2003Unpublished venueRequires access

A novel phased array based on the extended resonance power dividing technique

A. Tombak, Amir Mortazawi

Open publisher page 2 citations

Abstract

A novel phased array based on the extended resonance power dividing technique has been presented. This phased array eliminates the need for a separate power splitter and phase shifters in a conventional phased array system. As a proof of principle, a 2 GHz extended resonance based phased array consisting of 4 microstrip patch antennas has been designed, fabricated and tested. The measured scan range was +/- 13.5 degrees with an average beamwidth of 26 degrees.

About this research paper

What this paper is about

A novel phased array based on the extended resonance power dividing technique has been presented. This phased array eliminates the need for a separate power splitter and phase shifters in a conventional phased array system. As a proof of principle, a 2 GHz extended resonance based phased array consisting of 4 microstrip patch antennas has been designed, fabricated and tested. The measured scan range was +/- 13.5 degrees with an average beamwidth of 26 degrees.

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OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

A novel phased array based on the extended resonance power dividing technique has been presented. This phased array eliminates the need for a separate power splitter and phase shifters in a conventional phased array system. As a proof of principle, a 2 GHz extended resonance based phased array consisting of 4 microstrip patch antennas has been designed, fabricated and tested. The measured scan range was +/- 13.5 degrees with an average beamwidth of 26 degrees.

Key concepts: Phased array, Beamwidth, Phased-array optics, Splitter, Microstrip, Microstrip antenna, Phase shift module, Resonance (particle physics)

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