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A CIRCULAR SYNTHETIC APERTURE RADAR FOR ON-THE-GROUND OBJECT DETECTION
Author(s) -
Mojtaba Mohammadpoor,
Raja Syamsul Azmir Raja Abdullah,
Alyani Ismail,
Ahmad Fauzi Abas
Publication year - 2011
Publication title -
electromagnetic waves
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.437
H-Index - 89
eISSN - 1559-8985
pISSN - 1070-4698
DOI - 10.2528/pier11082201
Subject(s) - remote sensing , synthetic aperture radar , object (grammar) , inverse synthetic aperture radar , side looking airborne radar , computer science , radar , geology , artificial intelligence , computer vision , radar imaging , continuous wave radar , telecommunications
Detecting an on-the-ground object is a subject of interest for use in some applications. Foreign Object Detection (FOD), which is an important issue in aviation safety, is a possible application. In this way, radar imaging, has several inherent advantages over other on-the-ground object detection techniques. This paper will introduce a ground-based Circular Synthetic Aperture Radar, which detects and localizes various objects, based on their re∞ection properties of microwaves. Here, wideband Linear Frequency Modulated (LFM) chirp pulses are employed for the transmission and reception of re∞ection pulses, both to and from the object under test. Once the pulses are received by the radar, a processing algorithm (proposed later in this paper) is executed to conflrm detection. In order to verify the validity of the model, a prototype was developed and a series of fleld experiments was carried out. The results show that the proposed system has the ability to detect and localize on-the-ground objects with dimensions as small as 2cm high and 1cm diameter, located several metres away. Furthermore, the resolution of the system was analysed and results indicate that the system is capable of distinguishing multiple objects in close proximity to each other, which therefore, makes it suitable for FOD applications by some small modiflcations.

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