Figure Q8 shows a plant of transfer function G(s) to be operated in closed-loop, with unity negative feedback, where the controller is a simple gain factor K=4, and Gs)=- 2 s²+7s+2 E U. controller G(s) Figure Q8 (a) Obtain poles of this closed-loop system and determine if this system is stable. (b) Use Routh test to determine range of the controller gain factor K values that would make this closed loop system stable.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Figure Q8 shows a plant of transfer function G(s) to be operated in
closed-loop, with unity negative feedback, where the controller is a
simple gain factor K=4, and Gs)=-
2
s²+7s+2
E
U.
controller
G(s)
Figure Q8
(a) Obtain poles of this closed-loop system and determine if this
system is stable.
(b) Use Routh test to determine range of the controller gain factor
K values that would make this closed loop system stable.
Transcribed Image Text:Figure Q8 shows a plant of transfer function G(s) to be operated in closed-loop, with unity negative feedback, where the controller is a simple gain factor K=4, and Gs)=- 2 s²+7s+2 E U. controller G(s) Figure Q8 (a) Obtain poles of this closed-loop system and determine if this system is stable. (b) Use Routh test to determine range of the controller gain factor K values that would make this closed loop system stable.
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