Data repository for the paper: "An experimentable digital twin scenario for the simulation of cable yarding systems"

This archive includes, the conceptual Digital Twin (DT) models "DT forest" and "DT cable yarder" (fml40), used for the simulation setup and as working basis for further developments. Additional software-code (Python) is provided as example of how to create the scenario-related "DT forest"-based JSON file from a provided csv table and based on the fml40 structures presented. This step is needed to connect the DTs and their attributes following the structures previously defined in fml40 format.

    Organizational unit
    BFH - Multifunctional forest management
    Type
    Dataset
    DOI
    License
    Creative Commons Attribution 4.0 International
    Keywords
    Digital Twin, fml40, DT forest, Python
Publication date18/12/2024
Retention date
accessLevelPublicAccess levelPublic
SensitivityBlue
licenseContract on the use of data
License
Contributors
  • Starke, Michael
  • Wahl, Arthur
  • Schinke, Lennart
  • Dietsch, Patrick
  • Sforza, Francesco
  • Rossmann, Jürgen
  • Schluse, Michael
  • Ziesak, Martin
156
0
  • Quality (0 Reviews)
  • Usefulness (0 Reviews)

Datacite metadata

    
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    <datacite:identifier identifierType="DOI">10.34914/olos:d7bvl4hcznhjpdz44gwdu4bneu</datacite:identifier>
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            <datacite:givenName>Patrick</datacite:givenName>
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            <datacite:creatorName nameType="Personal">Sforza, Francesco</datacite:creatorName>
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            <datacite:creatorName nameType="Personal">Schluse, Michael</datacite:creatorName>
            <datacite:givenName>Michael</datacite:givenName>
            <datacite:familyName>Schluse</datacite:familyName>
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    <datacite:titles>
        <datacite:title>Data repository for the paper: "An experimentable digital twin scenario for the simulation of cable yarding systems"</datacite:title>
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    <datacite:publicationYear>2024</datacite:publicationYear>
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        <datacite:subject subjectScheme="keywords" xml:lang="en">Digital Twin;fml40;DT forest;Python</datacite:subject>
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        <datacite:contributor contributorType="ResearchGroup">
            <datacite:contributorName nameType="Organizational">[172b45ca-f409-479b-8df5-18a61fa25694] BFH - Multifunctional forest management </datacite:contributorName>
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        <datacite:contributor contributorType="ProjectManager">
            <datacite:contributorName nameType="Personal">Scheuner, Marc</datacite:contributorName>
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    <datacite:dates>
        <datacite:date dateType="Issued">2024-12-18T00:00:00Z</datacite:date>
        <datacite:date dateType="Collected">2021-09-01T00:00:00Z/2022-07-15T00:00:00Z</datacite:date>
        <datacite:date dateType="Created">2024-12-18T12:58:05.609681Z</datacite:date>
        <datacite:date dateType="Updated">2025-06-27T06:41:51.392691Z</datacite:date>
        <datacite:date dateType="Accepted">2025-06-27T06:41:49.537655378Z</datacite:date>
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    <datacite:descriptions>
        <datacite:description descriptionType="Abstract" xml:lang="en">This archive includes, the conceptual Digital Twin (DT) models "DT forest" and "DT cable yarder" (fml40), used for the simulation setup and as working basis for further developments.

Additional software-code (Python) is provided as example of how to create the scenario-related "DT forest"-based JSON file from a provided csv table and based on the fml40 structures presented. This step is needed to connect the DTs and their attributes following the structures previously defined in fml40  format.</datacite:description>
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Packages information

    Metadata version
    3.1
    Disposal approval
    Yes
    Retention expiration
    18/12/2024 00:00:00
    Created
    27/06/2025 06:41:51
    Deposit
    Data repository for the paper: "An experimentable digital twin scenario for the simulation of cable yarding systems"
    Deposit creation
    Deposit approval
    27/06/2025 06:41:48
    SIP
    Data repository for the paper: "An experimentable digital twin scenario for the simulation of cable yarding systems"
    AIP
    Data repository for the paper: "An experimentable digital twin scenario for the simulation of cable yarding systems"
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