<!DOCTYPE article PUBLIC "-//NLM//DTD JATS (Z39.96) Journal Archiving and Interchange DTD v1.0 20120330//EN" "JATS-archivearticle1.dtd">
<article xmlns:xlink="http://www.w3.org/1999/xlink">
  <front>
    <journal-meta />
    <article-meta>
      <title-group>
        <article-title>Identification of an Appropriate Modelling Method for the Value Reference Model</article-title>
      </title-group>
      <contrib-group>
        <contrib contrib-type="author">
          <string-name>Nesat Efendioglu</string-name>
          <email>nesat.efendioglu@boc-eu.com</email>
          <xref ref-type="aff" rid="aff0">0</xref>
          <xref ref-type="aff" rid="aff1">1</xref>
        </contrib>
        <contrib contrib-type="author">
          <string-name>Vedran Hrgovcic</string-name>
          <email>vedran.hrgovcic@boc-eu.com</email>
          <xref ref-type="aff" rid="aff0">0</xref>
          <xref ref-type="aff" rid="aff1">1</xref>
        </contrib>
        <aff id="aff0">
          <label>0</label>
          <institution>BOC Asset Management GmbH</institution>
          ,
          <addr-line>Baeckerstrasse 5 1010, Vienna</addr-line>
          ,
          <country country="AT">Austria</country>
        </aff>
        <aff id="aff1">
          <label>1</label>
          <institution>The Goal of Model based Approach</institution>
        </aff>
      </contrib-group>
      <abstract>
        <p>The focus of this paper is towards identification of an appropriate Modelling Method for the Value Reference Model. In order to address such challenge, paper first outlines a brief use case description to identify the object under observation and to define the actual purpose of modelling. Second, an application of the Generic Modelling Method Specification framework is outlined and applied for the specification of the modelling method in question according to works by Karagiannis and Kühn. And, third questions that should be answered before selection of the appropriate modelling methods are identified, based on the introduction of VRM and SCOR conceptual frameworks, comprising the actual conceptual skeleton of the appropriate modelling method.</p>
      </abstract>
      <kwd-group>
        <kwd>Value Reference Model</kwd>
        <kwd>Supply Chain Operations ReferenceModel</kwd>
        <kwd>Modelling Method</kwd>
        <kwd>Meta Models</kwd>
      </kwd-group>
    </article-meta>
  </front>
  <body>
    <sec id="sec-1">
      <title>-</title>
      <p>1.1</p>
    </sec>
    <sec id="sec-2">
      <title>Use Cases as Object under Observation</title>
      <p>
        We have selected following use cases to serve as possible Objects of Observations:
(
        <xref ref-type="bibr" rid="ref1">1</xref>
        ) Retail Industry in Lithuania: high number of SME’s is involved in the retail
industry of Lithuania. Most of these SME’s cannot afford large investments in
individualized IT systems. They need e-business systems, which use either open source or
affordable technologies and also open information exchange standards in order to
enable better organization, optimization and risk management. [3].
(
        <xref ref-type="bibr" rid="ref2">2</xref>
        ) Agro-food Industry in Turkey: Agriculture sector in Turkey is currently too slow
on adapting to changes in the markets affected by globalization. The investment in the
e-business and application of agreed information exchange standards could result in
an approach allowing activity-based cost, optimisation and risk management, thus
raising the adaptivity level toward external/internal changes [3].
(
        <xref ref-type="bibr" rid="ref3">3</xref>
        ) Furniture Industry in Spain: Aidima[4] is engaged with high quality technological
developments and provisioning of innovation services for the Furniture Industry in
Spain. Their activities require, application of a collaborative-based platform providing
support in the process acquiring information regarding AS-IS scenarios in production,
supply chain and customer relations, and support idea management. This platform
should be capable of allowing redesign of the supply chain based on innovations [4].
(
        <xref ref-type="bibr" rid="ref4">4</xref>
        ) Mechanical Engineering Industry in Italy: Loccioni is researching, designing and
developing innovative customized solutions and systems for the improvement of
quality. These activities require support by a collaboration platform that is capable of
managing (acquiring) the information coming from production, supply chain and
customer relations and in a subsequent step the processed information is returned in
order to improve the processes [4].
(
        <xref ref-type="bibr" rid="ref5">5</xref>
        ) Textile Industry in Italy: Cashmere production via cross-sector workflow. In order
to raise the sustainability level against the risks within the supply chain, the
stockholders in this workflow need collaboration tool that collects information from whole
supply chain and enables interoperability for exchange of documents [6].
1.2
      </p>
    </sec>
    <sec id="sec-3">
      <title>Purpose of Modelling</title>
      <p>
        After considering the stakeholders requirements from the use-cases, the purpose of
modelling of the aforementioned object of observation can be one of the following:
(
        <xref ref-type="bibr" rid="ref1">1</xref>
        ) Strategic management, (
        <xref ref-type="bibr" rid="ref2">2</xref>
        ) Performance management, (
        <xref ref-type="bibr" rid="ref3">3</xref>
        ) Programme and
initiative management, (
        <xref ref-type="bibr" rid="ref4">4</xref>
        ) Business Process and Supply Chain Management; (
        <xref ref-type="bibr" rid="ref5">5</xref>
        ) Process
analysis and optimisation, (
        <xref ref-type="bibr" rid="ref6">6</xref>
        ) Process performance management, (
        <xref ref-type="bibr" rid="ref7">7</xref>
        ) Quality and
information management, (
        <xref ref-type="bibr" rid="ref8">8</xref>
        ) Governance, risk management, compliance, (9)
Implementation of business process in IT systems, (10) Supply Chain management (11) IT
Architecture and Service Management; (12) IT Governance, (13) Enterprise
architecture management, (14) IT service management.
2
      </p>
      <sec id="sec-3-1">
        <title>Specification of Modelling Methods</title>
        <p>The Generic Modelling Method Specification Framework - GMMSF (depicted in
Fig.1) classifies each modelling method in (a) a modelling technique part and (b) a
functional part considering mechanisms and algorithms. Hence this GMMSF shares
the vision on mechanisms and algorithm applied on models. This viewpoint defines
models as objects on which functions are applied on. Similar to a construction plan,
that is used to apply static calculations on, which are further used. Hence the static
calculations are mechanisms applied on the construction plan – which is seen as a
model. The model is therefore not only for documentation purpose, but concrete
functions are applied on models that could not be performed without a model.</p>
        <p>The modelling technique considers the modelling language and the corresponding
sequence of necessary steps to create a model. This sequence of necessary steps is
called modelling procedure, whereas each step of the modelling procedure requires a
different part of the modelling language. Similar to construction plan, the available
modelling concepts are different depending on the status of the planning phase. Hence
different models have different pre-conditions, e.g. that business models are specified
before business rules can be defined, or location diagrams of stocks are specified
before logistic processes can be defined.</p>
      </sec>
      <sec id="sec-3-2">
        <title>How to find the appropriate Modelling Method</title>
        <p>This section raises the research question on the identification of the appropriate
modelling method for the VRM.
3.1</p>
      </sec>
    </sec>
    <sec id="sec-4">
      <title>Conceptual Framework</title>
      <p>
        First both frameworks (
        <xref ref-type="bibr" rid="ref1">1</xref>
        ) VRM and (
        <xref ref-type="bibr" rid="ref2">2</xref>
        ) SCOR are used to define the conceptual
skeleton for appropriate modelling methods. Fig. 2 introduces on a very high level the
two conceptual frameworks.
      </p>
    </sec>
    <sec id="sec-5">
      <title>Identified Dimensions of Modelling Methods</title>
      <p>Before identifying the appropriate modelling method a set of questions need to be
considered: What is the domain? What is the purpose of modelling? What is the
object of observation? Which properties are reduced for simplification? What nature is
the object of observation? What is the appropriate level of detail? What is the
appropriate s semantic expressiveness? How does the model evolve? How is it maintained?
Who and how is interpreting the model? What is the underlying formalism of the
object of observation? Which level of abstraction is appropriate? What kind of
thinking paradigm is used?</p>
      <p>Answers to these questions may vary from scenario to scenario and are defined
based on the end user requirements, market demands, conceptual philosophies and
technical applicability.
4</p>
      <sec id="sec-5-1">
        <title>Applied Research Approach and Conclusion</title>
        <p>This short paper provided a brief introduction on the problem of selecting the
appropriate modelling method for a specific scenario – in this application, the VRM and
SCOR. Currently this complex process is under research in [4] and the focus is
towards applying a pragmatic scrum like research method to enact creative sprints
based on brain-storming, end user feedback, literature input, and input from the
existing tools. In the consideration phase, the new ideas are specified in correct model
types, model artefacts, semantic expression, notations, modelling stacks and
functional requirements and are realized in a series of prototypes. .</p>
      </sec>
    </sec>
  </body>
  <back>
    <ref-list>
      <ref id="ref1">
        <mixed-citation>
          1. Value Chain Group:
          <article-title>BPTF-Value Reference Model, www</article-title>
          .
          <source>value-chain.org, access 08.06</source>
          .
          <year>2012</year>
          .
        </mixed-citation>
      </ref>
      <ref id="ref2">
        <mixed-citation>
          2.
          <string-name>
            <surname>Karagiannis</surname>
            ,
            <given-names>D.</given-names>
          </string-name>
          ; Kühn,
          <string-name>
            <given-names>H.: Metamodelling</given-names>
            <surname>Platforms</surname>
          </string-name>
          . Invited Paper. In: Bauknecht,
          <string-name>
            <given-names>K.</given-names>
            ;
            <surname>Min Tjoa</surname>
          </string-name>
          ,
          <string-name>
            <given-names>A.</given-names>
            ;
            <surname>Quirchmayer</surname>
          </string-name>
          ,
          <string-name>
            <surname>G</surname>
          </string-name>
          . (Eds.):
          <source>Proceedings of the Third International Conference EC-Web 2002 - Dexa</source>
          <year>2002</year>
          ,
          <article-title>Aix-en-</article-title>
          <string-name>
            <surname>Provence</surname>
          </string-name>
          ,
          <source>France, September 2-6</source>
          ,
          <year>2002</year>
          , LNCS 2455, Springer-Verlag, Berlin, Heidelberg, p.
          <fpage>182</fpage>
          ,
          <year>2002</year>
          .
        </mixed-citation>
      </ref>
      <ref id="ref3">
        <mixed-citation>
          3. ABILITIES project,
          <source>D1</source>
          .
          <article-title>1 part I and part II- Requirements for ABILITIES functional elements in the context of Enlarged EU SMEs, www</article-title>
          .viewzone.
          <source>org access 08.06</source>
          .
          <year>2012</year>
          .
        </mixed-citation>
      </ref>
      <ref id="ref4">
        <mixed-citation>
          4. BIVEE project,
          <source>D6</source>
          .
          <fpage>11</fpage>
          -
          <article-title>Analysis of User Requirements, www</article-title>
          .bivee.eu, access
          <volume>08</volume>
          .06.
          <year>2012</year>
          .
        </mixed-citation>
      </ref>
      <ref id="ref5">
        <mixed-citation>
          5. ComVantage project,
          <source>D6.1</source>
          .1
          <article-title>- Scenario specification and refinement, www</article-title>
          .comvantage.eu, access
          <volume>08</volume>
          .06.
          <year>2012</year>
          .
        </mixed-citation>
      </ref>
      <ref id="ref6">
        <mixed-citation>
          6.
          <string-name>
            <surname>I-Surf</surname>
            <given-names>project</given-names>
          </string-name>
          ,
          <source>D9.1</source>
          .2 - Pilot Application Scenario, www.srdc.com.tr/projects/isurf/,
          <source>access 08.06</source>
          .
          <year>2012</year>
          .
        </mixed-citation>
      </ref>
      <ref id="ref7">
        <mixed-citation>
          7. Value Chain Group:
          <article-title>VRM Quick Reference QuideV3R0, www</article-title>
          .wikipedia.org, access
          <volume>08</volume>
          .06.
          <year>2012</year>
          .
        </mixed-citation>
      </ref>
      <ref id="ref8">
        <mixed-citation>
          8.
          <string-name>
            <surname>Magnusson</surname>
            ,
            <given-names>L.</given-names>
          </string-name>
          :
          <article-title>DCOR &amp; CCOR Overview, www</article-title>
          .
          <source>supply-chain.org, access 08.06</source>
          .
          <year>2012</year>
          .
        </mixed-citation>
      </ref>
    </ref-list>
  </back>
</article>