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Krämer L, Ahlbäumer R, Leveling J, Detzner P, Brehler M, ten Hompel M (2021). Towards a Concept for Blockchain-based Cyber-Physical Production Systems. Logistics Journal : Proceedings, Vol. 2021. (urn:nbn:de:0009-14-54238)

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%0 Journal Article
%T Towards a Concept for Blockchain-based Cyber-Physical Production Systems
%A Krämer, Larissa
%A Ahlbäumer, Rico
%A Leveling, Jens
%A Detzner, Peter
%A Brehler, Marius
%A ten Hompel, Michael
%J Logistics Journal : Proceedings
%D 2021
%V 2021
%N 17
%@ 2192-9084
%F krämer2021
%X This contribution evaluates the feasibility of blockchain technology for processes of a cyber-physical production system (CPPS) using a decision framework. The evaluation is based on an implemented CPPS use case. Opportunities for the use of smart contracts are identified and two exemplary smart contracts are designed. To integrate the heterogeneous and resource-constrained IoT devices of a CPPS, three levels of connection to the blockchain are identified and applied to the use case. This work contributes to the implementation of an extensive blockchain-based CPPS.
%L 620
%K Blockchain
%K Industrie 4.0
%K Industry 4.0
%K Smart Contracts
%K cyber-physical production systems
%K cyber-physische Produktionssysteme
%K eingebettete Systeme
%K embedded systems
%R 10.2195/lj_Proc_kraemer_en_202112_01
%U http://nbn-resolving.de/urn:nbn:de:0009-14-54238
%U http://dx.doi.org/10.2195/lj_Proc_kraemer_en_202112_01

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Bibtex

@Article{krämer2021,
  author = 	"Kr{\"a}mer, Larissa
		and Ahlb{\"a}umer, Rico
		and Leveling, Jens
		and Detzner, Peter
		and Brehler, Marius
		and ten Hompel, Michael",
  title = 	"Towards a Concept for Blockchain-based Cyber-Physical Production Systems",
  journal = 	"Logistics Journal : Proceedings",
  year = 	"2021",
  volume = 	"2021",
  number = 	"17",
  keywords = 	"Blockchain; Industrie 4.0; Industry 4.0; Smart Contracts; cyber-physical production systems; cyber-physische Produktionssysteme; eingebettete Systeme; embedded systems",
  abstract = 	"This contribution evaluates the feasibility of blockchain technology for processes of a cyber-physical production system (CPPS) using a decision framework. The evaluation is based on an implemented CPPS use case. Opportunities for the use of smart contracts are identified and two exemplary smart contracts are designed. To integrate the heterogeneous and resource-constrained IoT devices of a CPPS, three levels of connection to the blockchain are identified and applied to the use case. This work contributes to the implementation of an extensive blockchain-based CPPS.",
  issn = 	"2192-9084",
  doi = 	"10.2195/lj_Proc_kraemer_en_202112_01",
  url = 	"http://nbn-resolving.de/urn:nbn:de:0009-14-54238"
}

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RIS

TY  - JOUR
AU  - Krämer, Larissa
AU  - Ahlbäumer, Rico
AU  - Leveling, Jens
AU  - Detzner, Peter
AU  - Brehler, Marius
AU  - ten Hompel, Michael
PY  - 2021
DA  - 2021//
TI  - Towards a Concept for Blockchain-based Cyber-Physical Production Systems
JO  - Logistics Journal : Proceedings
VL  - 2021
IS  - 17
KW  - Blockchain
KW  - Industrie 4.0
KW  - Industry 4.0
KW  - Smart Contracts
KW  - cyber-physical production systems
KW  - cyber-physische Produktionssysteme
KW  - eingebettete Systeme
KW  - embedded systems
AB  - This contribution evaluates the feasibility of blockchain technology for processes of a cyber-physical production system (CPPS) using a decision framework. The evaluation is based on an implemented CPPS use case. Opportunities for the use of smart contracts are identified and two exemplary smart contracts are designed. To integrate the heterogeneous and resource-constrained IoT devices of a CPPS, three levels of connection to the blockchain are identified and applied to the use case. This work contributes to the implementation of an extensive blockchain-based CPPS.
SN  - 2192-9084
UR  - http://nbn-resolving.de/urn:nbn:de:0009-14-54238
DO  - 10.2195/lj_Proc_kraemer_en_202112_01
ID  - krämer2021
ER  - 
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Wordbib

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<b:Person><b:Last>Leveling</b:Last><b:First>Jens</b:First></b:Person>
<b:Person><b:Last>Detzner</b:Last><b:First>Peter</b:First></b:Person>
<b:Person><b:Last>Brehler</b:Last><b:First>Marius</b:First></b:Person>
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<b:Title>Towards a Concept for Blockchain-based Cyber-Physical Production Systems</b:Title>
<b:Comments>This contribution evaluates the feasibility of blockchain technology for processes of a cyber-physical production system (CPPS) using a decision framework. The evaluation is based on an implemented CPPS use case. Opportunities for the use of smart contracts are identified and two exemplary smart contracts are designed. To integrate the heterogeneous and resource-constrained IoT devices of a CPPS, three levels of connection to the blockchain are identified and applied to the use case. This work contributes to the implementation of an extensive blockchain-based CPPS.</b:Comments>
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ISI

PT Journal
AU Krämer, L
   Ahlbäumer, R
   Leveling, J
   Detzner, P
   Brehler, M
   ten Hompel, M
TI Towards a Concept for Blockchain-based Cyber-Physical Production Systems
SO Logistics Journal : Proceedings
PY 2021
VL 2021
IS 17
DI 10.2195/lj_Proc_kraemer_en_202112_01
DE Blockchain; Industrie 4.0; Industry 4.0; Smart Contracts; cyber-physical production systems; cyber-physische Produktionssysteme; eingebettete Systeme; embedded systems
AB This contribution evaluates the feasibility of blockchain technology for processes of a cyber-physical production system (CPPS) using a decision framework. The evaluation is based on an implemented CPPS use case. Opportunities for the use of smart contracts are identified and two exemplary smart contracts are designed. To integrate the heterogeneous and resource-constrained IoT devices of a CPPS, three levels of connection to the blockchain are identified and applied to the use case. This work contributes to the implementation of an extensive blockchain-based CPPS.
ER

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Mods

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  <titleInfo>
    <title>Towards a Concept for Blockchain-based Cyber-Physical Production Systems</title>
  </titleInfo>
  <name type="personal">
    <namePart type="family">Krämer</namePart>
    <namePart type="given">Larissa</namePart>
  </name>
  <name type="personal">
    <namePart type="family">Ahlbäumer</namePart>
    <namePart type="given">Rico</namePart>
  </name>
  <name type="personal">
    <namePart type="family">Leveling</namePart>
    <namePart type="given">Jens</namePart>
  </name>
  <name type="personal">
    <namePart type="family">Detzner</namePart>
    <namePart type="given">Peter</namePart>
  </name>
  <name type="personal">
    <namePart type="family">Brehler</namePart>
    <namePart type="given">Marius</namePart>
  </name>
  <name type="personal">
    <namePart type="family">ten Hompel</namePart>
    <namePart type="given">Michael</namePart>
  </name>
  <abstract>This contribution evaluates the feasibility of blockchain technology for processes of a cyber-physical production system (CPPS) using a decision framework. The evaluation is based on an implemented CPPS use case. Opportunities for the use of smart contracts are identified and two exemplary smart contracts are designed. To integrate the heterogeneous and resource-constrained IoT devices of a CPPS, three levels of connection to the blockchain are identified and applied to the use case. This work contributes to the implementation of an extensive blockchain-based CPPS.</abstract>
  <subject>
    <topic>Blockchain</topic>
    <topic>Industrie 4.0</topic>
    <topic>Industry 4.0</topic>
    <topic>Smart Contracts</topic>
    <topic>cyber-physical production systems</topic>
    <topic>cyber-physische Produktionssysteme</topic>
    <topic>eingebettete Systeme</topic>
    <topic>embedded systems</topic>
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      <detail type="volume">
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      <date>2021</date>
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  <identifier type="urn">urn:nbn:de:0009-14-54238</identifier>
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