3) Set VD(s) = 0 and find the transfer function V(s)/I*(s). This transfer function will give you the response of the manipulated variable. It can be used to determine the required energy to follow the current command I*. Attach your calculations to find this transfer function and enter the coefficients of this transfer function in the Matlab template. ||

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Vp(s)
+
+
Kp(T;s + 1)
+
V(s)
1
I*(s)
I(s)
Tis
(s + 1)
The proportional gain is given as Kp =4 like in class and the integral
gain is Ti = 0.6.
Transcribed Image Text:Vp(s) + + Kp(T;s + 1) + V(s) 1 I*(s) I(s) Tis (s + 1) The proportional gain is given as Kp =4 like in class and the integral gain is Ti = 0.6.
3) Set VD(s) = 0 and find the transfer function V(s)/I*(s). This transfer function will give you
the response of the manipulated variable. It can be used to determine the required energy
to follow the current command I*. Attach your calculations to find this transfer function
and enter the coefficients of this transfer function in the Matlab template.
Transcribed Image Text:3) Set VD(s) = 0 and find the transfer function V(s)/I*(s). This transfer function will give you the response of the manipulated variable. It can be used to determine the required energy to follow the current command I*. Attach your calculations to find this transfer function and enter the coefficients of this transfer function in the Matlab template.
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