Article | REF: TE6662 V1

Radars - Advanced radar signal processing

Author: Jacques DARRICAU

Publication date: August 10, 2013, Review date: December 1, 2022

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ABSTRACT

This article describes signal processing applied to radars. Linear filtering is described via the study of pulse-compression and correlation radars, which leads to the concept of optimal filtering in the presence of white and colored noise. Pulse-doppler and high angular resolution radars are the subject of a specific study, as well as synthetic aperture radar. Finally principles of anti-jamming by deletion and opposition of side lobes (OLS) as well as adaptive antenna are dealt with.

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 INTRODUCTION

In this article, the focus is on signal processing processes applied to radar, their principles, the resulting reception techniques and their performance criteria.

Following on from the notion of optimal filtering presented in the "Detection parameters" booklet, the main principles of linear filtering are described through the study of receivers:

  • pulse compression ;

  • coded ;

  • correlation ;

  • digital.

For each of them, we'll look at the principle behind them, their specific characteristics and the parameters they can be used to measure.

The generalization of these filtering processes then leads to a definition of optimal receivers, as an introduction to optimal reception processes in colored noise.

Then, a magnifying glass is put on the Doppler processing of targets for what concerns :

  • pulse doppler radars;

  • high angular resolution radars as an introduction to synthetic antenna radars, of which RIAS is an application.

Finally, the main principles of spatial elimination of interferers by acting on the signal perceived by the radar antenna are studied, including Side Lobe Opposition (SLO) and adaptive computational beamforming antennas.

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KEYWORDS

linear filtering   |   synthetic aperture   |   antijamming   |   adaptive antenna   |   detection   |   location   |   Analysis of radio communication signals   |   antennas


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Radar. Advanced radar signal processing