5) The magnitude plot of a transfer function G(s)=- is shown below. Determine K, a, and b from the plot. dB 20 dB/dec - 10 dB/dec 1 5 6 0 dB/dec - 40 dB/dec 1 4 8 24 36 K= a = b= (6) The asymptotic log-magnitude curve for a minimum phase transfer function G(s) is shown below. Determine the transfer function G(s). 20 log |G|, dB - 40 dB/decade - 60 dB/decade 4 0.2 2 K(1+0.5s)(1+as) s(1+s/8)(1+bs)(1+s/36) - 20 dB/dec log o G(s) =

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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(5) The magnitude plot of a transfer function
G(s) =
is shown below. Determine K, a, and b from the plot.
dB
20 dB/dec
- 10 dB/dec
0 dB/dec
0.2
K(1+0.5s)(1+as)
s(1+s/8)(1+bs)(1+ s/36)
4
- 20 dB/dec
6
- 40 dB/dec
@
1
248
24 36
K=
a =
b=
(6) The asymptotic log-magnitude curve for a minimum phase transfer function G(s) is
shown below. Determine the transfer function G(s).
20 log |G|, dB
- 40 dB/decade
✓-60 dB/decade
In
log o
G(s) =
Transcribed Image Text:(5) The magnitude plot of a transfer function G(s) = is shown below. Determine K, a, and b from the plot. dB 20 dB/dec - 10 dB/dec 0 dB/dec 0.2 K(1+0.5s)(1+as) s(1+s/8)(1+bs)(1+ s/36) 4 - 20 dB/dec 6 - 40 dB/dec @ 1 248 24 36 K= a = b= (6) The asymptotic log-magnitude curve for a minimum phase transfer function G(s) is shown below. Determine the transfer function G(s). 20 log |G|, dB - 40 dB/decade ✓-60 dB/decade In log o G(s) =
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