(s+2) 14. ) Let G[s] (s+1)²+(1)² s = -2. Find the gain, K, to locate a closed-loop pole at s = -1. = and Ge[s] = K(+2). Design a PI controller with a zero at S (a) K doesn't exist. (b) K = 1.0 (c) K = 0.5 (d) K = 2.0

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Assume the following block diagram for the entire exam.
R[o]
+a
+ⒸE[A]][G_[^]]
Σ
Y[s]
foli|-*1.
Transcribed Image Text:Assume the following block diagram for the entire exam. R[o] +a +ⒸE[A]][G_[^]] Σ Y[s] foli|-*1.
(s+2)
14.
) Let G[s]
(s+1)²+(1)²
s = -2. Find the gain, K, to locate a closed-loop pole at s = -1.
=
and Ge[s] = K(+2). Design a PI controller with a zero at
S
(a) K doesn't exist.
(b) K = 1.0
(c) K = 0.5
(d) K = 2.0
Transcribed Image Text:(s+2) 14. ) Let G[s] (s+1)²+(1)² s = -2. Find the gain, K, to locate a closed-loop pole at s = -1. = and Ge[s] = K(+2). Design a PI controller with a zero at S (a) K doesn't exist. (b) K = 1.0 (c) K = 0.5 (d) K = 2.0
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