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Direct methods for stability analysis of electric power systems theoretical foundation, BCU methodologies, and applications Hsiao-Dong Chiang

By: Chiang, Hsiao-DongMaterial type: TextTextPublication details: Hoboken, NJ Wiley 2011 Description: XIV, 494 S. : graph. DarstISBN: 9780470484401Subject(s): Elektrizitätsversorgungsnetz | Stabilität | Electric power system stability | Mathematical modelsSummary: Contents: 1. Introduction and Overview. 2. System Modeling and Stability Problems. 3. Lyapunov Stability and Stability Regions of Nonlinear Dynamical Systems. 4. Quasi-Stability Regions: Analysis and Characterization. 5. Energy Function Theory and Direct Methods. 6. Constructing Analytical Energy Functions for Transient Stability Models. 7. Construction of Numerical Energy Functions for Lossy Transient Stability Models. 8. Direct Methods for Stability Analysis: An Introduction. 9. Foundation of the Closest UEP Method. 10. Foundations of the Potential Energy Boundary Surface Method. 11. Controlling UEP Method: Theory. 12. Controlling UEP Method: Computations. 13. Foundations of Controlling UEP Methods for Network-Preserving Transient Stability Models. 14. Network-Reduction BCU Method and Its Theoretical Foundation. 15. Numerical Network-Reduction BCU Method. 16. Network-Preserving BCU Method and Its Theoretical Foundation. 17. Numerical Network-Preserving BCU Method. 18. Numerical Studies of BCU Methods from Stability Boundary Perspectives. 19. Study of the Transversality Conditions of the BCU Method. 20. The BCU-Exit Point Method. 21. Group Properties of Contingencies in Power Systems. 22. Group-Based BCU-Exit Method. 23. Group-Based BCU-CUEP Methods. 24. Group-Based BCU Method. 25. Perspectives and Future Directions. Appendix
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Item type Current library Call number Status Date due Barcode Item holds
Monographie ausleihbar Monographie ausleihbar PIK
PIK P 120-14-0232 (Browse shelf(Opens below)) Available 000498590
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MAB0014.001: PIK P 120-14-0232

Contents: 1. Introduction and Overview. 2. System Modeling and Stability Problems. 3. Lyapunov Stability and Stability Regions of Nonlinear Dynamical Systems. 4. Quasi-Stability Regions: Analysis and Characterization. 5. Energy Function Theory and Direct Methods. 6. Constructing Analytical Energy Functions for Transient Stability Models. 7. Construction of Numerical Energy Functions for Lossy Transient Stability Models. 8. Direct Methods for Stability Analysis: An Introduction. 9. Foundation of the Closest UEP Method. 10. Foundations of the Potential Energy Boundary Surface Method. 11. Controlling UEP Method: Theory. 12. Controlling UEP Method: Computations. 13. Foundations of Controlling UEP Methods for Network-Preserving Transient Stability Models. 14. Network-Reduction BCU Method and Its Theoretical Foundation. 15. Numerical Network-Reduction BCU Method. 16. Network-Preserving BCU Method and Its Theoretical Foundation. 17. Numerical Network-Preserving BCU Method. 18. Numerical Studies of BCU Methods from Stability Boundary Perspectives. 19. Study of the Transversality Conditions of the BCU Method. 20. The BCU-Exit Point Method. 21. Group Properties of Contingencies in Power Systems. 22. Group-Based BCU-Exit Method. 23. Group-Based BCU-CUEP Methods. 24. Group-Based BCU Method. 25. Perspectives and Future Directions. Appendix

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