d) Determine the step response using MATLABS Ltiview. e) Using Ltiview function, indicate the following values on the step response curve. • The peak time (Tp) • Settling time (Ts). • The rise time (7). Percent overshoot (% OS). ) The given system is a) Stable b) unstable c) marginally stable

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Please assist with questions d, e, and f. Explanation on how to do it and code in matlab. Thank you. 

1. A control system given below using block diagram representation.
R(s)
G1
Percent overshoot (% OS).
f) The given system is
a) Stable
G2
2
(3+1)(3+8)
b) unstable
H1
0.2
G3
a) Write a MATLAB code that generates the closed loop transfer function, Y(s)/R(S)
b) Using MATLAB code ,determine the poles and zeros of the closed loop transfer
function, Y(s)/R(s)
c) Determine the impulse response using MATLABS Ltiview.
d) Determine the step response using MATLABS Ltiview.
-a
e) Using Ltiview function, indicate the following values on the step response curve.
• The peak time (Tp)
•
Settling time (Ts).
• The rise time (7).
Y(s)
c) marginally stable
Transcribed Image Text:1. A control system given below using block diagram representation. R(s) G1 Percent overshoot (% OS). f) The given system is a) Stable G2 2 (3+1)(3+8) b) unstable H1 0.2 G3 a) Write a MATLAB code that generates the closed loop transfer function, Y(s)/R(S) b) Using MATLAB code ,determine the poles and zeros of the closed loop transfer function, Y(s)/R(s) c) Determine the impulse response using MATLABS Ltiview. d) Determine the step response using MATLABS Ltiview. -a e) Using Ltiview function, indicate the following values on the step response curve. • The peak time (Tp) • Settling time (Ts). • The rise time (7). Y(s) c) marginally stable
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