A second order system described by: has the following pole-zero map. s? +25@,s+@ Sketch the step response of the system of fully-labelled axes clearly indicating the oscillation frequency in Hz and the damping ratio. Pole-Zero Map 25 25 0.14 0.066 0.046 0.028 0.014. 20 0.095-. 20 0.22 15 15 10 10 0.4: -5 L0.4 '-10 10 -15 15 0.22 -20 20 0.14 0.095 0.066 0.046 0.028 0.014 -25 -3.5 -3 -2.5 -2 -1.5 -1 -0.5 25 0 Real Axis (seconds) Imaginary Axis (seconds"')

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A second order system described by:
has the following pole-zero map.
s? +250,s+ o,
Sketch the step response of the system of fully-labelled axes clearly indicating the oscillation
frequency in Hz and the damping ratio.
Pole-Zero Map
25
25
0.14
0.095
0.046 0.028 0.014
20
0.066
20
'0.22
15
15
10
10
0.4:
-5
5
-10 0:4:
10
-15
15
0.22
-20
0.14
0.066
20
0.046 0.028 0.014
0.095
-25
-4
25 0
-3.5
-3
-2.5
-2
-1.5
-1
-0.5
Real Axis (seconds)
Imaginary Axis (seconds1)
Transcribed Image Text:A second order system described by: has the following pole-zero map. s? +250,s+ o, Sketch the step response of the system of fully-labelled axes clearly indicating the oscillation frequency in Hz and the damping ratio. Pole-Zero Map 25 25 0.14 0.095 0.046 0.028 0.014 20 0.066 20 '0.22 15 15 10 10 0.4: -5 5 -10 0:4: 10 -15 15 0.22 -20 0.14 0.066 20 0.046 0.028 0.014 0.095 -25 -4 25 0 -3.5 -3 -2.5 -2 -1.5 -1 -0.5 Real Axis (seconds) Imaginary Axis (seconds1)
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