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<H2><A ID="SECTION001311000000000000000">
Periodicity of the Fourier transform</A>
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<P>
If X[n] is, as above, a signal that repeats every <IMG
WIDTH="18" HEIGHT="14" ALIGN="BOTTOM" BORDER="0"
SRC="img3.png"
ALT="$N$"> samples, the Fourier
transform of X[n] also repeats itself every <IMG
WIDTH="18" HEIGHT="14" ALIGN="BOTTOM" BORDER="0"
SRC="img3.png"
ALT="$N$"> units of frequency, that is,
<BR><P></P>
<DIV ALIGN="CENTER">
<!-- MATH
\begin{displaymath}
{\cal FT}\left \{ X[n] \right \} (k+N) =
{\cal FT}\left \{ X[n] \right \} (k)
\end{displaymath}
-->
<IMG
WIDTH="256" HEIGHT="28" BORDER="0"
SRC="img1061.png"
ALT="\begin{displaymath}
{\cal FT}\left \{ X[n] \right \} (k+N) =
{\cal FT}\left \{ X[n] \right \} (k)
\end{displaymath}">
</DIV>
<BR CLEAR="ALL">
<P></P>
for all real values of <IMG
WIDTH="12" HEIGHT="14" ALIGN="BOTTOM" BORDER="0"
SRC="img58.png"
ALT="$k$">. This follows immediately from the definition
of the Fourier transform, since the factor
<BR><P></P>
<DIV ALIGN="CENTER">
<!-- MATH
\begin{displaymath}
V = \cos(-k\omega) + i\sin(-k\omega)
\end{displaymath}
-->
<IMG
WIDTH="188" HEIGHT="28" BORDER="0"
SRC="img1060.png"
ALT="\begin{displaymath}
V = \cos(-k\omega) + i\sin(-k\omega)
\end{displaymath}">
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<BR CLEAR="ALL">
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is unchanged when we add <IMG
WIDTH="18" HEIGHT="14" ALIGN="BOTTOM" BORDER="0"
SRC="img3.png"
ALT="$N$"> (or any multiple of <IMG
WIDTH="18" HEIGHT="14" ALIGN="BOTTOM" BORDER="0"
SRC="img3.png"
ALT="$N$">) to <IMG
WIDTH="12" HEIGHT="14" ALIGN="BOTTOM" BORDER="0"
SRC="img58.png"
ALT="$k$">.
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<ADDRESS>
Miller Puckette
2006-12-30
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