3_ For the system shown in Figure 3, first find the values of K1 and K2 to obtain a peak time of 1 second, and a settling time of 2 seconds, for the closed-loop step response of the system. Then find the poles of the closed-loop transfer function, T(s) = C(s)/R(s). Construct the corresponding graph of poles and zeros. R(S) K₁ Figura N° 3 10 s(s+2) K₂8 C(s) 1

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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For the system shown in Figure 3, first find the values ​​of K1 and K2 to obtain a peak time of 1 second, and a settling time of 2 seconds, for the closed-loop step response of the system. Then find the poles of the closed-loop transfer function, T(s) = C(s)/R(s). Construct the corresponding graph of poles and zeros

3_ For the system shown in Figure 3, first find the values of K1 and K2 to obtain a peak
time of 1 second, and a settling time of 2 seconds, for the closed-loop step response of the
system. Then find the poles of the closed-loop transfer function, T(s) = C(s)/R(s).
Construct the corresponding graph of poles and zeros.
R(S)
K₁
Figura N° 3
10
s(s+2)
K₂8
C(s)
1
Transcribed Image Text:3_ For the system shown in Figure 3, first find the values of K1 and K2 to obtain a peak time of 1 second, and a settling time of 2 seconds, for the closed-loop step response of the system. Then find the poles of the closed-loop transfer function, T(s) = C(s)/R(s). Construct the corresponding graph of poles and zeros. R(S) K₁ Figura N° 3 10 s(s+2) K₂8 C(s) 1
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