Q 1: Explain with figures:- a) closed loop poles and stability. b) Routh's criterion. c) compensation types and networks. d) the PID controller. Q 2: Examine the stability of given equation using Routh's method: - S3 + 6S2 + 11S + 6 = 0 Q 3: For the system shown determine % Mp and Ts when it is excited by unit step input. If for the same system PD controller having constant ratio Mp and Ts. Draw respective waveform? R(s) 100 C(s) s (s + 12)

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter11: Transient Stability
Section: Chapter Questions
Problem 11.17P
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Q 1: Explain with figures:-
a) closed loop poles and stability.
b) Routh's criterion.
c) compensation types and networks.
d) the PID controller.
Q 2: Examine the stability of given equation using Routh's method: -
S3 + 6S2 + 11S + 6 = 0
Q 3: For the system shown determine % Mp and Ts when it is excited by
unit step input. If for the same system PD controller having
constant ratio Mp and Ts. Draw respective waveform?
R(s)
100
Cs)
s (s + 12)
Transcribed Image Text:Q 1: Explain with figures:- a) closed loop poles and stability. b) Routh's criterion. c) compensation types and networks. d) the PID controller. Q 2: Examine the stability of given equation using Routh's method: - S3 + 6S2 + 11S + 6 = 0 Q 3: For the system shown determine % Mp and Ts when it is excited by unit step input. If for the same system PD controller having constant ratio Mp and Ts. Draw respective waveform? R(s) 100 Cs) s (s + 12)
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