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ISBN
:
9780070647916
Publisher
:
Tata Mcgraw Hill Education Private Limited
Subject
:
Encyclopaedias & Reference Works
Binding
:
Paperback
Pages
:
1050
Year
:
2007
₹
650.0
₹
539.0
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Key Features Enlarged and revised chapter 1 on introduction to Power System Analysis New chapters on Voltage Stability Underground Cables Insulators for Overhead Lines Mechanical Design of Transmission Lines Neutral Grounding Corona High Voltage DC (HVDC) Transmisson New Topics on Maintenance scheduling (Chapter 7) AGC of restructured power ( Chapter 8) Power Transformer (Chapter 4) Midline Boosters (Chapter 5) New Appendices on Appendix on MATLab and SIMULINK ? programs for power system analysis Appendix on Power Quality Pedagogy : Solved Examples: 110 Practice Problems: 170 Objective Type Questions: 221 Table Of Contents Chapter 1. Introduction Chapter 2. Inductance and Resistance of Transmission Lines Chapter 3. Capacitance of Transmission Lines Chapter 4. Representation of Power System Components Chapter 5. Characteristics and Performance of Power Transmission Lines Chapter 6. Load Flow Studies Chapter 7. Optimal System Operation Chapter 8. Automatic Generation and Voltage Control Chapter 9. Symmetrical Fault Analysis Chapter 10. Symmetrical Components Chapter 11. Unsymmetrical Fault Analysis Chapter 12. Power System Stability Chapter 13. Power System Transients Chapter 14. Circuit Breakers Chapter 15. Power System Protection Chapter 16. Underground Cables Chapter 17. Insulators for Overhead Lines Chapter 18. Mechanical Design of Transmission Lines Chapter 19. Corona Chapter 20. High Voltage DC (HVDC) Transmission Chapter 21. Distribution Systems Chapter 22. Voltage Stability Appendix A: Introduction to Vector and Matrix Algebra Appendix B: Generalized Circuit Constants Appendix C: Triangular Factorization and Optimal Ordering Appendix D: Elements of Power System Jacobian Matrix Appendix E: Kuhn-Tucker Theorem Appendix F: Real-time Computer Control of Power Systems Appendix G: Introduction to Matlab and Simulink Appendix H: Sub-Stations Appendix I: Convergence of Load Flow Methods
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