Modeling & Simulation-Based Data Engineering: Introducing Pragmatics into Ontologies for Net-Centric Information Exchange

Zeigler, Bernard P.; Hammonds, Phillip E

In stock
Regular price 38.250 KD inc. VAT
License
Table of contents
  • Contentsvii
  • Forewordxi
  • Part I: Foundations1
  • Chapter 1: Ontologies and Information Exchange: A Pragmatic Framework3
  • Ontology for Social Relations on an Island4
  • Definition of Ontology5
  • Ontology Summary: Prelude to the Framework in This Book8
  • Pragmatics: The Information Exchange Framework9
  • Summary12
  • References12
  • Chapter 2: Background: Syntax, Semantics, and Ontology Environments13
  • Semantics: Testing Web Services14
  • Syntax and XML15
  • Semantics „ Ontologys Ability to Match Its Set of World Structures to the Pragmatic Frames It Su17
  • XML Schema: Strengths and Limitations17
  • UML22
  • UML and XML Combined: Strengths and Limitations24
  • Open Knowledge Base Connectivity Ontology25
  • Semantic Web Ontologies and Environments28
  • Summary29
  • References30
  • Appendix A: Review of OKBC Knowledge Specification (based on13)31
  • Chapter 3: Formulating Pragmatic Frames and Ontologies: Geospatial Sensor Data35
  • Geospatial Imagery Sensors Background37
  • Pragmatic Frame for Downstream Image Processing41
  • Sensor Model44
  • Pragmatic Frame Principles: Maxims for Effective Conversations45
  • Summary48
  • References49
  • Part II: System Entity Structure Concepts and Operations51
  • Chapter 4: Introduction to the System Entity Structure53
  • Variables54
  • Aspects54
  • Specializations56
  • Interaction between Aspects and Specializations57
  • Interaction among Specializations59
  • multiAspects60
  • Variables and Range Specifications63
  • Range Restrictions64
  • Computed Values and Formulas66
  • Summary68
  • References69
  • Chapter 5: System Entity Structure Axioms: Interpretations and Applications71
  • Relational Specification of the SES72
  • Application of Uniformity76
  • Satisfaction of the Axioms78
  • Unique Path Labeling81
  • Pruning Process: Brief Introduction82
  • System Entity Structure with multiAspects82
  • Inheritance84
  • Summary87
  • Problems88
  • References88
  • Chapter 6: System Entity Structure: Computational Representations90
  • Creating an Instance of Class sesRelation91
  • Representing the SES as a DOM94
  • Specifying the SES as an XML File96
  • Creating a DOM from an SES XML File98
  • Writing from a DOM for an SES into a DTD98
  • Testing an SES for Validity100
  • Schema Representation of SES102
  • Schema Validation of SES106
  • Natural Language Specification of an SES107
  • Summary107
  • References108
  • Appendix A: Syntax for Natural Language Specification of an SES108
  • Chapter 7: Mappings: Transformations and Restructurings113
  • Tree Operations: Eliminating Specialization and Aspect Labels114
  • Restructuring of multiAspects117
  • Restructuring Variables and Specializations121
  • Partitioning Continuous Ranges Using Specializations123
  • Converting between Variables and Aspects123
  • Increasing Specialization Specificity125
  • Summary126
  • Chapter 8: Pruned Entity Structures and XML Schema Instances128
  • Pruned Entity Structures130
  • Pruning an SES with multiAspects135
  • Prunable Entity Structures135
  • The conformsTo Relation138
  • When Is Pruning Complete?139
  • Pruning Using SES/JAVA Tools141
  • Validation and Completion State of PES144
  • Summary145
  • Reference145
  • Chapter 9: Constrained Pruning146
  • Constraints on Specialization Selections146
  • Rule-based Approach147
  • Relation-based Approach154
  • Implementation157
  • Relation-based Pruning for multiAspects160
  • Summary165
  • References165
  • Appendix A: Logical Formulation of Selection Rules165
  • Appendix B: Theory Support for Relation-based Pruning167
  • Chapter 10: Pruned Entity Structures: Data Extraction and Change-based Information Exchange176
  • Extracting Data from Pruned Entity Structures177
  • Using Context to Shorten Path Identifiers179
  • Change-based Information Exchange183
  • Summary186
  • Reference187
  • Appendix A: Top Ancestor as Context Information187
  • Part III: Modeling and Simulation and Data Engineering193
  • Chapter 11: Hierarchical Systems, Models, and Simulations: The SES Ontology195
  • Why Hierarchical Structure?196
  • Hierarchical Modular Simulation Models „ Universe of Discourse for the SES Ontology197
  • The Levels of System Specifications199
  • Dynamic Data Representations201
  • Operations on Event Sets and DEVS Model Realizations203
  • Constructing Hierarchical Event Sets207
  • Summary208
  • References208
  • Chapter 12: Managing System Entity Structures: Composing Large Systems210
  • Composing Hierarchical Systems and Models214
  • Targeted Access to Substructures217
  • Decomposition218
  • Summary218
  • Chapter 13: Harmonizing Data Representations and Ontologies within Pragmatic Frames219
  • Harmonization: Pragmatic Equivalence222
  • Harmonization of Data Formats225
  • Need for More Structured Representation227
  • Current Tools for Ontology Integration228
  • Harmonization Supported by the SES228
  • Measuring Commonality231
  • Harmonization: Increasing Commonality Via Restructuring232
  • Tracking Restructurings236
  • Synchronizing Prunings from Harmonized SESs237
  • Summary239
  • References240
  • Chapter 14: Geospatial Sensor Data: The Universal Phase History Data (UPHD) Standard242
  • Background: Synthetic Aperture Radar Sensing243
  • Goals for UPHD Standard Development245
  • Universality and Scope of the UPHD Standard247
  • Approach: Syntactic, Semantic, and Pragmatic250
  • Relation to Systems Modeling and Simulation251
  • Generic Formulation of an SAR System251
  • Components of the SES252
  • Wave Form Parameters (WF)253
  • Wideband Vector Header Data (VH)256
  • Spatial Data about the Platform/Vehicle (SV)256
  • UPHD Global Range Definitions262
  • Managing the UPHD Master and Its Components264
  • Complexity Measures of the UPHD and Its Components265
  • Summary269
  • References269
  • Appendix A: Abbreviations269
  • Appendix B: UPHD Table of All Paths270
  • Chapter 15: Processing Networks and Pragmatic Frames273
  • Processing Network Pragmatics274
  • Layered Processing Networks277
  • Repository of Discoverable Data284
  • Dynamically Evolving Processing Networks285
  • Summary286
  • References287
  • Chapter 16: Dynamic Pragmatics: Issues and Methodology288
  • Information Exchange between Humans, Systems, and Services290
  • Static Pragmatic Frames295
  • Managing Pragmatic Equivalence within the SES301
  • Static Pragmatic Frame Analysis303
  • Dynamic Pragmatics303
  • How Pragmatics Enhances Semantics306
  • Summary308
  • References309
  • Appendix A: Dynamic Harmonization Goal-seeking Control Theory Analogy310
  • Appendix B: Pragmatic Frame Conjecture310
  • Part IV: Testing in Net-Centric Environments321
  • Chapter 17: Testing in a Net-Centric Environment: Technology Basis323
  • Introducing Automation into Traditional Testing of Standards Conformance324
  • Employing Agent-based Technology for Web-Services Testing337
  • Summary354
  • References355
  • Appendix A: Infusion of Modeling and Simulation into Defense Acquisition356
  • Appendix B: Opportunistic Message Tester357
  • Chapter 18: Testing in a Net-Centric Environment: Multiple Levels361
  • Simultaneous Testing at Multiple Levels368
  • Integrated Architectures for System Development and Testing372
  • Summary382
  • References383
  • Appendix A: Testing for Pruning Rule Satisfaction385
  • Chapter 19: Bringing It All Together: Modeling and Simulation-based Data Engineering388
  • Revisiting the SES Framework390
  • Geographic Information Representation in UML and Encoding in XML394
  • Web Ontology Language (OWL)400
  • UML and Ontology Development403
  • The SES Framework within the UML Context404
  • Summary412
  • Further Research and Development412
  • References412
  • Appendix A: Scalable Entity Structure Modeler (SESM)413
  • Glossary418
  • Index423
Book details
  • Vendor Elsevier S & T
  • SKU 9780123725158
  • ISBN-13 9780080550541
  • Author Zeigler, Bernard P.; Hammonds, Phillip E
  • Category Computers
  • Subject Data Modeling & Design

Do you have questions about this book?

Ask an expert!

Data Engineering has become a necessary and critical activity for business, engineering, and scientific organizations as the move to service oriented architecture and web services moves into full swing. Notably, the US Department of Defense is mandating that all of its agencies and contractors assume a defining presence on the Net-centric Global Information Grid. This book provides the first practical approach to data engineering and modeling, which supports interoperabililty with consumers of the data in a service- oriented architectures (SOAs). Although XML (eXtensible Modeling Language) is the lingua franca for such interoperability, it is not sufficient on its own. The approach in this book addresses critical objectives such as creating a single representation for multiple applications, designing models capable of supporting dynamic processes, and harmonizing legacy data models for web-based co-existence. The approach is based on the System Entity Structure (SES) which is a well-defined structure, methodology, and practical tool with all of the functionality of UML (Unified Modeling Language) and few of the drawbacks. The SES originated in the formal representation of hierarchical simulation models. So it provides an axiomatic formalism that enables automating the development of XML dtds and schemas, composition and decomposition of large data models, and analysis of commonality among structures.

Zeigler and Hammond include a range of features to benefit their readers. Natural language, graphical and XML forms of SES specification are employed to allow mapping of legacy meta-data. Real world examples and case studies provide insight into data engineering and test evaluation in various application domains. Comparative information is provided on concepts of ontologies, modeling and simulation, introductory linguistic background, and support options enable programmers to work with advanced tools in the area. The website of the Arizona Center for Integrative Modeling and Simulation, co-founded by Zeigler in 2001, provides links to downloadable software to accompany the book.

* The only practical guide to integrating XML and web services in data engineering
* Introduces linguistic levels of interoperability for effective information exchange
* Covers the interoperability standards mandated by national and international agencies
* Complements Zeigler's classic THEORY OF MODELING AND SIMULATION