Discrete Networked Dynamic Systems: Analysis and Performance
Autor Magdi S. Mahmoud, Yuanqing Xiaen Limba Engleză Paperback – 23 oct 2020
The topics in this book are structured along four dimensions: Agent, Environment, Interaction, and Organization, while keeping global (system-centered) and local (agent-centered) viewpoints.
The focus is on the wide-sense consensus problem in discrete networked dynamic systems. The authors rely heavily on algebraic graph theory and topology to derive their results. It is known that graphs play an important role in the analysis of interactions between multiagent/distributed systems. Graph-theoretic analysis provides insight into how topological interactions play a role in achieving coordination among agents. Numerous types of graphs exist in the literature, depending on the edge set of G. A simple graph has no self-loop or edges. Complete graphs are simple graphs with an edge connecting any pair of vertices. The vertex set in a bipartite graph can be partitioned into disjoint non-empty vertex sets, whereby there is an edge connecting every vertex in one set to every vertex in the other set. Random graphs have fixed vertex sets, but the edge set exhibits stochastic behavior modeled by probability functions. Much of the studies in coordination control are based on deterministic/fixed graphs, switching graphs, and random graphs.
- This book addresses advanced analytical tools for characterization control, estimation and design of networked dynamic systems over fixed, probabilistic and time-varying graphs
- Provides coherent results on adopting a set-theoretic framework for critically examining problems of the analysis, performance and design of discrete distributed systems over graphs
- Deals with both homogeneous and heterogeneous systems to guarantee the generality of design results
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Specificații
ISBN-13: 9780128236987
ISBN-10: 0128236981
Pagini: 484
Dimensiuni: 152 x 229 x 28 mm
Greutate: 0.64 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128236981
Pagini: 484
Dimensiuni: 152 x 229 x 28 mm
Greutate: 0.64 kg
Editura: ELSEVIER SCIENCE
Cuprins
1. Mathematical background and examples
2. Structural and performance patterns
3. Consensus of systems over graphs
4. Energy-based cooperative control
5. Performance of consensus algorithms
6. Event-based coordination control
7. Advanced approaches to multiagent coordination
8. State estimation techniques
9. Advanced distributed filtering
2. Structural and performance patterns
3. Consensus of systems over graphs
4. Energy-based cooperative control
5. Performance of consensus algorithms
6. Event-based coordination control
7. Advanced approaches to multiagent coordination
8. State estimation techniques
9. Advanced distributed filtering