how to make fft of rectangular function?

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YEON HWEE BAE
YEON HWEE BAE el 2 de Dic. de 2017
Respondida: Tilkesh el 28 de Mzo. de 2022
Ts = 0.01; N=2000; t=-20:Ts:(N-1)*Ts; T = 1; fs=1/Ts; f=0:fs/N:(N-1)/N*fs; x1 = rectpuls(t, T); xk=fft(x1); figure(1); plot(t,x1); figure(2); plot(0:N-1, xk); figure(3); plot(f, 1/N*abs(xk));
figure1,2 are not found. what is the problem? how can i fix it?

Respuestas (2)

Star Strider
Star Strider el 2 de Dic. de 2017
Small error in figure(3). You do not need figure(2).
This works:
Ts = 0.01; N=2000; t=-20:Ts:(N-1)*Ts;
T = 1;
fs=1/Ts;
f=0:fs/N:(N-1)/N*fs;
x1 = rectpuls(t, T);
xk=fft(x1);
figure(1); plot(t,x1)2
figure(3); plot(f, 1/N*abs(xk(1:length(f))));
  4 comentarios
Parth Patel
Parth Patel el 16 de Abr. de 2020
Editada: Parth Patel el 16 de Abr. de 2020
In this program , i asume, f = frequency.
can the value of frequency be zero?
f=0:fs/N:(N-1)/N*fs;
thanks in adavnce
Star Strider
Star Strider el 16 de Abr. de 2020
Yes.
A zero frequency signal is d-c, usually present as a constant offset in a signal that is otherwise varying. The d-c component is the mean of the signal.

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Tilkesh
Tilkesh el 28 de Mzo. de 2022
function y = rect(x, D)
% function y = rect(x, D)
if nargin == 1, D = 1;
x = abs(x);
y = double(x<D/2);
y(x == D/2) = 0.5;
end

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