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?

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
C(s)
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 C(s) s (s + 12)
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