c) Calculate the time constant. d) Calculate the damping coefficient.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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A first order process feedback closed loop control system is controlled using a PI controller. In the case where
Kc=10 and TI = 0.2, using the transfer functions given below, after changing the setpoint of magnitude 5;
G₂ (s) =
1
5s+1
SP(s) = 5
Gy(s) = G₂(s) = 1
a) Calculate the new steady-state value of the controlled variable (CV).
b) Calculate when the controlled variable (CV) will reach its maximum value.
c) Calculate the time constant.
d) Calculate the damping coefficient.
e) Calculate the highest deviation.
f) Calculate my reduction rate
g) Calculate the salmim period.
h) Calculate the polarity of the control system
f1-22
Transcribed Image Text:A first order process feedback closed loop control system is controlled using a PI controller. In the case where Kc=10 and TI = 0.2, using the transfer functions given below, after changing the setpoint of magnitude 5; G₂ (s) = 1 5s+1 SP(s) = 5 Gy(s) = G₂(s) = 1 a) Calculate the new steady-state value of the controlled variable (CV). b) Calculate when the controlled variable (CV) will reach its maximum value. c) Calculate the time constant. d) Calculate the damping coefficient. e) Calculate the highest deviation. f) Calculate my reduction rate g) Calculate the salmim period. h) Calculate the polarity of the control system f1-22
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