2015Unpublished venueRequires access

Investigation of monostatic RCS measurement for simple and complex shapes at 9.4 GHz

Tarek Maamria, H. Kimouche

Open publisher page 5 citations

Abstract

In this paper Radar Cross Section (RCS) of simple and complex objects like sphere, cylinder, flat plate and Z-shaped plate is computed and measured with respect to the parameters like frequency and aspect angle. RCS diagrams of these objects are obtained with a Lab-Volt radar training system. The measurements and simulations were carried out at the radar frequency of 9.4 GHz. It shows that there is an acceptable agreement between the measured results and the simulated ones for the operating frequency.

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What this paper is about

In this paper Radar Cross Section (RCS) of simple and complex objects like sphere, cylinder, flat plate and Z-shaped plate is computed and measured with respect to the parameters like frequency and aspect angle. RCS diagrams of these objects are obtained with a Lab-Volt radar training system. The measurements and simulations were carried out at the radar frequency of 9.4 GHz. It shows that there is an acceptable agreement between the measured results and the simulated ones for the operating frequency.

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OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

In this paper Radar Cross Section (RCS) of simple and complex objects like sphere, cylinder, flat plate and Z-shaped plate is computed and measured with respect to the parameters like frequency and aspect angle. RCS diagrams of these objects are obtained with a Lab-Volt radar training system. The measurements and simulations were carried out at the radar frequency of 9.4 GHz. It shows that there is an acceptable agreement between the measured results and the simulated ones for the operating frequency.

Key concepts: Radar cross-section, Radar, Cylinder, Simple (philosophy), Bistatic radar, Optics, Acoustics, Physics

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