Make all the graphs in matlab Make all the graphs in matlab Make all the graphs in matlab
Posted: Fri Jul 08, 2022 6:39 am
Make all the graphs in matlab
Make all the graphs in matlab
Make all the graphs in matlab
1-} For an LTI system whose impulse response is h(t) = e-tu(t) we will do the following: 1. (2%) We graph 3 periods of the periodic boxcar b(t) with bandwidth 27₁ = 5y period To = 16 2. (2% We plot the Fourier series of this input for a convenient number of harmonics. 3. (30%) Construct and plot the Fourier series of the output. 4. (1%) Plot the impulse response h(t) 5. (10%) We calculate and plot the convolution y(t) = x(t) *h(t) Entrada x(t) con T, = 5yT = 16 1 3-1 Amplitud 5-) 0.6 0.4 0.2 -0.2 -16 -8 -0.2 M 0.8 0.6 -0.2 0 8 16 24 32 40 48 -1612-8-4 0 4 8 12162024283236404448 Serie de Fourier de la salida y(t) Convolucion y(t)=x(t)"h(t) m -1612-8-4 0 4 8 12162024283236404448 2-1 Amplitud 4-) -0.2 -1612-8-4 0 4 8 12162024283236404448 Respuesta al impulso h(t) sistema LTI 0.8 0.6 0.4 Serie de Fourier de la entrada x(t) 0.2 0 -0.2 0 2 4 6 8 10
Make all the graphs in matlab
Make all the graphs in matlab
1-} For an LTI system whose impulse response is h(t) = e-tu(t) we will do the following: 1. (2%) We graph 3 periods of the periodic boxcar b(t) with bandwidth 27₁ = 5y period To = 16 2. (2% We plot the Fourier series of this input for a convenient number of harmonics. 3. (30%) Construct and plot the Fourier series of the output. 4. (1%) Plot the impulse response h(t) 5. (10%) We calculate and plot the convolution y(t) = x(t) *h(t) Entrada x(t) con T, = 5yT = 16 1 3-1 Amplitud 5-) 0.6 0.4 0.2 -0.2 -16 -8 -0.2 M 0.8 0.6 -0.2 0 8 16 24 32 40 48 -1612-8-4 0 4 8 12162024283236404448 Serie de Fourier de la salida y(t) Convolucion y(t)=x(t)"h(t) m -1612-8-4 0 4 8 12162024283236404448 2-1 Amplitud 4-) -0.2 -1612-8-4 0 4 8 12162024283236404448 Respuesta al impulso h(t) sistema LTI 0.8 0.6 0.4 Serie de Fourier de la entrada x(t) 0.2 0 -0.2 0 2 4 6 8 10