1 / 25

EE532 Power System Dynamics and Transients

10/15/2011. EE532 Lecture 1 (Ranade). 2. EE532 Power System Dynamics and Transients. ObjectivesUnderstand basic aspects of power-system stability with focus onElectromechanical dynamicsTransient and long term stabilityVoltage stability issuesObtain a feel forStability analysisInterpretation of results.

Thomas
TΓ©lΓ©charger la prΓ©sentation

EE532 Power System Dynamics and Transients

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


    1. 10/15/2011 EE532 Lecture 1 (Ranade) 1 EE532 Power System Dynamics and Transients Satish J Ranade

    2. 10/15/2011 EE532 Lecture 1 (Ranade) 2

    3. 10/15/2011 EE532 Lecture 1 (Ranade) 3 Objectives Understand basics of electromagnetic transients with focus on Lightning Switching Calculation of response Over-voltages Obtain a feel for Insulation withstand concepts Standards Mitigation-Shielding, Line Design, Surge Arresters EE532 Power System Dynamics and Transients

    4. 10/15/2011 EE532 Lecture 1 (Ranade) 4 Power System Transients and Dynamics Time scale Phenomenon Result ΅S Lightning Overvoltage mS Switching Insulation Failure mS Abnormal Transient Fault .1 S Breaker Operations Instability 1 S Mechanical Dynamics Many Seconds Load Dynamics Collapse

    5. 10/15/2011 EE532 Lecture 1 (Ranade) 5 Power System Stability Definition (Ch.2) The ability of a power system to reach a new steady state or equilibrium after a disturbance. Interconnected synchronous generators must settle to a common, constant speed Voltages and power flow must settle to reasonable values ( otherwise relays will trip breakers)

    6. 10/15/2011 EE532 Lecture 1 (Ranade) 6

    7. 10/15/2011 EE532 Lecture 1 (Ranade) 7 Power System Stability

    8. 10/15/2011 EE532 Lecture 1 (Ranade) 8 Power System Stability Manifestations – Angle Stability

    9. 10/15/2011 EE532 Lecture 1 (Ranade) 9

    10. 10/15/2011 EE532 Lecture 1 (Ranade) 10 Power System Stability Manifestations – Angle Stability

    11. 10/15/2011 EE532 Lecture 1 (Ranade) 11 Power System Stability Manifestations – Angle Stability

    12. 10/15/2011 EE532 Lecture 1 (Ranade) 12 Power System Stability Manifestations – Voltage Stability

    13. 10/15/2011 EE532 Lecture 1 (Ranade) 13 Power System Stability Terminology

    14. 10/15/2011 EE532 Lecture 1 (Ranade) 14 Power System Stability Terminology

    15. 10/15/2011 EE532 Lecture 1 (Ranade) 15 Power System Stability Terminology

    16. 10/15/2011 EE532 Lecture 1 (Ranade) 16 Power System Stability Comment on Terminology

    17. 10/15/2011 EE532 Lecture 1 (Ranade) 17 Power System Stability Purpose of Stability Study

    18. 10/15/2011 EE532 Lecture 1 (Ranade) 18 Fast transients Lightning (uS) Switching (mS) Abnormal (mS – S)

    19. 10/15/2011 EE532 Lecture 1 (Ranade) 19 Fast transients Lightning (uS)

    20. 10/15/2011 EE532 Lecture 1 (Ranade) 20 Fast transients

    21. 10/15/2011 EE532 Lecture 1 (Ranade) 21 Fast transients

    22. 10/15/2011 EE532 Lecture 1 (Ranade) 22 Fast transients

    23. 10/15/2011 EE532 Lecture 1 (Ranade) 23 Fast transients

    24. 10/15/2011 EE532 Lecture 1 (Ranade) 24

    25. 10/15/2011 EE532 Lecture 1 (Ranade) 25

More Related