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Transients in Electrical Systems Analysis Recognition and Mitigation 2010 Edition at Meripustak

Transients in Electrical Systems Analysis Recognition and Mitigation 2010 Edition by J.C. Das , McGraw-Hill

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  • General Information  
    Author(s)J.C. Das
    PublisherMcGraw-Hill
    ISBN9780071622486
    Pages736
    BindingHardback
    LanguageEnglish
    Publish YearAugust 2010

    Description

    McGraw-Hill Transients in Electrical Systems Analysis Recognition and Mitigation 2010 Edition by J.C. Das

    Publisher's Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product.Detect and Mitigate Transients in Electrical SystemsThis practical guide explains how to identify the origin of disturbances in electrical systems and analyze them for effective mitigation and control. Transients in Electrical Systems considers all transient frequencies, ranging from 0.1 Hz to 50 MHz, and discusses transmission line and cable modeling as well as frequency dependent behavior. Results of EMTP simulations, solved examples, and detailed equations are included in this comprehensive resource.Transients in Electrical Systems covers:Transients in lumped circuitsControl systemsLightning strokes, shielding, and backflashoversTransients of shunt capacitor banksSwitching transients and temporary overvoltagesCurrent interruption in AC circuitsSymmetrical and unsymmetrical short-circuit currentsTransient behavior of synchronous generators, induction and synchronous motors, and transformersPower electronic equipmentFlicker, bus, transfer, and torsional vibrationsInsulation coordinationGas insulated substationsTransients in low-voltage and grounding systemsSurge arrestersDC systems, short-circuits, distributions, and HVDCSmart grids and wind power generation Table of contents :- Chapter 1. Introduction to Transients; Chapter 2. Transients in Lumped Circuits; Chapter 3. Control Systems; Chapter 4. Modeling of Transmission Lines and Cables for Transient Studies; Chapter 5. Lighting Strokes, Shielding, and Backflashovers; Chapter 6. Transients of Shunt Capacitor Banks; Chapter 7. Switching Transients and Temporary Overvoltages; Chapter 8. Current Interruption in AC Circuits; Chapter 9. Symmetrical and Unsymmetrical Short-Circuit Currents; Chapter 10. Transient Behavior of Synchronous Generators; Chapter 11. Transient behavior of Induction and Synchronous Motors; Chapter 12. Power System Stability; Chapter 13. Excitation Systems and Power System Stabilizers; Chapter 14. Transient Behavior of Transformers; Chapter 15. Power Electric Equipment and FACTS; Chapter 16. Flicker, Bus Transfer, Torsional Dynamics, and Other Transients; Chapter 17. Insulation Coordination; Chapter 18. Gas-Insulated Substations--Very Fast Transients; Chapter 19. Transients and Surge Protection in Low-Voltage Systems; Chapter 20. Surge Arresters; Chapter 21. Transients in Grounding Systems; Chapter 22. Lightning Protection of Structures; Chapter 23. DC Systems, Short Circuits, Distributions, and HVDC; Chapter 24. Smart Grids and Wind Power Generation; Appendix A. Differential Equations; Appendix B. Laplace Transform; Appendix C. z- Transform; Appendix D. Sequence Impedances of Transmission Lines and Cables; Appendix E. Energy Functions and Stability; Appendix F. Statistics and Probability; Appendix G. Numerical Techniques; Index



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