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Lecture Theory of Automata: Lesson 13
Lecture Theory of Automata: Lesson 13. The main topics covered in this chapter include: examples of Kleene’s theorem part III (method 1) continued, Kleene’s theorem part III (method 2: Concatenation of FAs), example of Kleene’s theorem part III (method 2: Concatenation of FAs),...
20 p ctuet 23/02/2024 5 0
Lecture Theory of Automata: Lesson 21
Lecture Theory of Automata: Lesson 21. The main topics covered in this chapter include: example of Moore machine, mealy machine and examples, complementing machine, incrementing machine, identify the relation between the input strings and the corresponding output strings in the following Moore machine,...
22 p ctuet 23/02/2024 5 0
Lecture Theory of Automata: Lesson 14
Lecture Theory of Automata: Lesson 14. The main topics covered in this chapter include: examples of Kleene’s theorem part III (method 1) continued, Kleene’s theorem part III (method 2: Concatenation of FAs), examples of Kleene’s theorem part III (method 2: concatenation FAs) continued, Kleene’s theorem part III (method 3: closure of an FA), examples of Kleene’s theorem part III (method 3: Closure of an FA) continued,...
28 p ctuet 23/02/2024 5 0
Lecture Theory of Automata: Lesson 15
Lecture Theory of Automata: Lesson 15. The main topics covered in this chapter include: examples of Kleene’s theorem part III (method 3), NFA, examples and avoiding loop using NFA, example and converting FA to NFA, examples and applying an NFA on an example of maze,...
21 p ctuet 23/02/2024 5 0
Lecture Theory of Automata: Lesson 16
Lecture Theory of Automata: Lesson 16. The main topics covered in this chapter include: applying an NFA on an example of maze, NFA with null string and examples, RE corresponding to NFA with null string (task), converting NFA to FA (method 1,2,3) examples,...
26 p ctuet 23/02/2024 5 0
Lecture Theory of Automata: Lesson 18
Lecture Theory of Automata: Lesson 18. The main topics covered in this chapter include: NFA corresponding to union of FAs and example, NFA corresponding to concatenation of FAs and examples, NFA corresponding to closure of an FA and example,...
22 p ctuet 23/02/2024 7 0
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 7 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 9 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 7 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 8 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 11 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 12 0
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