Scenario-based derivation of digital ecosystem requirements:
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Weitere beteiligte Personen: | , , |
Format: | Hochschulschrift/Dissertation Buch |
Sprache: | Englisch |
Veröffentlicht: |
Stuttgart
Fraunhofer Verlag
[2023]
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Schriftenreihe: | PhD Theses in Experimental Software Engineering
72 |
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Links: | http://deposit.dnb.de/cgi-bin/dokserv?id=757a4aa6456f49569da597855bcca2bc&prov=M&dok_var=1&dok_ext=htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=035067141&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=035067141&sequence=000003&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA |
Umfang: | 285 Seiten Illustrationen, Diagramme 24 cm x 17 cm |
ISBN: | 9783839618967 3839618967 |
Internformat
MARC
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653 | |a Requirements Engineering | ||
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653 | |a Empirical Studies | ||
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Datensatz im Suchindex
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adam_text |
TABLE
OF
CONTENTS
ACKNOWLEDGMENTS
.
III
ABSTRACT
.
V
TABLE
OF
CONTENTS
.
VII
LIST
OF
FIGURES
.
XI
LIST
OF
TABLES
.
XV
1
INTRODUCTION
.
1
1.1
CONTEXT
.
1
1.2
INDUSTRY
PROBLEM
.
3
1.3
RESEARCH
PROBLEM
.
5
1.4
CONTRIBUTION
.
7
1.5
EXPECTED
BENEFITS
AND
HYPOTHESES
.
9
1.6
RESEARCH
APPROACH
.
10
1.7
THESIS
OUTLINE
.
12
1.8
SUMMARY
.
13
2
FOUNDATIONS
OF
ECOSYSTEMS
AND
REQUIREMENTS
.
15
2.1
RESEARCH
APPROACH
.
15
2.2
ECOSYSTEM
DELINEATION
.
16
2.2.1
(ORIGINAL)
ECOSYSTEMS
.
17
2.2.2
BUSINESS
ECOSYSTEMS
.
18
2.2.3
PLATFORM
ECONOMY
.
20
2.2.4
PLATFORM
ECOSYSTEMS
.
21
2.2.5
SHARING
ECONOMY
.
22
2.2.6
SOFTWARE
ECOSYSTEMS
.
24
2.2.7
DIGITAL
ECOSYSTEMS
.
26
2.2.8
DISCUSSION
OF
DIGITAL-ECOSYSTEM-LIKES
.
27
2.3
REQUIREMENTS
ENGINEERING
.
28
2.3.1
REQUIREMENTS
IN
SOFTWARE
ENGINEERING
.
29
2.3.2
TORE
FOR
DIGITAL
ECOSYSTEMS.
30
2.4
SUMMARY
.
31
3
INFORMATION
NEEDS
IN
DIGITAL
ECOSYSTEMS
.
33
3.1
RESEARCH
APPROACH
.
33
3.2
EXPLORATORY
STUDY
ON
INFORMATION
NEEDS
.
34
3.2.1
GOAL
OF
THE
EXPLORATORY
STUDY
.
35
VII
3.2.2
QUESTIONS
OF
THE
EXPLORATORY
STUDY
.35
3.2.3
DESIGN
AND
CONDUCTION
OF
THE
EXPLORATORY
STUDY
.36
3.2.4
RESULTS
OF
EXPLORATORY
STUDY
.
39
3.2.5
DISCUSSION
AND
THREATS
TO
VALIDITY
OF
THE
EXPLORATORY
STUDY
.
43
3.3
EXPERT
SURVEY
FOR
VALIDATION
OF
INFORMATION
NEEDS
.
45
3.3.1
GOAL
OF
THE
VALIDATION
STUDY
.
45
3.3.2
QUESTIONS
OF
THE
VALIDATION
STUDY
.
45
3.3.3
DESIGN
AND
MATERIAL
FOR
CONDUCTING
THE
VALIDATION
STUDY
.
46
3.3.4
RESULTS
OF
THE
VALIDATION
STUDY
.
55
3.3.5
DISCUSSION
AND
THREATS
TO
VALIDITY
OF
VALIDATION
STUDY
.
58
3.4
SUMMARY
.
67
4
ASSESSMENT
OF
THE
STATE
OF
THE
ART
OF
DIGITAL
ECOSYSTEM
REPRESENTATIONS
.
69
4.1
RESEARCH
APPROACH
.
69
4.2
CASE
STUDY
FOR
THE
ASSESSMENT
OF
MODELING
TECHNIQUES
.
71
4.2.1
STUDY
DESIGN
FOR
THE
ASSESSMENT
.
71
4.2.2
SELECTION
OF
MODELING
TECHNIQUES
FOR
THE
ASSESSMENT
.
73
4.3
RESULTS
OF
THE
ASSESSMENT
OF
MODELING
TECHNIQUES
.
80
4.3.1
ASSESSMENT
OF
BUSINESS
MODEL
CANVAS
.
82
4.3.2
ASSESSMENT
OF
E
3
VALUE
.
83
4.3.3
ASSESSMENT
OF
I*
.
85
4.3.4
ASSESSMENT
OF
SOFTWARE
SUPPLY
NETWORK
.
86
4.3.5
ASSESSMENT
OF
VALUE
NETWORK
.
87
4.4
DISCUSSION
AND
THREATS
TO
THE
VALIDITY
OF
THE
ASSESSMENT
RESULTS
.
89
4.4.1
DISCUSSION
OF
ASSESSMENT
RESULTS
.
89
4.4.2
THREATS
TO
VALIDITY
.
90
4.5
EXTENDED
REVIEW
OF
LITERATURE
.
92
4.6
SUMMARY
.
97
5
CONCEPTUAL
MODEL
FOR
SCENARIO-BASED
DOCUMENTATION
OF
DIGITAL
ECOSYSTEMS
.
99
5.1
RESEARCH
APPROACH
.
99
5.2
DERIVING
A
DEFINITION
OF
DIGITAL
ECOSYSTEMS
.
100
5.2.1
DEFINING
DIGITAL
ECOSYSTEM
SERVICES
.
101
5.2.2
DEFINING
A
DIGITAL
ECOSYSTEM
.
111
5.2.3
CHARACTERIZING
A
DIGITAL
ECOSYSTEM
SERVICE
PLATFORM
.
113
5.2.4
ONGOING
EXAMPLE
OF
A
DIGITAL
ECOSYSTEM
.
114
5.3
PLAYERS
IN
A
DIGITAL
ECOSYSTEM
.
115
5.3.1
DIGITAL
ECOSYSTEM
INITIATOR
.
117
5.3.2
DIGITAL
ECOSYSTEM
SERVICE
PLATFORM
OPERATOR
.
118
5.3.3
SERVICE
ASSET
BROKER
.
118
VIII
5.3.4
DIGITAL
ECOSYSTEM
SERVICE
PARTICIPANT
.
119
5.3.5
SERVICE
ASSET
PROVIDER
.
119
5.3.6
SERVICE
ASSET
CONSUMER
.
120
5.3.7
SERVICE
ASSET
CONSUMER'S
CUSTOMER
.
121
5.3.8
SUPPORT
PROVIDER
.
121
5.4
PROCESS
ELEMENTS
IN
A
DIGITAL
ECOSYSTEM
SERVICE
.
122
5.4.1
ACTION
.
124
5.4.2
ACTOR
.
124
5.4.3
USER
.
124
5.4.4
SYSTEM
.
125
5.4.5
USER
ACTION
.
125
5.4.6
INTERACTION
.
126
5.4.7
SYSTEM
ACTION
.
126
5.4.8
PRECONDITION
.
126
5.5
RELATIONSHIP
ELEMENTS
IN
A
DIGITAL
ECOSYSTEM
SERVICE
.
127
5.5.1
SERVICE
ASSET
.
128
5.5.2
DATA
.
128
5.5.3
TECHNICAL
ARTIFACT
.
129
5.5.4
CONTRACT
.
129
5.5.5
MONEY
.
130
5.5.6
BENEFIT
.
130
5.6
SCENARIO
ELEMENTS
IN
A
DIGITAL
ECOSYSTEM
SERVICE
.
130
5.7
SUMMARY
.
133
6
DERIVATION
OF
REQUIREMENTS
FOR
DIGITAL
ECOSYSTEMS
.
135
6.1
RESEARCH
APPROACH
.
135
6.2
REQUIREMENTS
DERIVATION
PROCESS
FOR
DIGITAL
ECOSYSTEMS
.
136
6.2.1
STEP
1:
SETTING
SCOPE
.
138
6.2.2
STEP
2:
DEFINING
PLAYERS
.
141
6.2.3
STEP
3:
DEFINING
FLOW
OF
ACTIONS
.
146
6.2.4
STEP
4:
DEFINING
RELATIONSHIPS
.
149
6.2.5
STEP
5:
CREATING
SCENARIO
.
155
6.2.6
STEP
6:
DERIVING
REQUIREMENTS
.
159
6.3
APPLICATION
OF
THE
PROCESS
IN
PRACTICE
.
164
6.3.1
DEALING
WITH
UNCERTAINTY
.
165
6.3.2
MAKING
DIGITAL
ECOSYSTEMS
TANGIBLE
.
167
6.3.3
COMBINATION
OF
DIGITAL
ECOSYSTEM
SERVICES
.
168
6.3.4
SUBSEQUENT
ACTIVITIES
IN
THE
DESIGN
OF
DIGITAL
ECOSYSTEMS
.
170
6.4
SUMMARY
.
171
7
VALIDATION
OF
RESEARCH
HYPOTHESES
.
173
7.1
RESEARCH
APPROACH
.
173
7.2
VALIDATION
OF
REPRESENTED
INFORMATION
.
175
7.2.1
HYPOTHESIS
ON
REPRESENTED
INFORMATION
.
175
7.2.2
STUDY
DESIGN
FOR
THE
VALIDATION
OF
THE
REPRESENTED
INFORMATION
.
176
IX
7.2.3
TRACING
OF
REPRESENTED
INFORMATION
TO
INFORMATION
NEEDS
.
177
7.2.4
DISCUSSION
OF
THE
VALIDATION
OF
THE
REPRESENTED
INFORMATION
.
182
7.3
VALIDATION
OF
THE
APPLICABILITY
OF
THE
APPROACH
.
183
7.3.1
HYPOTHESIS
REGARDING
THE
APPLICABILITY
OF
THE
APPROACH
.
184
7.3.2
STUDY
DESIGN
FOR
VALIDATION
OF
THE
APPLICABILITY
OF
THE
APPROACH
.
185
7.3.3
CASE
STUDIES
FOR
REQUIREMENTS
DERIVATION
PROCESS.
186
7.3.4
DISCUSSION
OF
CASE
STUDIES
AND
THREATS
TO
VALIDITY
.
193
7.4
VALIDATION
OF
THE
USEFULNESS
OF
THE
APPROACH
.
195
7.4.1
HYPOTHESIS
REGARDING
THE
USEFULNESS
OF
THE
APPROACH
.
195
7.4.2
STUDY
GOALS
FOR
THE
VALIDATION
OF
USEFULNESS
.
196
7.4.3
STUDY
QUESTIONS
FOR
THE
VALIDATION
OF
USEFULNESS
197
7.4.4
STUDY
DESIGN
AND
MATERIAL
FOR
THE
VALIDATION
OF
USEFULNESS
.
199
7.4.5
STUDY
RESULTS
FOR
THE
VALIDATION
OF
USEFULNESS
.
204
7.4.6
DISCUSSION
AND
THREATS
TO
VALIDITY
OF
THE
VALIDATION
OF
USEFULNESS
.
209
7.5
SUMMARY
.
214
8
AUTOMATION
AND
TOOL
SUPPORT
.
217
8.1
RESEARCH
APPROACH
.
217
8.2
REQUIREMENTS
FOR
TOOL
SUPPORT
.
218
8.3
REALIZATION
OF
TOOL
SUPPORT
.
219
8.3.1
CREATION
OF
SCENARIO
VIEW
.
220
8.3.2
GENERATION
OF
VIEWS
.
222
8.3.3
LINKAGE
TO
REQUIREMENTS
MANAGEMENT
.
224
8.4
SUMMARY
.
225
9
SUMMARY
AND
OUTLOOK
.
227
9.1
RESULTS
AND
CONTRIBUTIONS
.
228
9.2
LIMITATIONS
AND
FUTURE
WORK
.
230
REFERENCES
.
233
APPENDIX
A
DETAILED
EXPLORATORY
STUDY
RESULTS
.
255
APPENDIX
B
VALIDATION
STUDY
QUESTIONNAIRE
.
265
APPENDIX
C
MODELS
FOR
THE
ASSESSMENT
OF
MODELING
TECHNIQUES
.
273
APPENDIX
D
QUESTIONNAIRE
FOR
THE
VALIDATION
OF
USEFULNESS
.
279
APPENDIX
E
LEBENSLAUF
.
285
X
Table of Contents Acknowledgments. ill Abstract. V Table of Contents. vii List of Figures. xi List of Tables. xv 1 Introduction. 1 1.1 Context. 1 1.2 Industry Problem. 3 1.3 Research Problem. 5 1.4 Contribution. 7 1.5 Expected Benefitsand Hypotheses. 9 1.6 Research Approach. 10 1.7 Thesis Outline. 12 1.8 Summary. 13 2 Foundations of EcosystemsandRequirements. 15 2.1 Resea rch
Approach. 15 2.2 Ecosystem Delineation. 16 2.2.1 (Original) Ecosystems. 17 2.2.2 Business Ecosystems. 18 2.2.3 Platform Economy. . 20 2.2.4 Platform Ecosystems. 21 2.2.5 Sharing Economy. 22 2.2.6 Software Ecosystems. 24 2.2.7 Digital Ecosystems. 26 2.2.8 Discussion of Digital-Ecosystem-Likes. 27 2.3 Requirements Engineering. 28 2.3.1 Requirements in Software Engineering. 29 2.3.2 TORE for Digital Ecosystems. 30 2.4 Summary. 31 3 Information Needs in DigitalEcosystems. 33 3.1 Research Approach. 33 3.2 Exploratory Study on Information Needs. 34 3.2.1 Goal of the Exploratory Study.35 vii
Table of Contents Questions of the Exploratory Study. 35 Design and Conduction of the Exploratory Study. 36 Results of Exploratory Study. 39 Discussion and Threats to Validity of the Exploratory Study.43 Expert Survey for Validation of Information Needs. 45 3.3.1 Goal of the Validation Study.45 3.3.2 Questions of the Validation Study. 45 3.3.3 Design and Material for Conducting the Validation Study. 46 3.3.4 Results of the-Validation Study. 55 3.3.5 Discussion and Threats to Validity of Validation Study. 58 Summary. 67 3.2.2 3.2.3 3.2.4 3.2.5 3.3 3.4 viii 4 Assessment of the State of the Art of Digital Ecosystem Representations. 69 4.1 Research Approach. 69 4.2 Case Study for the Assessment of ModelingTechniques. 71 4.2.1 Study Design for the Assessment.71 4.2.2 Selection of Modeling Techniques for the Assessment. 73 4.3 Results of the Assessment of Modeling Techniques. 80 4.3.1 Assessment of
Business Model Canvas. 82 4.3.2 Assessment of e3value.83 4.3.3 Assessment of I*. .85 4.3.4 Assessment of Software Supply Network. 86 4.3.5 Assessment of Value Network. 87 4.4 Discussion and Threats to the Validity of the Assessment Results. 89 4.4.1 Discussion of Assessment Results. 89 4.4.2 Threats to Validity. 90 4.5 Extended Review of Literature. 92 4.6 Summary. 97 5 Conceptual Model for Scenario-based Documentation of Digital Ecosystems. 99 5.1 Research Approach. 99 5.2 Deriving a Definition of Digital Ecosystems. 100 5.2.1 Defining DigitalEcosystemServices. 101 5.2.2 Defining a DigitalEcosystem. 111 5.2.3 Characterizing a Digital Ecosystem Service Platform. 113 5.2.4 Ongoing Example of a Digital Ecosystem. 114 5.3 Players in a Digital Ecosystem. 115
5.3.1 Digital Ecosystem Initiator. 117 5.3.2 Digital Ecosystem ServicePlatform Operator. 118 5.3.3 Service Asset Broker. 118
Table of Contents 5.4 5.5 5.6 5.7 5.3.4 Digital Ecosystem Service Participant.119 5.3.5 Service Asset Provider. 119 5.3.6 Service Asset Consumer. 120 5.3.7 Service Asset Consumer’s Customer.121 5.3.8 Support Provider. 121 Process Elements in a Digital Ecosystem Service. 122 5.4.1 Action. 124 5.4.2 Actor. 124 5.4.3 User.124 5.4.4 System. 125 5.4.5 User Action. 125 5.4.6 Interaction. 126 5.4.7 System Action.126 5.4.8 Precondition. 126 Relationship Elements in a Digital Ecosystem Service.127 5.5.1 ServiceAsset. 128 5.5.2 Data.128 5.5.3 Technical Artifact. 129 5.5.4
Contract. 129 5.5.5 Money. 130 5.5.6 Benefit. 130 Scenario Elements in a Digital Ecosystem Service. 130 Summary.133 6 Derivation of Requirements for Digital Ecosystems.135 6.1 Research Approach. 135 6.2 Requirements DerivationProcess for Digital Ecosystems. 136 6.2.1 Step 1: Setting Scope.138 6.2.2 Step 2: DefiningPlayers. 141 6.2.3Step 3: Defining Flow of Actions. 146 6.2.4Step 4: Defining Relationships. 149 6.2.5 Step 5: Creating Scenario. 155 6.2.6Step 6: Deriving Requirements. 159 6.3 Application of the Process in Practice. 164 6.3.1 Dealing with Uncertainty. 165 6.3.2 Making Digital Ecosystems Tangible.167 6.3.3 Combination of Digital EcosystemServices. 168 6.3.4 Subsequent Activities in the Design of Digital Ecosystems. 170 6.4
Summary. 171 7 Validation of Research Hypotheses. 173 7.1 Research Approach. 173 7.2 Validation of Represented Information. 175 7.2.1 Hypothesis on Represented Information. 175 7.2.2 Study Design for the Validation of the Represented Information . 176 ix
Table of Contents 7.2.3 Tracing of Represented Information to Information Needs. 177 7.2.4 Discussion of the Validation of the Represented Information. 182 7.3 Validation of the Applicability of the Approach. 183 7.3.1 Hypothesis regarding the Applicability of the Approach. 184 7.3.2 Study Design for Validation of the Applicability of the Approach. 185 7.3.3 Case Studies for Requirements Derivation Process. 186 7.3.4 Discussion of Case Studies and Threats to Validity . 193 7.4 Validation of the Usefulness of the Approach. 195 7.4.1 Hypothesis regarding the Usefulness of the Approach. 195 7.4.2 Study Goals for the Validation of Usefulness. 196 7.4.3 Study Questions for the Validation of Usefulness. 197 7.4.4 Study Design and Material for the Validation of Usefulness. 199 7.4.5 Study Results for the Validation of Usefulness. 204 7.4.6 Discussion and Threats to Validity of the Validation of Usefulness. 209 7.5 Summary. 214 8 Automation and Tool Support. 217 8.1 Research Approach. 217 8.2 Requirements for Tool
Support. 218 8.3 Realization of Tool Support.219 8.3.1 Creation of Scenario View. 220 8.3.2 Generation of Views.222 8.3.3 Linkage to RequirementsManagement. 224 8.4 Summary. 225 9 Summary and Outlook. 227 9.1 Results and Contributions. 228 9.2 Limitations and Future Work. 230 References.233 X Appendix A Detailed Exploratory Study Results. 255 Appendix В Validation Study Questionnaire. 265 Appendix C Models for the Assessment of Modeling Techniques. 273 Appendix D Questionnaire for the Validation of Usefulness. 279 Appendix E Lebenslauf. 285 |
any_adam_object | 1 |
author | Koch, Matthias |
author2 | Bomarius, Frank Liggesmeyer, Peter 1963- Rombach, Hans Dieter 1953- |
author2_role | edt edt edt |
author2_variant | f b fb p l pl h d r hd hdr |
author_GND | (DE-588)112090362 (DE-588)172348382 |
author_facet | Koch, Matthias Bomarius, Frank Liggesmeyer, Peter 1963- Rombach, Hans Dieter 1953- |
author_role | aut |
author_sort | Koch, Matthias |
author_variant | m k mk |
building | Verbundindex |
bvnumber | BV049724840 |
classification_rvk | ST 232 |
ctrlnum | (OCoLC)1393363919 (DE-599)DNB1290725012 |
discipline | Informatik |
format | Thesis Book |
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genre | (DE-588)4113937-9 Hochschulschrift gnd-content |
genre_facet | Hochschulschrift |
id | DE-604.BV049724840 |
illustrated | Illustrated |
indexdate | 2025-03-14T07:01:43Z |
institution | BVB |
institution_GND | (DE-588)10050408-5 (DE-588)4786605-6 |
isbn | 9783839618967 3839618967 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-035067141 |
oclc_num | 1393363919 |
open_access_boolean | |
owner | DE-739 |
owner_facet | DE-739 |
physical | 285 Seiten Illustrationen, Diagramme 24 cm x 17 cm |
publishDate | 2023 |
publishDateSearch | 2023 |
publishDateSort | 2023 |
publisher | Fraunhofer Verlag |
record_format | marc |
series | PhD Theses in Experimental Software Engineering |
series2 | PhD Theses in Experimental Software Engineering |
spelling | Koch, Matthias Verfasser aut Scenario-based derivation of digital ecosystem requirements Matthias Koch 202305 Stuttgart Fraunhofer Verlag [2023] © 2023 285 Seiten Illustrationen, Diagramme 24 cm x 17 cm txt rdacontent n rdamedia nc rdacarrier PhD Theses in Experimental Software Engineering 72 Dissertation TU, Kaiserslautern 2022 Softwareentwicklung (DE-588)4116522-6 gnd rswk-swf Industrielle Kooperation (DE-588)4026844-5 gnd rswk-swf Requirements engineering (DE-588)4213997-1 gnd rswk-swf Stakeholder (DE-588)4300861-6 gnd rswk-swf Requirements Engineering Digital Ecosystems Empirical Studies Informatiker, Anforderungsingenieure, Wissenschaftler (DE-588)4113937-9 Hochschulschrift gnd-content Requirements engineering (DE-588)4213997-1 s Industrielle Kooperation (DE-588)4026844-5 s Stakeholder (DE-588)4300861-6 s Softwareentwicklung (DE-588)4116522-6 s DE-604 Bomarius, Frank edt Liggesmeyer, Peter 1963- (DE-588)112090362 edt Rombach, Hans Dieter 1953- (DE-588)172348382 edt Fraunhofer-Institut für Experimentelles Software Engineering (DE-588)10050408-5 isb Fraunhofer IRB-Verlag (DE-588)4786605-6 pbl PhD Theses in Experimental Software Engineering 72 (DE-604)BV022658864 72 X:MVB text/html http://deposit.dnb.de/cgi-bin/dokserv?id=757a4aa6456f49569da597855bcca2bc&prov=M&dok_var=1&dok_ext=htm Inhaltstext DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=035067141&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis Digitalisierung UB Passau - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=035067141&sequence=000003&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p vlb 20230526 DE-101 https://d-nb.info/provenance/plan#vlb |
spellingShingle | Koch, Matthias Scenario-based derivation of digital ecosystem requirements PhD Theses in Experimental Software Engineering Softwareentwicklung (DE-588)4116522-6 gnd Industrielle Kooperation (DE-588)4026844-5 gnd Requirements engineering (DE-588)4213997-1 gnd Stakeholder (DE-588)4300861-6 gnd |
subject_GND | (DE-588)4116522-6 (DE-588)4026844-5 (DE-588)4213997-1 (DE-588)4300861-6 (DE-588)4113937-9 |
title | Scenario-based derivation of digital ecosystem requirements |
title_auth | Scenario-based derivation of digital ecosystem requirements |
title_exact_search | Scenario-based derivation of digital ecosystem requirements |
title_full | Scenario-based derivation of digital ecosystem requirements Matthias Koch |
title_fullStr | Scenario-based derivation of digital ecosystem requirements Matthias Koch |
title_full_unstemmed | Scenario-based derivation of digital ecosystem requirements Matthias Koch |
title_short | Scenario-based derivation of digital ecosystem requirements |
title_sort | scenario based derivation of digital ecosystem requirements |
topic | Softwareentwicklung (DE-588)4116522-6 gnd Industrielle Kooperation (DE-588)4026844-5 gnd Requirements engineering (DE-588)4213997-1 gnd Stakeholder (DE-588)4300861-6 gnd |
topic_facet | Softwareentwicklung Industrielle Kooperation Requirements engineering Stakeholder Hochschulschrift |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=757a4aa6456f49569da597855bcca2bc&prov=M&dok_var=1&dok_ext=htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=035067141&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=035067141&sequence=000003&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV022658864 |
work_keys_str_mv | AT kochmatthias scenariobasedderivationofdigitalecosystemrequirements AT bomariusfrank scenariobasedderivationofdigitalecosystemrequirements AT liggesmeyerpeter scenariobasedderivationofdigitalecosystemrequirements AT rombachhansdieter scenariobasedderivationofdigitalecosystemrequirements AT fraunhoferinstitutfurexperimentellessoftwareengineering scenariobasedderivationofdigitalecosystemrequirements AT fraunhoferirbverlag scenariobasedderivationofdigitalecosystemrequirements |