For questions 3 , Consider now the case when the plant transfer function G(s) in Figure 1, is given by 14 G(s) = g2+1.4s sT, R(s) C(s) s(s+2žm„) Figure 1: Block Diagram 3) With derivative controller transfer function is 14(1+0.327s) s2 +5.236s+14 14(1+0.274s) s2 +5.236s+14 14(1+0.538s) s2 +3.863s+14 14(1+0.998s) s2 +3.863s+14

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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For questions 3 , Consider now the case when the plant transfer function G(s) in Figure 1, is given by
14
G(s) =
g2+1.4s
sT,
R(s)
C(s)
s(s+2žm„)
Figure 1: Block Diagram
3) With derivative controller transfer function is
14(1+0.327s)
s2 +5.236s+14
14(1+0.274s)
s2 +5.236s+14
14(1+0.538s)
s2 +3.863s+14
14(1+0.998s)
s2 +3.863s+14
Transcribed Image Text:For questions 3 , Consider now the case when the plant transfer function G(s) in Figure 1, is given by 14 G(s) = g2+1.4s sT, R(s) C(s) s(s+2žm„) Figure 1: Block Diagram 3) With derivative controller transfer function is 14(1+0.327s) s2 +5.236s+14 14(1+0.274s) s2 +5.236s+14 14(1+0.538s) s2 +3.863s+14 14(1+0.998s) s2 +3.863s+14
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