For each of the signals below, please do the following: • Compute the dynamic phasor in MATLAB using a t vector that starts at t = -T, ends at t=T, and increments in steps of T/1000. • Compute the static phasor. • Compute the value of the dynamic phasor when = wt + = 60° in the period plotted between-T≤t<0. Plot the waveform as the sum of two complex exponentials. For the cosines, use the formula A cos 0=e+e-1 and for the sines, use the formula A sin = In your submission, you will need to provide an expression for both the positive rotating vector (i.e. the one moving in the counter clockwise direction) and the negative rotating vector (i.e. the one moving in the clockwise direction). a) 12 cos(10t+40°) b) 30 sin(13t 100°) c) 10 sin (50t+27") 1 Script 1 2T = []; 3t=[]; 4 5 dyn_phasor = []; 6 phasor mag = []; 7 phasor_ang = []; 8 t_val = []; 9 val_at_60_deg = []; 10 11 12 positive_vector = []; 13 negative_vector = []; 14 15 20 Save CReset MATLAB Documentation

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For each of the signals below, please do the following:
• Compute the dynamic phasor in MATLAB using a t vector that starts at t = -T,
ends at t=T, and increments in steps of T/1000.
• Compute the static phasor.
• Compute the value of the dynamic phasor when = wt + = 60° in the period
plotted between-T≤t<0.
Plot the waveform as the sum of two complex exponentials. For the cosines, use the
formula A cos 0=e+e-1 and for the sines, use the formula A sin =
In your submission, you will need to provide an expression for both the positive rotating vector
(i.e. the one moving in the counter clockwise direction) and the negative rotating vector (i.e. the
one moving in the clockwise direction).
a) 12 cos(10t+40°)
b) 30 sin(13t 100°)
c) 10 sin (50t+27")
1
Script
1
2T = [];
3t=[];
4
5 dyn_phasor = [];
6 phasor mag = [];
7 phasor_ang = [];
8 t_val = [];
9 val_at_60_deg = [];
10
11
12 positive_vector = [];
13 negative_vector = [];
14
15
20
Save
CReset
MATLAB Documentation
Transcribed Image Text:For each of the signals below, please do the following: • Compute the dynamic phasor in MATLAB using a t vector that starts at t = -T, ends at t=T, and increments in steps of T/1000. • Compute the static phasor. • Compute the value of the dynamic phasor when = wt + = 60° in the period plotted between-T≤t<0. Plot the waveform as the sum of two complex exponentials. For the cosines, use the formula A cos 0=e+e-1 and for the sines, use the formula A sin = In your submission, you will need to provide an expression for both the positive rotating vector (i.e. the one moving in the counter clockwise direction) and the negative rotating vector (i.e. the one moving in the clockwise direction). a) 12 cos(10t+40°) b) 30 sin(13t 100°) c) 10 sin (50t+27") 1 Script 1 2T = []; 3t=[]; 4 5 dyn_phasor = []; 6 phasor mag = []; 7 phasor_ang = []; 8 t_val = []; 9 val_at_60_deg = []; 10 11 12 positive_vector = []; 13 negative_vector = []; 14 15 20 Save CReset MATLAB Documentation
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