Article | REF: AF1441 V1

Fourier transform and its applications (Part 2)

Author: Joël LE ROUX

Publication date: April 10, 2007

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ABSTRACT

This article on Fourier transform is composed of two paragraphs dealing with two very distinct aspects. In the first one, the expressions of Fourier transform in the case of the numerical processing of sampled signals are presented. A few uses and extensions of the direct transform are then proposed. The second paragraph deals with the case of two-dimensional signals and their representation in frequency. These signals serve as a basis in different domains such as compression and image filtering, preprocessing for form recognition, etc. The case of the 2D Fourier transform completes this article: interpretation and properties are presented.

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AUTHOR

  • Joël LE ROUX: École polytechnique universitaire (EPU) Université de Nice Sophia-Antipolis

 INTRODUCTION

This second part of the Fourier transform presentation comprises two separate, unrelated paragraphs. It is based on the developments given in the first part in .

In the first paragraph, we'll look at Fourier transform expressions in the case of digital processing of sampled signals (the discrete Fourier transform), describing the fast Fourier transform algorithm in particular and noting a few practical considerations that shouldn't be overlooked when implementing and using the discrete Fourier transform. We will mention important applications such as MP3 compression of music signals or OFDM modulation used, for example, in digital broadcasting. We also present the main results concerning spectral analysis of random signals, mainly the notions of autocorrelation function and spectral density.

In a second section, we look at the case of two-dimensional signals (most often images) and their representation in frequencies, which will serve as a basis for various fields of application: image compression, image filtering, pre-processing for pattern recognition, with particular reference to the important properties of the Radon transform, which is widely used in medical imaging.

Implementation and application examples will be discussed in a third section. .

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The Fourier transform and its applications (part 2)