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|  | (version 3.3.10, 10 December 2020). | ||
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|  | Copyright (C) 2003 Matteo Frigo. | ||
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|  | <span id="The-1d-Discrete-Fourier-Transform-_0028DFT_0029-1"></span><h4 class="subsection">4.8.1 The 1d Discrete Fourier Transform (DFT)</h4> | ||
|  | 
 | ||
|  | <span id="index-discrete-Fourier-transform-1"></span> | ||
|  | <span id="index-DFT-2"></span> | ||
|  | <p>The forward (<code>FFTW_FORWARD</code>) discrete Fourier transform (DFT) of a | ||
|  | 1d complex array <em>X</em> of size <em>n</em> computes an array <em>Y</em>, | ||
|  | where: | ||
|  | <center><img src="equation-dft.png" align="top">.</center> | ||
|  | The backward (<code>FFTW_BACKWARD</code>) DFT computes: | ||
|  | <center><img src="equation-idft.png" align="top">.</center> | ||
|  | </p> | ||
|  | <span id="index-normalization-8"></span> | ||
|  | <p>FFTW computes an unnormalized transform, in that there is no coefficient | ||
|  | in front of the summation in the DFT.  In other words, applying the | ||
|  | forward and then the backward transform will multiply the input by | ||
|  | <em>n</em>. | ||
|  | </p> | ||
|  | <span id="index-frequency-1"></span> | ||
|  | <p>From above, an <code>FFTW_FORWARD</code> transform corresponds to a sign of | ||
|  | <em>-1</em> in the exponent of the DFT.  Note also that we use the | ||
|  | standard “in-order” output ordering—the <em>k</em>-th output | ||
|  | corresponds to the frequency <em>k/n</em> (or <em>k/T</em>, where <em>T</em> | ||
|  | is your total sampling period).  For those who like to think in terms of | ||
|  | positive and negative frequencies, this means that the positive | ||
|  | frequencies are stored in the first half of the output and the negative | ||
|  | frequencies are stored in backwards order in the second half of the | ||
|  | output.  (The frequency <em>-k/n</em> is the same as the frequency | ||
|  | <em>(n-k)/n</em>.) | ||
|  | </p> | ||
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