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Lecture Power system stability - Lesson 12: Governors
Lecture Power system stability - Lesson 12: Governors provide students with knowledge about governor models; prime movers and governors; frequency response for generation loss; governor response: thermal versus hydro; some good references; frequency response definition; WECC interconnection performance;...
35 p ctuet 23/02/2024 2 0
Lecture Power system stability - Lesson 9: Synchronous Machine Modeling
Lecture Power system stability - Lesson 9: Synchronous Machine Modeling provide students with knowledge about two-axis mode; flux decay model; rotor angle sensitivity to Tqop; classical model justification; subtransient models; GENSAL block diagram; comparison between gensal and flux decay;...
57 p ctuet 23/02/2024 4 0
Lecture Power system stability - Lesson 3: Numeric Solution of Differential Equations, Electromagnetic Transients provide students with knowledge about fourth urder Runge-Kutta; multistep methods; multistep motivation; numerical instability; stiff differential equations; trapezoidal linear case;...
32 p ctuet 23/02/2024 2 0
Lecture Power system stability - Lesson 11: Exciters and Governors
Lecture Power system stability - Lesson 11: Exciters and Governors provide students with knowledge about exciter models; functional block diagram; coupling with the machine models; desired performance; transient response; small signal performance; AC exciter system overview; initial state determination;...
37 p ctuet 23/02/2024 3 0
Lecture Power system stability - Lesson 8: Synchronous Machine Modeling
Lecture Power system stability - Lesson 8: Synchronous Machine Modeling provide students with knowledge about assuming a linear magnetic circuit; key simulation parameters; dynamic model development; rotor currents; final complete model; single-machine steady-state; stator flux differential equations;...
54 p ctuet 23/02/2024 3 0
Lecture Power system stability - Lesson 1: Overview and Numeric Solution of Differential Equations
Lecture Power system stability - Lesson 1: Overview and Numeric Solution of Differential Equations provide students with knowledge about power system examples; major power grid components; three-phase systems; synchronous electric grids; power system time frames;...
33 p ctuet 23/02/2024 3 0
Lecture Power system stability - Lesson 2: Numeric Solution of Differential Equations
Lecture Power system stability - Lesson 2: Numeric Solution of Differential Equations provide students with knowledge about static versus dynamic analysis; slow versus fast dynamics; positive sequence versus full three-phase; power flow versus dynamics; interactive simulation: powerworld dynamics studio (DS);...
42 p ctuet 23/02/2024 4 0
Lecture Power system stability - Lesson 4: Electromagnetic Transients
Lecture Power system stability - Lesson 4: Electromagnetic Transients provide students with knowledge about special case 2: wave equation; determining the constants; equivalent circuit representation; lumped parameter model; including line resistance; numerical integration with trapezoidal method; full solution over three cycles;...
46 p ctuet 23/02/2024 2 0
Lecture Power system stability - Lesson 5: Three-Phase Line Modeling, Stability overview
Lecture Power system stability - Lesson 5: Three-Phase Line Modeling, Stability overview provide students with knowledge about lumped capacitance model; modeling transmission lines; untransposed lines with ground conductors; modeling line capacitance; frequency dependence;...
47 p ctuet 23/02/2024 3 0
Lecture Power system stability - Lesson 10: Exciters
Lecture Power system stability - Lesson 10: Exciters provide students with knowledge about dynamic models in the physical structure: exciters; larger scale stability study; functional block diagram; potential types of exciters; block diagram basics; integrator block; first order lag block;...
50 p ctuet 23/02/2024 2 0
Lecture Power system stability - Lesson 6: Symmetrical Component Review, Stability overview
Lecture Power system stability - Lesson 6: Symmetrical Component Review, Stability overview provide students with knowledge about dallman after the accident; symmetric components; positive, negative and zero sequence sets; symmetrical component conversion; symmetrical components to decouple unbalanced networks;...
42 p ctuet 23/02/2024 2 0
Lecture Power system stability - Lesson 7: Stability Overview, Synchronous Machine Modeling
Lecture Power system stability - Lesson 7: Stability Overview, Synchronous Machine Modeling provide students with knowledge about symmetric line spacing – 69 kV; returning to the simulation: generator angles on different reference frames; plot designer with new plots with the wscc nine bus case; dynamic load models;...
51 p ctuet 23/02/2024 2 0
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