Model-driven engineering (MDE) offers a promising approach to realize systems of systems (SoS). However, MDE has largely been unachieved in complex dynamical systems and netcentric SoS, in part because modeling and simulation frameworks are not designed for SoS composability. Addressing this gap, this groundbreaking book presents a platform-independent modeling and simulation methodology for realizing the MDE vision using DEVS Unified Process (DUNIP). Addressing the increasing complexity facing heterogeneous systems, it provides a foundation for netcentric SoS software and systems engineering and executable architectures using DoDAF.…mehr
Model-driven engineering (MDE) offers a promising approach to realize systems of systems (SoS). However, MDE has largely been unachieved in complex dynamical systems and netcentric SoS, in part because modeling and simulation frameworks are not designed for SoS composability. Addressing this gap, this groundbreaking book presents a platform-independent modeling and simulation methodology for realizing the MDE vision using DEVS Unified Process (DUNIP). Addressing the increasing complexity facing heterogeneous systems, it provides a foundation for netcentric SoS software and systems engineering and executable architectures using DoDAF.
Saurabh Mittal is the founder and principal scientist at Dunip Technologies, which he manages in his free time. He is currently a full-time research scientist at L-3 Communications and is a contractor to the U.S. Air Force Research Laboratory, Wright-Patterson Air Force Base, Ohio. In this capacity, he is working on large-scale cognitive M&S, cognitive domain ontologies extending SES theory, and various other cross-directorate M&S integration and interoperability efforts using architecture frameworks such as the Department of Defense Architecture Framework (DoDAF). He is a recipient of the highest civilian contractor recognition, the "Golden Eagle" award, by the Joint Interoperability Test Command, Defense Information Systems Agency, U.S. DoD. He serves on various conference program committees and is a reviewer for many prestigious international journals. He is also interested in open systems research, artificial intelligence, complex adaptive systems, metamodeling, and systems interoperability. José L. Risco Martín is an associate professor in the Computer Architecture and Automation Department of Universidad Complutense de Madrid (UCM), Spain. His research interests focus on the design methodologies for integrated systems and high-performance embedded systems, including new modeling frameworks to explore thermal management techniques for multiprocessor system-on-chip, novel architectures for logic and memories in forthcoming nanoscale electronics, dynamic memory management and memory hierarchy optimizations for embedded systems, networks-on-chip interconnection design, and low-power design of embedded systems. He is also interested in theory of M&S, with an emphasis on DEVS, and the application of bioinspired optimization techniques in computer-aided design problems.
Inhaltsangabe
The Basics: Introduction to Systems Modeling and Simulation. System of Systems Modeling and Simulation with DEVS. DEVS Formalism and Variants. DEVS Software: Model and Simulator. DEVS Modeling Language. DEVS Unified Process. Modeling and Simulation-Based Systems Engineering: Reconfigurable DEVS. Real-Time DEVS and Virtual DEVS. Model-Driven Engineering and Its Application in Modeling and Simulation. System Entity Structures and Contingency-Based Systems. Department of Defense Architecture Framework: Version 1.0. Modeling and Simulation-Based Testing and DoDAF Compliance. Netcentric System of Systems: DEVS Standard. Architecture for DEVS/SOA. Model and Simulator Deployment in a Netcentric Environment. Netcentric System of Systems with DEVS-Based Event-Driven Architectures. Metamodeling in Department of Defense Architecture Framework (Version 2.0). Case Studies: Joint Close Air Support: Designing from Informal Scenarios. DEVS Simulation Framework for Multiple Unmanned Aerial Vehicles in Realistic Scenarios. Generic Network Systems Capable of Planned Expansion: From Monolithic to Netcentric Systems. Executable UML. BPMN to DEVS: Application of MDD4MS Framework in Discrete Event Simulation. Next Steps: Netcentric Complex Adaptive Systems. Acronyms. Index.
The Basics: Introduction to Systems Modeling and Simulation. System of Systems Modeling and Simulation with DEVS. DEVS Formalism and Variants. DEVS Software: Model and Simulator. DEVS Modeling Language. DEVS Unified Process. Modeling and Simulation-Based Systems Engineering: Reconfigurable DEVS. Real-Time DEVS and Virtual DEVS. Model-Driven Engineering and Its Application in Modeling and Simulation. System Entity Structures and Contingency-Based Systems. Department of Defense Architecture Framework: Version 1.0. Modeling and Simulation-Based Testing and DoDAF Compliance. Netcentric System of Systems: DEVS Standard. Architecture for DEVS/SOA. Model and Simulator Deployment in a Netcentric Environment. Netcentric System of Systems with DEVS-Based Event-Driven Architectures. Metamodeling in Department of Defense Architecture Framework (Version 2.0). Case Studies: Joint Close Air Support: Designing from Informal Scenarios. DEVS Simulation Framework for Multiple Unmanned Aerial Vehicles in Realistic Scenarios. Generic Network Systems Capable of Planned Expansion: From Monolithic to Netcentric Systems. Executable UML. BPMN to DEVS: Application of MDD4MS Framework in Discrete Event Simulation. Next Steps: Netcentric Complex Adaptive Systems. Acronyms. Index.
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