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An authoritative treatment by leading researchers covering theory and optimal estimation, along with practical applications.
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An authoritative treatment by leading researchers covering theory and optimal estimation, along with practical applications.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Cambridge University Press
- Seitenzahl: 484
- Erscheinungstermin: 3. Februar 2016
- Englisch
- Abmessung: 250mm x 175mm x 30mm
- Gewicht: 1009g
- ISBN-13: 9781107035409
- ISBN-10: 1107035406
- Artikelnr.: 42297249
- Verlag: Cambridge University Press
- Seitenzahl: 484
- Erscheinungstermin: 3. Februar 2016
- Englisch
- Abmessung: 250mm x 175mm x 30mm
- Gewicht: 1009g
- ISBN-13: 9781107035409
- ISBN-10: 1107035406
- Artikelnr.: 42297249
Hsiao-Dong Chiang is Professor of Electrical and Computer Engineering at Cornell University, New York, President of Bigwood Systems, Inc. (BSI), Ithaca, New York and President of Global Optimal Technology, Inc. (GOTI). He is a Fellow of the IEEE.
1. Introduction
Part I. Theory: 2. Stability, limit sets and stability regions
3. Energy function theory
4. Stability regions of continuous dynamical systems
5. Stability regions of attracting sets of complex nonlinear dynamical systems
6. Quasi-stability regions of continuous dynamical systems - theory
7. Stability regions of constrained dynamical systems
8. Relevant stability boundary of continuous dynamical systems
9. Stability regions of discrete dynamical systems
Part II. Estimation: 10. Estimating stability regions of continuous dynamical systems
11. Estimating stability regions of complex continuous dynamical systems
12. Estimating stability regions of discrete dynamical systems
13. A constructive methodology to estimate stability regions of nonlinear dynamical systems
14. Estimation of relevant stability regions
15. Critical evaluation of numerical methods for approximating stability boundaries
Part III. Advanced Topics: 16. Stability regions of two-time scale continuous dynamical systems
17. Stability regions for a class of non-hyperbolic dynamical systems - theory and estimation
18. Optimal estimation of stability regions for a class of large-scale nonlinear dynamic systems
19. Bifurcations of stability regions
Part IV. Applications: 20. Application of stability regions to direct stability analysis of large-scale electric power systems
21. Stability-region-based methods for multiple optimal solutions of nonlinear programming
22. Perspectives and future directions.
Part I. Theory: 2. Stability, limit sets and stability regions
3. Energy function theory
4. Stability regions of continuous dynamical systems
5. Stability regions of attracting sets of complex nonlinear dynamical systems
6. Quasi-stability regions of continuous dynamical systems - theory
7. Stability regions of constrained dynamical systems
8. Relevant stability boundary of continuous dynamical systems
9. Stability regions of discrete dynamical systems
Part II. Estimation: 10. Estimating stability regions of continuous dynamical systems
11. Estimating stability regions of complex continuous dynamical systems
12. Estimating stability regions of discrete dynamical systems
13. A constructive methodology to estimate stability regions of nonlinear dynamical systems
14. Estimation of relevant stability regions
15. Critical evaluation of numerical methods for approximating stability boundaries
Part III. Advanced Topics: 16. Stability regions of two-time scale continuous dynamical systems
17. Stability regions for a class of non-hyperbolic dynamical systems - theory and estimation
18. Optimal estimation of stability regions for a class of large-scale nonlinear dynamic systems
19. Bifurcations of stability regions
Part IV. Applications: 20. Application of stability regions to direct stability analysis of large-scale electric power systems
21. Stability-region-based methods for multiple optimal solutions of nonlinear programming
22. Perspectives and future directions.
1. Introduction
Part I. Theory: 2. Stability, limit sets and stability regions
3. Energy function theory
4. Stability regions of continuous dynamical systems
5. Stability regions of attracting sets of complex nonlinear dynamical systems
6. Quasi-stability regions of continuous dynamical systems - theory
7. Stability regions of constrained dynamical systems
8. Relevant stability boundary of continuous dynamical systems
9. Stability regions of discrete dynamical systems
Part II. Estimation: 10. Estimating stability regions of continuous dynamical systems
11. Estimating stability regions of complex continuous dynamical systems
12. Estimating stability regions of discrete dynamical systems
13. A constructive methodology to estimate stability regions of nonlinear dynamical systems
14. Estimation of relevant stability regions
15. Critical evaluation of numerical methods for approximating stability boundaries
Part III. Advanced Topics: 16. Stability regions of two-time scale continuous dynamical systems
17. Stability regions for a class of non-hyperbolic dynamical systems - theory and estimation
18. Optimal estimation of stability regions for a class of large-scale nonlinear dynamic systems
19. Bifurcations of stability regions
Part IV. Applications: 20. Application of stability regions to direct stability analysis of large-scale electric power systems
21. Stability-region-based methods for multiple optimal solutions of nonlinear programming
22. Perspectives and future directions.
Part I. Theory: 2. Stability, limit sets and stability regions
3. Energy function theory
4. Stability regions of continuous dynamical systems
5. Stability regions of attracting sets of complex nonlinear dynamical systems
6. Quasi-stability regions of continuous dynamical systems - theory
7. Stability regions of constrained dynamical systems
8. Relevant stability boundary of continuous dynamical systems
9. Stability regions of discrete dynamical systems
Part II. Estimation: 10. Estimating stability regions of continuous dynamical systems
11. Estimating stability regions of complex continuous dynamical systems
12. Estimating stability regions of discrete dynamical systems
13. A constructive methodology to estimate stability regions of nonlinear dynamical systems
14. Estimation of relevant stability regions
15. Critical evaluation of numerical methods for approximating stability boundaries
Part III. Advanced Topics: 16. Stability regions of two-time scale continuous dynamical systems
17. Stability regions for a class of non-hyperbolic dynamical systems - theory and estimation
18. Optimal estimation of stability regions for a class of large-scale nonlinear dynamic systems
19. Bifurcations of stability regions
Part IV. Applications: 20. Application of stability regions to direct stability analysis of large-scale electric power systems
21. Stability-region-based methods for multiple optimal solutions of nonlinear programming
22. Perspectives and future directions.