For the systems with transfer functions given below, find the damping ratio , the natural undamped resonant frequency o,, the decay rate o, the settling time T, the rise time T;. If the system is under damped, the peak-time Tp and the percentage of overshoot, %OS: 200 а. Н(s) %3D s² + 30s + 200 1600 b. H(s) = s² + 30s + 1600 0.16 c. H(s)= 32+ 0.08s + 0.16
For the systems with transfer functions given below, find the damping ratio , the natural undamped resonant frequency o,, the decay rate o, the settling time T, the rise time T;. If the system is under damped, the peak-time Tp and the percentage of overshoot, %OS: 200 а. Н(s) %3D s² + 30s + 200 1600 b. H(s) = s² + 30s + 1600 0.16 c. H(s)= 32+ 0.08s + 0.16
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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
Transcribed Image Text:1. For the systems with transfer functions given below, find the damping ratio , the natural
undamped resonant frequency o,, the decay rate o, the settling time T3, the rise time T;. If
the system is under damped, the peak-time Tp and the percentage of overshoot, %OS:
200
a. H(s)= 7+ 30s + 200
1600
b. H(s)= + 30s + 1600
0.16
c. H(s)= 2+ 0.085
0.16
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