufacturing execution systems: Modeling elements in the domain of beer brewing
Manufacturing execution systems (MES) are process-oriented IT solutions that collect and manage information from manufacturing processes to improve transparency. Owing to the considerable programming effort required for the implementation of custom systems for specific production processes, investin...
Ausführliche Beschreibung
Autor*in: |
Chen, Xinyu [verfasserIn] Gemein, Fabian [verfasserIn] Flad, Stefan [verfasserIn] Voigt, Tobias [verfasserIn] |
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Format: |
E-Artikel |
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Sprache: |
Englisch |
Erschienen: |
2018 |
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Schlagwörter: |
Informationstechnik / Industrie 4.0 / Automatisierte Produktion / Computerunterstützung |
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Schlagwörter: |
Übergeordnetes Werk: |
Enthalten in: Computers in industry - Amsterdam [u.a.] : Elsevier Science, 1979, 101, Seite 127-137 |
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Übergeordnetes Werk: |
volume:101 ; pages:127-137 |
DOI / URN: |
10.1016/j.compind.2018.07.005 |
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Katalog-ID: |
ELV000519030 |
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245 | 1 | 0 | |a Basis for the model-driven engineering of manufacturing execution systems: Modeling elements in the domain of beer brewing |
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520 | |a Manufacturing execution systems (MES) are process-oriented IT solutions that collect and manage information from manufacturing processes to improve transparency. Owing to the considerable programming effort required for the implementation of custom systems for specific production processes, investing in MES is not an option for many food and beverage manufacturers. Model-driven engineering (MDE) is one solution for reducing the implementation costs involved in custom systems. However, a concrete MDE approach that fulfills the requirements of the food and beverage industry has not yet been established for MES. With this background, this paper introduces an MDE approach for MES and focuses on the first step in implementing this approach by defining the modeling elements of MES functions that enable the automatic transformation from models into an operational MES. The modeling elements are defined for the four components of an MES solution: the plant model illustrating the technical systems, the process model describing the production processes, the MES function model representing the required MES functions and the report model showing the results of MES functions. A use case in the domain of beer brewing is presented to evaluate the proposed approach. This use case demonstrates the feasibility and suitability of predefined modeling elements in the modeling phase for automatic MES generation. | ||
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650 | 4 | |a Model-driven engineering | |
650 | 4 | |a Manufacturing execution systems | |
650 | 4 | |a Food industry | |
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10.1016/j.compind.2018.07.005 doi (DE-627)ELV000519030 (ELSEVIER)S0166-3615(18)30095-2 DE-627 ger DE-627 rda eng 54.80 bkl 50.03 bkl Chen, Xinyu verfasserin aut Basis for the model-driven engineering of manufacturing execution systems: Modeling elements in the domain of beer brewing 2018 nicht spezifiziert zzz rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Manufacturing execution systems (MES) are process-oriented IT solutions that collect and manage information from manufacturing processes to improve transparency. Owing to the considerable programming effort required for the implementation of custom systems for specific production processes, investing in MES is not an option for many food and beverage manufacturers. Model-driven engineering (MDE) is one solution for reducing the implementation costs involved in custom systems. However, a concrete MDE approach that fulfills the requirements of the food and beverage industry has not yet been established for MES. With this background, this paper introduces an MDE approach for MES and focuses on the first step in implementing this approach by defining the modeling elements of MES functions that enable the automatic transformation from models into an operational MES. The modeling elements are defined for the four components of an MES solution: the plant model illustrating the technical systems, the process model describing the production processes, the MES function model representing the required MES functions and the report model showing the results of MES functions. A use case in the domain of beer brewing is presented to evaluate the proposed approach. This use case demonstrates the feasibility and suitability of predefined modeling elements in the modeling phase for automatic MES generation. 1.1\x Informationstechnik (DE-2867)16757-5 stw 1.2\x Industrie 4.0 (DE-2867)30177-6 stw 1.3\x Automatisierte Produktion (DE-2867)12730-3 stw 1.4\x Computerunterstützung (DE-2867)19661-3 stw Model-driven engineering Manufacturing execution systems Food industry Modeling of MES Industry standards Gemein, Fabian verfasserin (orcid)0000-0002-1113-9724 aut Flad, Stefan verfasserin aut Voigt, Tobias verfasserin aut Enthalten in Computers in industry Amsterdam [u.a.] : Elsevier Science, 1979 101, Seite 127-137 Online-Ressource (DE-627)320415767 (DE-600)2001900-2 (DE-576)094056633 0166-3615 nnns volume:101 pages:127-137 GBV_USEFLAG_U SYSFLAG_U GBV_ELV GBV_ILN_20 GBV_ILN_22 GBV_ILN_23 GBV_ILN_24 GBV_ILN_31 GBV_ILN_32 GBV_ILN_40 GBV_ILN_60 GBV_ILN_62 GBV_ILN_63 GBV_ILN_65 GBV_ILN_69 GBV_ILN_70 GBV_ILN_73 GBV_ILN_74 GBV_ILN_90 GBV_ILN_95 GBV_ILN_100 GBV_ILN_105 GBV_ILN_110 GBV_ILN_150 GBV_ILN_151 GBV_ILN_224 GBV_ILN_370 GBV_ILN_602 GBV_ILN_702 GBV_ILN_2003 GBV_ILN_2004 GBV_ILN_2005 GBV_ILN_2006 GBV_ILN_2008 GBV_ILN_2010 GBV_ILN_2011 GBV_ILN_2014 GBV_ILN_2015 GBV_ILN_2020 GBV_ILN_2021 GBV_ILN_2025 GBV_ILN_2027 GBV_ILN_2034 GBV_ILN_2038 GBV_ILN_2044 GBV_ILN_2048 GBV_ILN_2049 GBV_ILN_2050 GBV_ILN_2056 GBV_ILN_2059 GBV_ILN_2061 GBV_ILN_2064 GBV_ILN_2065 GBV_ILN_2068 GBV_ILN_2088 GBV_ILN_2111 GBV_ILN_2112 GBV_ILN_2113 GBV_ILN_2118 GBV_ILN_2122 GBV_ILN_2129 GBV_ILN_2143 GBV_ILN_2147 GBV_ILN_2148 GBV_ILN_2152 GBV_ILN_2153 GBV_ILN_2190 GBV_ILN_2336 GBV_ILN_2470 GBV_ILN_2507 GBV_ILN_2522 GBV_ILN_4035 GBV_ILN_4037 GBV_ILN_4112 GBV_ILN_4125 GBV_ILN_4126 GBV_ILN_4242 GBV_ILN_4251 GBV_ILN_4305 GBV_ILN_4313 GBV_ILN_4322 GBV_ILN_4323 GBV_ILN_4324 GBV_ILN_4325 GBV_ILN_4326 GBV_ILN_4333 GBV_ILN_4334 GBV_ILN_4335 GBV_ILN_4338 GBV_ILN_4393 54.80 Angewandte Informatik 50.03 Methoden und Techniken der Ingenieurwissenschaften BIZ-09001 SKW AR 101 127-137 |
spelling |
10.1016/j.compind.2018.07.005 doi (DE-627)ELV000519030 (ELSEVIER)S0166-3615(18)30095-2 DE-627 ger DE-627 rda eng 54.80 bkl 50.03 bkl Chen, Xinyu verfasserin aut Basis for the model-driven engineering of manufacturing execution systems: Modeling elements in the domain of beer brewing 2018 nicht spezifiziert zzz rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Manufacturing execution systems (MES) are process-oriented IT solutions that collect and manage information from manufacturing processes to improve transparency. Owing to the considerable programming effort required for the implementation of custom systems for specific production processes, investing in MES is not an option for many food and beverage manufacturers. Model-driven engineering (MDE) is one solution for reducing the implementation costs involved in custom systems. However, a concrete MDE approach that fulfills the requirements of the food and beverage industry has not yet been established for MES. With this background, this paper introduces an MDE approach for MES and focuses on the first step in implementing this approach by defining the modeling elements of MES functions that enable the automatic transformation from models into an operational MES. The modeling elements are defined for the four components of an MES solution: the plant model illustrating the technical systems, the process model describing the production processes, the MES function model representing the required MES functions and the report model showing the results of MES functions. A use case in the domain of beer brewing is presented to evaluate the proposed approach. This use case demonstrates the feasibility and suitability of predefined modeling elements in the modeling phase for automatic MES generation. 1.1\x Informationstechnik (DE-2867)16757-5 stw 1.2\x Industrie 4.0 (DE-2867)30177-6 stw 1.3\x Automatisierte Produktion (DE-2867)12730-3 stw 1.4\x Computerunterstützung (DE-2867)19661-3 stw Model-driven engineering Manufacturing execution systems Food industry Modeling of MES Industry standards Gemein, Fabian verfasserin (orcid)0000-0002-1113-9724 aut Flad, Stefan verfasserin aut Voigt, Tobias verfasserin aut Enthalten in Computers in industry Amsterdam [u.a.] : Elsevier Science, 1979 101, Seite 127-137 Online-Ressource (DE-627)320415767 (DE-600)2001900-2 (DE-576)094056633 0166-3615 nnns volume:101 pages:127-137 GBV_USEFLAG_U SYSFLAG_U GBV_ELV GBV_ILN_20 GBV_ILN_22 GBV_ILN_23 GBV_ILN_24 GBV_ILN_31 GBV_ILN_32 GBV_ILN_40 GBV_ILN_60 GBV_ILN_62 GBV_ILN_63 GBV_ILN_65 GBV_ILN_69 GBV_ILN_70 GBV_ILN_73 GBV_ILN_74 GBV_ILN_90 GBV_ILN_95 GBV_ILN_100 GBV_ILN_105 GBV_ILN_110 GBV_ILN_150 GBV_ILN_151 GBV_ILN_224 GBV_ILN_370 GBV_ILN_602 GBV_ILN_702 GBV_ILN_2003 GBV_ILN_2004 GBV_ILN_2005 GBV_ILN_2006 GBV_ILN_2008 GBV_ILN_2010 GBV_ILN_2011 GBV_ILN_2014 GBV_ILN_2015 GBV_ILN_2020 GBV_ILN_2021 GBV_ILN_2025 GBV_ILN_2027 GBV_ILN_2034 GBV_ILN_2038 GBV_ILN_2044 GBV_ILN_2048 GBV_ILN_2049 GBV_ILN_2050 GBV_ILN_2056 GBV_ILN_2059 GBV_ILN_2061 GBV_ILN_2064 GBV_ILN_2065 GBV_ILN_2068 GBV_ILN_2088 GBV_ILN_2111 GBV_ILN_2112 GBV_ILN_2113 GBV_ILN_2118 GBV_ILN_2122 GBV_ILN_2129 GBV_ILN_2143 GBV_ILN_2147 GBV_ILN_2148 GBV_ILN_2152 GBV_ILN_2153 GBV_ILN_2190 GBV_ILN_2336 GBV_ILN_2470 GBV_ILN_2507 GBV_ILN_2522 GBV_ILN_4035 GBV_ILN_4037 GBV_ILN_4112 GBV_ILN_4125 GBV_ILN_4126 GBV_ILN_4242 GBV_ILN_4251 GBV_ILN_4305 GBV_ILN_4313 GBV_ILN_4322 GBV_ILN_4323 GBV_ILN_4324 GBV_ILN_4325 GBV_ILN_4326 GBV_ILN_4333 GBV_ILN_4334 GBV_ILN_4335 GBV_ILN_4338 GBV_ILN_4393 54.80 Angewandte Informatik 50.03 Methoden und Techniken der Ingenieurwissenschaften BIZ-09001 SKW AR 101 127-137 |
allfields_unstemmed |
10.1016/j.compind.2018.07.005 doi (DE-627)ELV000519030 (ELSEVIER)S0166-3615(18)30095-2 DE-627 ger DE-627 rda eng 54.80 bkl 50.03 bkl Chen, Xinyu verfasserin aut Basis for the model-driven engineering of manufacturing execution systems: Modeling elements in the domain of beer brewing 2018 nicht spezifiziert zzz rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Manufacturing execution systems (MES) are process-oriented IT solutions that collect and manage information from manufacturing processes to improve transparency. Owing to the considerable programming effort required for the implementation of custom systems for specific production processes, investing in MES is not an option for many food and beverage manufacturers. Model-driven engineering (MDE) is one solution for reducing the implementation costs involved in custom systems. However, a concrete MDE approach that fulfills the requirements of the food and beverage industry has not yet been established for MES. With this background, this paper introduces an MDE approach for MES and focuses on the first step in implementing this approach by defining the modeling elements of MES functions that enable the automatic transformation from models into an operational MES. The modeling elements are defined for the four components of an MES solution: the plant model illustrating the technical systems, the process model describing the production processes, the MES function model representing the required MES functions and the report model showing the results of MES functions. A use case in the domain of beer brewing is presented to evaluate the proposed approach. This use case demonstrates the feasibility and suitability of predefined modeling elements in the modeling phase for automatic MES generation. 1.1\x Informationstechnik (DE-2867)16757-5 stw 1.2\x Industrie 4.0 (DE-2867)30177-6 stw 1.3\x Automatisierte Produktion (DE-2867)12730-3 stw 1.4\x Computerunterstützung (DE-2867)19661-3 stw Model-driven engineering Manufacturing execution systems Food industry Modeling of MES Industry standards Gemein, Fabian verfasserin (orcid)0000-0002-1113-9724 aut Flad, Stefan verfasserin aut Voigt, Tobias verfasserin aut Enthalten in Computers in industry Amsterdam [u.a.] : Elsevier Science, 1979 101, Seite 127-137 Online-Ressource (DE-627)320415767 (DE-600)2001900-2 (DE-576)094056633 0166-3615 nnns volume:101 pages:127-137 GBV_USEFLAG_U SYSFLAG_U GBV_ELV GBV_ILN_20 GBV_ILN_22 GBV_ILN_23 GBV_ILN_24 GBV_ILN_31 GBV_ILN_32 GBV_ILN_40 GBV_ILN_60 GBV_ILN_62 GBV_ILN_63 GBV_ILN_65 GBV_ILN_69 GBV_ILN_70 GBV_ILN_73 GBV_ILN_74 GBV_ILN_90 GBV_ILN_95 GBV_ILN_100 GBV_ILN_105 GBV_ILN_110 GBV_ILN_150 GBV_ILN_151 GBV_ILN_224 GBV_ILN_370 GBV_ILN_602 GBV_ILN_702 GBV_ILN_2003 GBV_ILN_2004 GBV_ILN_2005 GBV_ILN_2006 GBV_ILN_2008 GBV_ILN_2010 GBV_ILN_2011 GBV_ILN_2014 GBV_ILN_2015 GBV_ILN_2020 GBV_ILN_2021 GBV_ILN_2025 GBV_ILN_2027 GBV_ILN_2034 GBV_ILN_2038 GBV_ILN_2044 GBV_ILN_2048 GBV_ILN_2049 GBV_ILN_2050 GBV_ILN_2056 GBV_ILN_2059 GBV_ILN_2061 GBV_ILN_2064 GBV_ILN_2065 GBV_ILN_2068 GBV_ILN_2088 GBV_ILN_2111 GBV_ILN_2112 GBV_ILN_2113 GBV_ILN_2118 GBV_ILN_2122 GBV_ILN_2129 GBV_ILN_2143 GBV_ILN_2147 GBV_ILN_2148 GBV_ILN_2152 GBV_ILN_2153 GBV_ILN_2190 GBV_ILN_2336 GBV_ILN_2470 GBV_ILN_2507 GBV_ILN_2522 GBV_ILN_4035 GBV_ILN_4037 GBV_ILN_4112 GBV_ILN_4125 GBV_ILN_4126 GBV_ILN_4242 GBV_ILN_4251 GBV_ILN_4305 GBV_ILN_4313 GBV_ILN_4322 GBV_ILN_4323 GBV_ILN_4324 GBV_ILN_4325 GBV_ILN_4326 GBV_ILN_4333 GBV_ILN_4334 GBV_ILN_4335 GBV_ILN_4338 GBV_ILN_4393 54.80 Angewandte Informatik 50.03 Methoden und Techniken der Ingenieurwissenschaften BIZ-09001 SKW AR 101 127-137 |
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10.1016/j.compind.2018.07.005 doi (DE-627)ELV000519030 (ELSEVIER)S0166-3615(18)30095-2 DE-627 ger DE-627 rda eng 54.80 bkl 50.03 bkl Chen, Xinyu verfasserin aut Basis for the model-driven engineering of manufacturing execution systems: Modeling elements in the domain of beer brewing 2018 nicht spezifiziert zzz rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Manufacturing execution systems (MES) are process-oriented IT solutions that collect and manage information from manufacturing processes to improve transparency. Owing to the considerable programming effort required for the implementation of custom systems for specific production processes, investing in MES is not an option for many food and beverage manufacturers. Model-driven engineering (MDE) is one solution for reducing the implementation costs involved in custom systems. However, a concrete MDE approach that fulfills the requirements of the food and beverage industry has not yet been established for MES. With this background, this paper introduces an MDE approach for MES and focuses on the first step in implementing this approach by defining the modeling elements of MES functions that enable the automatic transformation from models into an operational MES. The modeling elements are defined for the four components of an MES solution: the plant model illustrating the technical systems, the process model describing the production processes, the MES function model representing the required MES functions and the report model showing the results of MES functions. A use case in the domain of beer brewing is presented to evaluate the proposed approach. This use case demonstrates the feasibility and suitability of predefined modeling elements in the modeling phase for automatic MES generation. 1.1\x Informationstechnik (DE-2867)16757-5 stw 1.2\x Industrie 4.0 (DE-2867)30177-6 stw 1.3\x Automatisierte Produktion (DE-2867)12730-3 stw 1.4\x Computerunterstützung (DE-2867)19661-3 stw Model-driven engineering Manufacturing execution systems Food industry Modeling of MES Industry standards Gemein, Fabian verfasserin (orcid)0000-0002-1113-9724 aut Flad, Stefan verfasserin aut Voigt, Tobias verfasserin aut Enthalten in Computers in industry Amsterdam [u.a.] : Elsevier Science, 1979 101, Seite 127-137 Online-Ressource (DE-627)320415767 (DE-600)2001900-2 (DE-576)094056633 0166-3615 nnns volume:101 pages:127-137 GBV_USEFLAG_U SYSFLAG_U GBV_ELV GBV_ILN_20 GBV_ILN_22 GBV_ILN_23 GBV_ILN_24 GBV_ILN_31 GBV_ILN_32 GBV_ILN_40 GBV_ILN_60 GBV_ILN_62 GBV_ILN_63 GBV_ILN_65 GBV_ILN_69 GBV_ILN_70 GBV_ILN_73 GBV_ILN_74 GBV_ILN_90 GBV_ILN_95 GBV_ILN_100 GBV_ILN_105 GBV_ILN_110 GBV_ILN_150 GBV_ILN_151 GBV_ILN_224 GBV_ILN_370 GBV_ILN_602 GBV_ILN_702 GBV_ILN_2003 GBV_ILN_2004 GBV_ILN_2005 GBV_ILN_2006 GBV_ILN_2008 GBV_ILN_2010 GBV_ILN_2011 GBV_ILN_2014 GBV_ILN_2015 GBV_ILN_2020 GBV_ILN_2021 GBV_ILN_2025 GBV_ILN_2027 GBV_ILN_2034 GBV_ILN_2038 GBV_ILN_2044 GBV_ILN_2048 GBV_ILN_2049 GBV_ILN_2050 GBV_ILN_2056 GBV_ILN_2059 GBV_ILN_2061 GBV_ILN_2064 GBV_ILN_2065 GBV_ILN_2068 GBV_ILN_2088 GBV_ILN_2111 GBV_ILN_2112 GBV_ILN_2113 GBV_ILN_2118 GBV_ILN_2122 GBV_ILN_2129 GBV_ILN_2143 GBV_ILN_2147 GBV_ILN_2148 GBV_ILN_2152 GBV_ILN_2153 GBV_ILN_2190 GBV_ILN_2336 GBV_ILN_2470 GBV_ILN_2507 GBV_ILN_2522 GBV_ILN_4035 GBV_ILN_4037 GBV_ILN_4112 GBV_ILN_4125 GBV_ILN_4126 GBV_ILN_4242 GBV_ILN_4251 GBV_ILN_4305 GBV_ILN_4313 GBV_ILN_4322 GBV_ILN_4323 GBV_ILN_4324 GBV_ILN_4325 GBV_ILN_4326 GBV_ILN_4333 GBV_ILN_4334 GBV_ILN_4335 GBV_ILN_4338 GBV_ILN_4393 54.80 Angewandte Informatik 50.03 Methoden und Techniken der Ingenieurwissenschaften BIZ-09001 SKW AR 101 127-137 |
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10.1016/j.compind.2018.07.005 doi (DE-627)ELV000519030 (ELSEVIER)S0166-3615(18)30095-2 DE-627 ger DE-627 rda eng 54.80 bkl 50.03 bkl Chen, Xinyu verfasserin aut Basis for the model-driven engineering of manufacturing execution systems: Modeling elements in the domain of beer brewing 2018 nicht spezifiziert zzz rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Manufacturing execution systems (MES) are process-oriented IT solutions that collect and manage information from manufacturing processes to improve transparency. Owing to the considerable programming effort required for the implementation of custom systems for specific production processes, investing in MES is not an option for many food and beverage manufacturers. Model-driven engineering (MDE) is one solution for reducing the implementation costs involved in custom systems. However, a concrete MDE approach that fulfills the requirements of the food and beverage industry has not yet been established for MES. With this background, this paper introduces an MDE approach for MES and focuses on the first step in implementing this approach by defining the modeling elements of MES functions that enable the automatic transformation from models into an operational MES. The modeling elements are defined for the four components of an MES solution: the plant model illustrating the technical systems, the process model describing the production processes, the MES function model representing the required MES functions and the report model showing the results of MES functions. A use case in the domain of beer brewing is presented to evaluate the proposed approach. This use case demonstrates the feasibility and suitability of predefined modeling elements in the modeling phase for automatic MES generation. 1.1\x Informationstechnik (DE-2867)16757-5 stw 1.2\x Industrie 4.0 (DE-2867)30177-6 stw 1.3\x Automatisierte Produktion (DE-2867)12730-3 stw 1.4\x Computerunterstützung (DE-2867)19661-3 stw Model-driven engineering Manufacturing execution systems Food industry Modeling of MES Industry standards Gemein, Fabian verfasserin (orcid)0000-0002-1113-9724 aut Flad, Stefan verfasserin aut Voigt, Tobias verfasserin aut Enthalten in Computers in industry Amsterdam [u.a.] : Elsevier Science, 1979 101, Seite 127-137 Online-Ressource (DE-627)320415767 (DE-600)2001900-2 (DE-576)094056633 0166-3615 nnns volume:101 pages:127-137 GBV_USEFLAG_U SYSFLAG_U GBV_ELV GBV_ILN_20 GBV_ILN_22 GBV_ILN_23 GBV_ILN_24 GBV_ILN_31 GBV_ILN_32 GBV_ILN_40 GBV_ILN_60 GBV_ILN_62 GBV_ILN_63 GBV_ILN_65 GBV_ILN_69 GBV_ILN_70 GBV_ILN_73 GBV_ILN_74 GBV_ILN_90 GBV_ILN_95 GBV_ILN_100 GBV_ILN_105 GBV_ILN_110 GBV_ILN_150 GBV_ILN_151 GBV_ILN_224 GBV_ILN_370 GBV_ILN_602 GBV_ILN_702 GBV_ILN_2003 GBV_ILN_2004 GBV_ILN_2005 GBV_ILN_2006 GBV_ILN_2008 GBV_ILN_2010 GBV_ILN_2011 GBV_ILN_2014 GBV_ILN_2015 GBV_ILN_2020 GBV_ILN_2021 GBV_ILN_2025 GBV_ILN_2027 GBV_ILN_2034 GBV_ILN_2038 GBV_ILN_2044 GBV_ILN_2048 GBV_ILN_2049 GBV_ILN_2050 GBV_ILN_2056 GBV_ILN_2059 GBV_ILN_2061 GBV_ILN_2064 GBV_ILN_2065 GBV_ILN_2068 GBV_ILN_2088 GBV_ILN_2111 GBV_ILN_2112 GBV_ILN_2113 GBV_ILN_2118 GBV_ILN_2122 GBV_ILN_2129 GBV_ILN_2143 GBV_ILN_2147 GBV_ILN_2148 GBV_ILN_2152 GBV_ILN_2153 GBV_ILN_2190 GBV_ILN_2336 GBV_ILN_2470 GBV_ILN_2507 GBV_ILN_2522 GBV_ILN_4035 GBV_ILN_4037 GBV_ILN_4112 GBV_ILN_4125 GBV_ILN_4126 GBV_ILN_4242 GBV_ILN_4251 GBV_ILN_4305 GBV_ILN_4313 GBV_ILN_4322 GBV_ILN_4323 GBV_ILN_4324 GBV_ILN_4325 GBV_ILN_4326 GBV_ILN_4333 GBV_ILN_4334 GBV_ILN_4335 GBV_ILN_4338 GBV_ILN_4393 54.80 Angewandte Informatik 50.03 Methoden und Techniken der Ingenieurwissenschaften BIZ-09001 SKW AR 101 127-137 |
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Chen, Xinyu bkl 54.80 bkl 50.03 stw Informationstechnik stw Industrie 4.0 stw Automatisierte Produktion stw Computerunterstützung misc Model-driven engineering misc Manufacturing execution systems misc Food industry misc Modeling of MES misc Industry standards Basis for the model-driven engineering of manufacturing execution systems: Modeling elements in the domain of beer brewing |
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54.80 bkl 50.03 bkl Basis for the model-driven engineering of manufacturing execution systems: Modeling elements in the domain of beer brewing 1.1\x Informationstechnik (DE-2867)16757-5 stw 1.2\x Industrie 4.0 (DE-2867)30177-6 stw 1.3\x Automatisierte Produktion (DE-2867)12730-3 stw 1.4\x Computerunterstützung (DE-2867)19661-3 stw Model-driven engineering Manufacturing execution systems Food industry Modeling of MES Industry standards |
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bkl 54.80 bkl 50.03 stw Informationstechnik stw Industrie 4.0 stw Automatisierte Produktion stw Computerunterstützung misc Model-driven engineering misc Manufacturing execution systems misc Food industry misc Modeling of MES misc Industry standards |
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bkl 54.80 bkl 50.03 stw Informationstechnik stw Industrie 4.0 stw Automatisierte Produktion stw Computerunterstützung misc Model-driven engineering misc Manufacturing execution systems misc Food industry misc Modeling of MES misc Industry standards |
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basis for the model-driven engineering of manufacturing execution systems: modeling elements in the domain of beer brewing |
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Basis for the model-driven engineering of manufacturing execution systems: Modeling elements in the domain of beer brewing |
abstract |
Manufacturing execution systems (MES) are process-oriented IT solutions that collect and manage information from manufacturing processes to improve transparency. Owing to the considerable programming effort required for the implementation of custom systems for specific production processes, investing in MES is not an option for many food and beverage manufacturers. Model-driven engineering (MDE) is one solution for reducing the implementation costs involved in custom systems. However, a concrete MDE approach that fulfills the requirements of the food and beverage industry has not yet been established for MES. With this background, this paper introduces an MDE approach for MES and focuses on the first step in implementing this approach by defining the modeling elements of MES functions that enable the automatic transformation from models into an operational MES. The modeling elements are defined for the four components of an MES solution: the plant model illustrating the technical systems, the process model describing the production processes, the MES function model representing the required MES functions and the report model showing the results of MES functions. A use case in the domain of beer brewing is presented to evaluate the proposed approach. This use case demonstrates the feasibility and suitability of predefined modeling elements in the modeling phase for automatic MES generation. |
abstractGer |
Manufacturing execution systems (MES) are process-oriented IT solutions that collect and manage information from manufacturing processes to improve transparency. Owing to the considerable programming effort required for the implementation of custom systems for specific production processes, investing in MES is not an option for many food and beverage manufacturers. Model-driven engineering (MDE) is one solution for reducing the implementation costs involved in custom systems. However, a concrete MDE approach that fulfills the requirements of the food and beverage industry has not yet been established for MES. With this background, this paper introduces an MDE approach for MES and focuses on the first step in implementing this approach by defining the modeling elements of MES functions that enable the automatic transformation from models into an operational MES. The modeling elements are defined for the four components of an MES solution: the plant model illustrating the technical systems, the process model describing the production processes, the MES function model representing the required MES functions and the report model showing the results of MES functions. A use case in the domain of beer brewing is presented to evaluate the proposed approach. This use case demonstrates the feasibility and suitability of predefined modeling elements in the modeling phase for automatic MES generation. |
abstract_unstemmed |
Manufacturing execution systems (MES) are process-oriented IT solutions that collect and manage information from manufacturing processes to improve transparency. Owing to the considerable programming effort required for the implementation of custom systems for specific production processes, investing in MES is not an option for many food and beverage manufacturers. Model-driven engineering (MDE) is one solution for reducing the implementation costs involved in custom systems. However, a concrete MDE approach that fulfills the requirements of the food and beverage industry has not yet been established for MES. With this background, this paper introduces an MDE approach for MES and focuses on the first step in implementing this approach by defining the modeling elements of MES functions that enable the automatic transformation from models into an operational MES. The modeling elements are defined for the four components of an MES solution: the plant model illustrating the technical systems, the process model describing the production processes, the MES function model representing the required MES functions and the report model showing the results of MES functions. A use case in the domain of beer brewing is presented to evaluate the proposed approach. This use case demonstrates the feasibility and suitability of predefined modeling elements in the modeling phase for automatic MES generation. |
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