Cybernetics oriented programming (CYBOP): an investigation on the applicability of inter-disciplinary concepts to software system development
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Format: | Buch |
Sprache: | English |
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Ilmenau
Tux Tax
2006
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Online-Zugang: | Inhaltstext Ausführliche Beschreibung Inhaltsverzeichnis Inhaltsverzeichnis |
Beschreibung: | Zugl.: Ilmenau, Techn. Univ., Diss., 2006 |
Beschreibung: | XXIII, 512 S. graph. Darst. 25 cm |
ISBN: | 9783981089806 3981089804 |
Internformat
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CHRISTIAN HELLER CYBERNETICS ORIENTED PROGRAMMING (CYBOP) AN
INVESTIGATION ON THE APPLICABILITY OF INTER-DISCIPLINARY CONCEPTS TO
SOFTWARE SYSTEM DEVELOPMENT TUX TBK K - ILMENAU CONTENTS PREFACE ** 1
INTRADUCTION 1 1.1 INFORMATION SCIENCE 1 1.2 SOFTWARE CRISIS 2 1.3
MOTIVATION 4 1.4 CYBERNETICS 5 1.5 METHOD 5 1.6 EXAMPLE 7 1.7 STRUCTURE
8 1 BASTES 11 2 SOFTWARE ENGINEERING PROCESS 13 2.1 WATERFALL PROCESS .
. . . 14 2.2 ITERATIVE PROCESS 14 2.3 AGIIE METHODOLOGIES , 16 2.4
EXTREME PROGRAMMING 17 2.5 METHOD MATURITY 19 2.6 ABSTRACTION GAPS 19
2.7 SOFTWARE ARCHITECTURE 22 3 PHYSICAL ARCHITECTURE 25 3.1 PROCESS 26
3.2 APPLICATION SERVER 27 CONTENTS 3.3 DATABASE SERVER 28 3.4
PRESENTATION CLIENT 30 3.5 WEB CFIENT AND SERVER GJ 3.6 LOCAL PROCESS 32
3.7 HUMAN USER 33 3.8 PEER NODE 34 3.9 REMOTE 5ERVER 35 3.10 LEGACY HOST
3G 3.11 SYSTEMS INTERCONNECTION 0,7 3.12 SCALABILITY GG 3.13 MISLEADING
TIERS 40 4 LOGICAL ARCHITECTURE 43 4.1 PARADIGM AND LANGUAGE 45 4.1.1
LANGUAGE HISTORY 45 4.1.2 PARADIGM OVERVIEW 47 4.1.3 HARDWARE
ARCHITECTURE 4 ^ 4.1.4 MACHINE LANGUAGE GL 4.1.5 ASSEMBLY LANGUAGE 54
4.1.6 STRUCTURED- AND PROCEDURAL PROGRAMMING 51 4.1.7 SYSTEM PROGRAMMING
57 4.1.8 TYPELESS PROGRAMMING 5G 4.1.9 FUNCTIONAL PROGRAMMING 5G 4.1.10
LOGICAL PROGRAMMING 5Q 4.1.11 DATA MANIPULATION LANGUAGE GL 4.1.12
MARKUP LANGUAGE 54 4.1.13 PAGE DESCRIPTION LANGUAGE SSSS 4.1.14 HARDWARE
DESCRIPTION LANGUAGE 67 4.1.15 OBJECT ORIENTED PROGRAMMING GG 4.2
PATTERN 79 4.2.1 ARCHITECTURAL G4 4.2.2 DESIGN G7 4.2.3 IDIOMATIC 103
4.2.4 FRAMEWORK IR» 4.3 COMPONENT ORIENTED PROGRAMMING 4Q9 4.3.1
INVERSION OF CONTROL IIN 4.3.2 COMPONENT LIFECYCLE 4.3.3 INTERFACE AND
IMPLEMENTATION U- 2 4.3.4 SEPARATION OF CONCERNS 4.3.5 SPREAD
FUNCTIONALITY 115 4.3.6 ASPECT ORIENTED PROGRAMMING 4.3.7 AGENT ORIENTED
PROGRAMMING 12UE 1 22 4.4 DOMAIN ENGINEERING 4.4.1 TOOL &. MATERIAL 124
4.4.2 GENERICS 124 4.4.3 DOMAIN SPECIFIC LANGUAGE 125 4.4.4
SPECIFICATION LANGUAGE 4.4.5 GENERATIVE PROGRAMMING 1-31 4.4.6 MODEL
DRIVEN ARCHITECTURE * 31 4.4.7 MODEL AND CODE 133 1 ^ 4.5 KNOWLEDGE
ENGINEERING 4.5.1 REPRESENTATION PRINCIPLES 4.5.2 DATE AND RULE 137
4.5.3 AGENT COMMUNICATION LANGUAGE 13S 4.5.4 SEMANTIC WEB 141 4.6
CONCEPTUAL NETWORK 4.6.1 ONTOS AND LOGOS * 4.6.2 APPLICABILITY 145 4.6.3
TWO LEVEL SEPARATION 145 4.6.4 BUILDING BLOCKS 146 1 JUE 4.6.5
TERMINOLOGY 4.6.6 SCHEINES 149 4.6.7 ONTOLOGY 152 4.6.8 ARCHETYPE IO,
4.6.9 DUAL MODEL APPROACH 155 1 ^K 4.7 MODELLING MISTAKES EXTENDED
MOTIVATION C ,* U 162 5.1 IDEA 5.2 RECAPITULATION 163 5.3 APPROACH 1D0 X
CONTENTS II CONTRIBUTION 171 6 STATICS AND DYNAMICS 173 6.1 VIRTUAL- AND
REAL WORLD 173 6.1.1 WIND AND BODY 173 6.1.2 BRAIN REGIONS 176 6.1.3
CELL DIVISION 177 6.1.4 SHORT- AND LONG-TERM MEMORY 178 6.1.5
INFORMATION PROCESSING MODEL 180 6.1.6 PERSISTENT AND TRANSIENT 181 6.2
SYSTEM AND KNOWLEDGE 182 6.2.1 CONFIGURABLE OR PROGRAMMABLE 182 6.2.2
CODE REDUCTION 184 6.2.3 BASE- AND META LEVEL 185 6.2.4 REFERENCE- AND
ARCHETYPE MODEL 185 6.2.5 COMMON- AND CROSSCUTTING CONCERNS 186 6.2.6
APPLICATION AND DOMAIN 187 6.2.7 PLATFORM SPECIFIC AND -INDEPENDENT 189
6.2.8 AGENT WITH MENTAL STATE 189 6.2.9 DATA GARDEN 190 6.3 KNOWLEDGE
MANAGEMENT SYSTEM 192 6.3.1 HARDWARE CONNECTION 192 6.3.2 MEMORY 194
6.3.3 PROCESSING 194 6.3.4 LIFECYCLE 196 7 KNOWLEDGE SCHEMA 199 7.1
HUMAN THINKING 199 7.1.1 BASIC BEHAVIOUR 199 7.1.2 CONGLOMERATE 201
7.1.3 ABSTRACTION 202 7.1.4 INTERACTION 207 7.1.5 INTRINSIC OR EXTRINSIC
PROPERTIES 210 7.1.6 LANGUAGE 210 7.1.7 QUALITY AND QUANTITY 213 7.2
DESIGN REFLECTIONS 214 CONTENTS XI 7.2.1 PATTERN SYSTEMATICS 214 7.2.2
RECOMMENDATION 216 7.2.3 MODEL METAMORPHOSIS 217 7.2.4 STRUCTURE BY
HIERARCHY 221 7.2.5 ASSOCIATION ELIMINATION , 222 7.2.6 HIERARCHICAL
ALGORITHM 224 7.2.7 FRAMEWORK EXAMPLE 225 7.2.8 CATEGORISATION VERSUS
COMPOSITION 229 7.3 KNOWLEDGE REPRESENTATION 230 7.3.1 KNOWLEDGE
ONTOLOGY 230 7.3.2 SCHEMA 234 7.3.3 DOUBLE HIERARCHY 235 7.3.4 MODELLING
EXAMPLE 237 7.3.5 CONTAINER UNIFICATION 239 7.3.6 UNIVERSAL MEMORY
STRUCTURE 239 STATE AND LOGIC 243 8.1 A CHANGING WORLD 243 8.1.1 CHANGE
FOLLOWS RULES 243 8.1.2 FROM PHILOSOPHY TO MATHEMATICS 244 8.1.3 SYSTEM
247 8.1.4 SEIF AWARENESS 250 8.1.5 COMMUNICATION 253 8.2 TRANSLATOR
ARCHITECTURE 257 8.2.1 INTERACTING SYSTEMS 257 8.2.2 BASIC PATTERNS 259
8.2.3 PLACEMENT 261 8.2.4 SIMP/IFICATION 262 8.2.5 COMMUNICATION MODE)
263 8.3 KNOWLEDGE ABSTRACTION AND -MANIPULATION 265 8.3.1 ALGORITHM 265
8.3.2 OPERATIONS 266 8.3.3 PRIMITIVES 266 8.3.4 LOGIC MANIPULATES STATE
267 8.3.5 WITHOUT CAPSULES? 269 XII CONTENTS III PROOF 271 9 CYBERNETICS
ORIENTED LANGUAGE 273 9.1 FORMALITY 273 9.2 DEFINITION 274 9.2.1 SYNTAX
275 9.2.2 VOCABULARY 276 9.2.3 SEMANTICS 281 9.2.4 TAG-ATTRIBUTE
SWAPPING : 2S3 9.3 CONSTRUCTS 284 9.3.1 STATE EXAMPLES 284 9.3.2 LOGIC
EXAMPLES 289 9.3.3 SPECIAL EXAMPLES 293 9.3.4 INHERITANCE AS PROPERTY
299 9.3.5 CONTAINER MAPPING 300 9.3.6 HIDDEN PATTERNS 30] 9.4 COMPARISON
301 9.4.1 RDF 302 9.4.2 OWL 303 9.5 TOOI SUPPORT 305 9.5.1 TEMPLATE
EDITOR 305 9.5.2 KNOWLEDGE DESIGNER 306 9.5.3 MODEL VIEWER 310 10
CYBERNETICS ORIENTED INTERPRETER 313 10.1 ARCHITECTURE 313 10.1.1
OVERALL PLACEMENT 313 10.1.2 INNER STRUCTURE 314 10.1.3 PATTERN MERGER
316 10.1.4 KERNE! CONCEPTS 317 10.1.5 SECURITY 319 10.2 FUNCTIONALITY IN
DETAIL 321 10.2.1 PROCESS LAUNCHING 322 10.2.2 LIFECYCIE MANAGEMENT 322
10.2.3 SIGNAL CHECKING 323 10.2.4 SIGNAL HANDLING 323 CONTENTS XIII
10.2.5 OPERATION EXECUTION 324 10.2.6 MODEJ TRANSITION , , 324 10.2.7
DATA CREATION 325 10.3 IMPLEMENTATION 327 10.3.1 SIMPLIFIED C 327 10.3.2
CORRECTED C 32S 10.3.3 USED LIBRARIES 328 10.3.4 DEVELOPMENT ENVIRONMENT
329 10.3.5 ERROR HANDLING 329 10.3.6 DISTRIBUTION AND INSTALLATION 330
11 RES MEDICINAE 331 11.1 PROJECT 331 11.1.1 FREE AND OPEN SOURCE
SOFTWARE 331 11.1.2 PORTALS AND SERVICES 332 11.1.3 TOOLS 333 11.1.4
CONTRIBUTORS 334 11.2 ANAIYSIS 335 11.2.1 REQUIREMENTS DOCUMENT 335
11.2.2 EHR & CO 335 11.2.3 EPISODE SSASED 337 11.2.4 EVIDENCE BASED 338
11.2.5 CONTINUITY OF CARE 339 11.2.6 CORE MODEL 339 11.3 STANDARDS 341
11.3.1 OVERVIEW 341 11.3.2 RECORD MODELLING 342 11.3.3 MESSAGING AND
COMMUNICATION 344 11.3.4 TERMINOLOGY SYSTEMS 347 11.3.5 FURTHER
STANDARDS 352 11.3.6 STANDARDS DEVELOPMENT 355 11.3.7 IMPLICATION 356
11.4 REALISATION 357 11.4.1 STUDENT WORKS 357 11.4.2 FIRST TRIAL 359
11.4.3 KNOWLEDGE SEPARATION 360 CONTENTS 11.4.4 REIMPLEMENTATION 11.4.5
MODULE MODELLING 362 363 IV COMPLETION 12 REVIEW 12.1 VALIDATION 12.1.1
DISTINCTION OF STATICS AND DYNAMICS 12.1.2 USAGE OF A DOUBLE-HIERARCHY
KNOWLEDGE SEHE 12.1.3 SEPARATION OF STATE- AND LOGIC KNOWLEDGE . 12.2
EVALUATION 12.2.1 KNOW/EDGE TRIUMVIRATE 12.2.2 COMMON KNOWLEDGE
ABSTRACTION 12.2.3 LONG-LIFE SOFTWARE SYSTEM 12.3 LIMITS . . 13 SUMMARY
AND OUTLOOK 13.1 SUMMARY 13.2 FUTURE WORKS . . 13.3 FICTION . . . . 14
APPENDICES 14.1 ABBREVIATIONS 14.2 REFERENCES 14.3 FIGURES 14.4 TABLES
14.5 HISTORY 14.6 MIGRATION TO CYBOL 14.7 CALL FOR DEVELOPERS 14.8
ABSTRACT 14.9 KURZFASSUNG 14.10LICENCES 14.10.1 GNU GENERAL PUBLIC
LICENSE 14.10.2 GNU FREE DOCUMENTATION LICENSE 14.11LNDEX 367 369 . 369
. 370 . 372 . 373 374 374 376 377 378 381 381 383 387 389 . 389 . 409 .
437 . 443 . 445 . 453 . 455 . 457 . 459 . 461 . 461 . 469 . 479 |
adam_txt |
CHRISTIAN HELLER CYBERNETICS ORIENTED PROGRAMMING (CYBOP) AN
INVESTIGATION ON THE APPLICABILITY OF INTER-DISCIPLINARY CONCEPTS TO
SOFTWARE SYSTEM DEVELOPMENT TUX TBK K - ILMENAU CONTENTS PREFACE ** 1
INTRADUCTION 1 1.1 INFORMATION SCIENCE 1 1.2 SOFTWARE CRISIS 2 1.3
MOTIVATION 4 1.4 CYBERNETICS 5 1.5 METHOD 5 1.6 EXAMPLE 7 1.7 STRUCTURE
8 1 BASTES 11 2 SOFTWARE ENGINEERING PROCESS 13 2.1 WATERFALL PROCESS .
. . . 14 2.2 ITERATIVE PROCESS 14 2.3 AGIIE METHODOLOGIES , 16 2.4
EXTREME PROGRAMMING 17 2.5 METHOD MATURITY 19 2.6 ABSTRACTION GAPS 19
2.7 SOFTWARE ARCHITECTURE 22 3 PHYSICAL ARCHITECTURE 25 3.1 PROCESS 26
3.2 APPLICATION SERVER 27 CONTENTS 3.3 DATABASE SERVER 28 3.4
PRESENTATION CLIENT 30 3.5 WEB CFIENT AND SERVER GJ 3.6 LOCAL PROCESS 32
3.7 HUMAN USER 33 3.8 PEER NODE 34 3.9 REMOTE 5ERVER 35 3.10 LEGACY HOST
3G 3.11 SYSTEMS INTERCONNECTION 0,7 3.12 SCALABILITY GG 3.13 MISLEADING
TIERS 40 4 LOGICAL ARCHITECTURE 43 4.1 PARADIGM AND LANGUAGE 45 4.1.1
LANGUAGE HISTORY 45 4.1.2 PARADIGM OVERVIEW 47 4.1.3 HARDWARE
ARCHITECTURE 4 ^ 4.1.4 MACHINE LANGUAGE GL 4.1.5 ASSEMBLY LANGUAGE 54
4.1.6 STRUCTURED- AND PROCEDURAL PROGRAMMING 51 4.1.7 SYSTEM PROGRAMMING
57 4.1.8 TYPELESS PROGRAMMING 5G 4.1.9 FUNCTIONAL PROGRAMMING 5G 4.1.10
LOGICAL PROGRAMMING 5Q 4.1.11 DATA MANIPULATION LANGUAGE GL 4.1.12
MARKUP LANGUAGE 54 4.1.13 PAGE DESCRIPTION LANGUAGE SSSS 4.1.14 HARDWARE
DESCRIPTION LANGUAGE 67 4.1.15 OBJECT ORIENTED PROGRAMMING GG 4.2
PATTERN 79 4.2.1 ARCHITECTURAL G4 4.2.2 DESIGN G7 4.2.3 IDIOMATIC 103
4.2.4 FRAMEWORK IR» 4.3 COMPONENT ORIENTED PROGRAMMING 4Q9 4.3.1
INVERSION OF CONTROL IIN 4.3.2 COMPONENT LIFECYCLE 4.3.3 INTERFACE AND
IMPLEMENTATION U- 2 4.3.4 SEPARATION OF CONCERNS 4.3.5 SPREAD
FUNCTIONALITY 115 4.3.6 ASPECT ORIENTED PROGRAMMING 4.3.7 AGENT ORIENTED
PROGRAMMING 12UE 1 22 4.4 DOMAIN ENGINEERING 4.4.1 TOOL &. MATERIAL 124
4.4.2 GENERICS 124 4.4.3 DOMAIN SPECIFIC LANGUAGE 125 4.4.4
SPECIFICATION LANGUAGE 4.4.5 GENERATIVE PROGRAMMING 1-31 4.4.6 MODEL
DRIVEN ARCHITECTURE * 31 4.4.7 MODEL AND CODE 133 1 ^ 4.5 KNOWLEDGE
ENGINEERING 4.5.1 REPRESENTATION PRINCIPLES 4.5.2 DATE AND RULE 137
4.5.3 AGENT COMMUNICATION LANGUAGE 13S 4.5.4 SEMANTIC WEB 141 4.6
CONCEPTUAL NETWORK 4.6.1 ONTOS AND LOGOS * 4.6.2 APPLICABILITY 145 4.6.3
TWO LEVEL SEPARATION 145 4.6.4 BUILDING BLOCKS 146 1 JUE 4.6.5
TERMINOLOGY 4.6.6 SCHEINES 149 4.6.7 ONTOLOGY 152 4.6.8 ARCHETYPE IO,
4.6.9 DUAL MODEL APPROACH 155 1 ^K 4.7 MODELLING MISTAKES EXTENDED
MOTIVATION C ,* U 162 5.1 IDEA 5.2 RECAPITULATION 163 5.3 APPROACH 1D0 X
CONTENTS II CONTRIBUTION 171 6 STATICS AND DYNAMICS 173 6.1 VIRTUAL- AND
REAL WORLD 173 6.1.1 WIND AND BODY 173 6.1.2 BRAIN REGIONS 176 6.1.3
CELL DIVISION 177 6.1.4 SHORT- AND LONG-TERM MEMORY 178 6.1.5
INFORMATION PROCESSING MODEL 180 6.1.6 PERSISTENT AND TRANSIENT 181 6.2
SYSTEM AND KNOWLEDGE 182 6.2.1 CONFIGURABLE OR PROGRAMMABLE 182 6.2.2
CODE REDUCTION 184 6.2.3 BASE- AND META LEVEL 185 6.2.4 REFERENCE- AND
ARCHETYPE MODEL 185 6.2.5 COMMON- AND CROSSCUTTING CONCERNS 186 6.2.6
APPLICATION AND DOMAIN 187 6.2.7 PLATFORM SPECIFIC AND -INDEPENDENT 189
6.2.8 AGENT WITH MENTAL STATE 189 6.2.9 DATA GARDEN 190 6.3 KNOWLEDGE
MANAGEMENT SYSTEM 192 6.3.1 HARDWARE CONNECTION 192 6.3.2 MEMORY 194
6.3.3 PROCESSING 194 6.3.4 LIFECYCLE 196 7 KNOWLEDGE SCHEMA 199 7.1
HUMAN THINKING 199 7.1.1 BASIC BEHAVIOUR 199 7.1.2 CONGLOMERATE 201
7.1.3 ABSTRACTION 202 7.1.4 INTERACTION 207 7.1.5 INTRINSIC OR EXTRINSIC
PROPERTIES 210 7.1.6 LANGUAGE 210 7.1.7 QUALITY AND QUANTITY 213 7.2
DESIGN REFLECTIONS 214 CONTENTS XI 7.2.1 PATTERN SYSTEMATICS 214 7.2.2
RECOMMENDATION 216 7.2.3 MODEL METAMORPHOSIS 217 7.2.4 STRUCTURE BY
HIERARCHY 221 7.2.5 ASSOCIATION ELIMINATION , 222 7.2.6 HIERARCHICAL
ALGORITHM 224 7.2.7 FRAMEWORK EXAMPLE 225 7.2.8 CATEGORISATION VERSUS
COMPOSITION 229 7.3 KNOWLEDGE REPRESENTATION 230 7.3.1 KNOWLEDGE
ONTOLOGY 230 7.3.2 SCHEMA 234 7.3.3 DOUBLE HIERARCHY 235 7.3.4 MODELLING
EXAMPLE 237 7.3.5 CONTAINER UNIFICATION 239 7.3.6 UNIVERSAL MEMORY
STRUCTURE 239 STATE AND LOGIC 243 8.1 A CHANGING WORLD 243 8.1.1 CHANGE
FOLLOWS RULES 243 8.1.2 FROM PHILOSOPHY TO MATHEMATICS 244 8.1.3 SYSTEM
247 8.1.4 SEIF AWARENESS 250 8.1.5 COMMUNICATION 253 8.2 TRANSLATOR
ARCHITECTURE 257 8.2.1 INTERACTING SYSTEMS 257 8.2.2 BASIC PATTERNS 259
8.2.3 PLACEMENT 261 8.2.4 SIMP/IFICATION 262 8.2.5 COMMUNICATION MODE)
263 8.3 KNOWLEDGE ABSTRACTION AND -MANIPULATION 265 8.3.1 ALGORITHM 265
8.3.2 OPERATIONS 266 8.3.3 PRIMITIVES 266 8.3.4 LOGIC MANIPULATES STATE
267 8.3.5 WITHOUT CAPSULES? 269 XII CONTENTS III PROOF 271 9 CYBERNETICS
ORIENTED LANGUAGE 273 9.1 FORMALITY 273 9.2 DEFINITION 274 9.2.1 SYNTAX
275 9.2.2 VOCABULARY 276 9.2.3 SEMANTICS 281 9.2.4 TAG-ATTRIBUTE
SWAPPING : 2S3 9.3 CONSTRUCTS 284 9.3.1 STATE EXAMPLES 284 9.3.2 LOGIC
EXAMPLES 289 9.3.3 SPECIAL EXAMPLES 293 9.3.4 INHERITANCE AS PROPERTY
299 9.3.5 CONTAINER MAPPING 300 9.3.6 HIDDEN PATTERNS 30] 9.4 COMPARISON
301 9.4.1 RDF 302 9.4.2 OWL 303 9.5 TOOI SUPPORT 305 9.5.1 TEMPLATE
EDITOR 305 9.5.2 KNOWLEDGE DESIGNER 306 9.5.3 MODEL VIEWER 310 10
CYBERNETICS ORIENTED INTERPRETER 313 10.1 ARCHITECTURE 313 10.1.1
OVERALL PLACEMENT 313 10.1.2 INNER STRUCTURE 314 10.1.3 PATTERN MERGER
316 10.1.4 KERNE! CONCEPTS 317 10.1.5 SECURITY 319 10.2 FUNCTIONALITY IN
DETAIL 321 10.2.1 PROCESS LAUNCHING 322 10.2.2 LIFECYCIE MANAGEMENT 322
10.2.3 SIGNAL CHECKING 323 10.2.4 SIGNAL HANDLING 323 CONTENTS XIII
10.2.5 OPERATION EXECUTION 324 10.2.6 MODEJ TRANSITION , , 324 10.2.7
DATA CREATION 325 10.3 IMPLEMENTATION 327 10.3.1 SIMPLIFIED C 327 10.3.2
CORRECTED C 32S 10.3.3 USED LIBRARIES 328 10.3.4 DEVELOPMENT ENVIRONMENT
329 10.3.5 ERROR HANDLING 329 10.3.6 DISTRIBUTION AND INSTALLATION 330
11 RES MEDICINAE 331 11.1 PROJECT 331 11.1.1 FREE AND OPEN SOURCE
SOFTWARE 331 11.1.2 PORTALS AND SERVICES 332 11.1.3 TOOLS 333 11.1.4
CONTRIBUTORS 334 11.2 ANAIYSIS 335 11.2.1 REQUIREMENTS DOCUMENT 335
11.2.2 EHR & CO 335 11.2.3 EPISODE SSASED 337 11.2.4 EVIDENCE BASED 338
11.2.5 CONTINUITY OF CARE 339 11.2.6 CORE MODEL 339 11.3 STANDARDS 341
11.3.1 OVERVIEW 341 11.3.2 RECORD MODELLING 342 11.3.3 MESSAGING AND
COMMUNICATION 344 11.3.4 TERMINOLOGY SYSTEMS 347 11.3.5 FURTHER
STANDARDS 352 11.3.6 STANDARDS DEVELOPMENT 355 11.3.7 IMPLICATION 356
11.4 REALISATION 357 11.4.1 STUDENT WORKS 357 11.4.2 FIRST TRIAL 359
11.4.3 KNOWLEDGE SEPARATION 360 CONTENTS 11.4.4 REIMPLEMENTATION 11.4.5
MODULE MODELLING 362 363 IV COMPLETION 12 REVIEW 12.1 VALIDATION 12.1.1
DISTINCTION OF STATICS AND DYNAMICS 12.1.2 USAGE OF A DOUBLE-HIERARCHY
KNOWLEDGE SEHE 12.1.3 SEPARATION OF STATE- AND LOGIC KNOWLEDGE . 12.2
EVALUATION 12.2.1 KNOW/EDGE TRIUMVIRATE 12.2.2 COMMON KNOWLEDGE
ABSTRACTION 12.2.3 LONG-LIFE SOFTWARE SYSTEM 12.3 LIMITS . . 13 SUMMARY
AND OUTLOOK 13.1 SUMMARY 13.2 FUTURE WORKS . . 13.3 FICTION . . . . 14
APPENDICES 14.1 ABBREVIATIONS 14.2 REFERENCES 14.3 FIGURES 14.4 TABLES
14.5 HISTORY 14.6 MIGRATION TO CYBOL 14.7 CALL FOR DEVELOPERS 14.8
ABSTRACT 14.9 KURZFASSUNG 14.10LICENCES 14.10.1 GNU GENERAL PUBLIC
LICENSE 14.10.2 GNU FREE DOCUMENTATION LICENSE 14.11LNDEX 367 369 . 369
. 370 . 372 . 373 374 374 376 377 378 381 381 383 387 389 . 389 . 409 .
437 . 443 . 445 . 453 . 455 . 457 . 459 . 461 . 461 . 469 . 479 |
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author | Heller, Christian 1971- |
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discipline | Informatik Mess-/Steuerungs-/Regelungs-/Automatisierungstechnik / Mechatronik |
discipline_str_mv | Informatik Mess-/Steuerungs-/Regelungs-/Automatisierungstechnik / Mechatronik |
format | Book |
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genre | (DE-588)4113937-9 Hochschulschrift gnd-content |
genre_facet | Hochschulschrift |
id | DE-604.BV022822144 |
illustrated | Illustrated |
index_date | 2024-07-02T18:40:31Z |
indexdate | 2024-07-20T09:23:48Z |
institution | BVB |
isbn | 9783981089806 3981089804 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-016027489 |
oclc_num | 173276048 |
open_access_boolean | 1 |
owner | DE-20 DE-83 |
owner_facet | DE-20 DE-83 |
physical | XXIII, 512 S. graph. Darst. 25 cm |
publishDate | 2006 |
publishDateSearch | 2006 |
publishDateSort | 2006 |
publisher | Tux Tax |
record_format | marc |
spelling | Heller, Christian 1971- Verfasser (DE-588)113108796 aut Cybernetics oriented programming (CYBOP) an investigation on the applicability of inter-disciplinary concepts to software system development Christian Heller Ilmenau Tux Tax 2006 XXIII, 512 S. graph. Darst. 25 cm txt rdacontent n rdamedia nc rdacarrier Zugl.: Ilmenau, Techn. Univ., Diss., 2006 Computer software Development Kybernetik-orientierte Programmierung (DE-588)7558293-4 gnd rswk-swf (DE-588)4113937-9 Hochschulschrift gnd-content Kybernetik-orientierte Programmierung (DE-588)7558293-4 s DE-604 text/html http://deposit.dnb.de/cgi-bin/dokserv?id=2890156&prov=M&dok_var=1&dok_ext=htm Inhaltstext text/html http://www.cybop.net/ Ausführliche Beschreibung http://www.gbv.de/dms/ilmenau/toc/522237754helle.PDF kostenfrei Inhaltsverzeichnis GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016027489&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Heller, Christian 1971- Cybernetics oriented programming (CYBOP) an investigation on the applicability of inter-disciplinary concepts to software system development Computer software Development Kybernetik-orientierte Programmierung (DE-588)7558293-4 gnd |
subject_GND | (DE-588)7558293-4 (DE-588)4113937-9 |
title | Cybernetics oriented programming (CYBOP) an investigation on the applicability of inter-disciplinary concepts to software system development |
title_auth | Cybernetics oriented programming (CYBOP) an investigation on the applicability of inter-disciplinary concepts to software system development |
title_exact_search | Cybernetics oriented programming (CYBOP) an investigation on the applicability of inter-disciplinary concepts to software system development |
title_exact_search_txtP | Cybernetics oriented programming (CYBOP) an investigation on the applicability of inter-disciplinary concepts to software system development |
title_full | Cybernetics oriented programming (CYBOP) an investigation on the applicability of inter-disciplinary concepts to software system development Christian Heller |
title_fullStr | Cybernetics oriented programming (CYBOP) an investigation on the applicability of inter-disciplinary concepts to software system development Christian Heller |
title_full_unstemmed | Cybernetics oriented programming (CYBOP) an investigation on the applicability of inter-disciplinary concepts to software system development Christian Heller |
title_short | Cybernetics oriented programming (CYBOP) |
title_sort | cybernetics oriented programming cybop an investigation on the applicability of inter disciplinary concepts to software system development |
title_sub | an investigation on the applicability of inter-disciplinary concepts to software system development |
topic | Computer software Development Kybernetik-orientierte Programmierung (DE-588)7558293-4 gnd |
topic_facet | Computer software Development Kybernetik-orientierte Programmierung Hochschulschrift |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=2890156&prov=M&dok_var=1&dok_ext=htm http://www.cybop.net/ http://www.gbv.de/dms/ilmenau/toc/522237754helle.PDF http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016027489&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT hellerchristian cyberneticsorientedprogrammingcybopaninvestigationontheapplicabilityofinterdisciplinaryconceptstosoftwaresystemdevelopment |