2010Unpublished venueRequires access

Phased array digital beamforming hardware development at Applied Radar

William H. Weedon

Open publisher page 24 citations

Abstract

This paper describes technology development efforts in support of phased-array digital beamforming at Applied Radar, Inc. The development efforts are aimed at increasing the bandwidth and dynamic range and enabling real-time throughput of multi-channel array data. This digital beamforming approach enables improved calibration, increased coverage through multiple receive beams, and adaptive processing and nulling. We describe enabling component technology including multi-channel FPGA-based digital hardware and a multi-channel wideband receiver. We also discuss a multi-channel wideband receiver system that was recently developed for electronic sensing and a wideband digital receiver/exciter (DREX) for radar applications.

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What this paper is about

This paper describes technology development efforts in support of phased-array digital beamforming at Applied Radar, Inc. The development efforts are aimed at increasing the bandwidth and dynamic range and enabling real-time throughput of multi-channel array data. This digital beamforming approach enables improved calibration, increased coverage through multiple receive beams, and adaptive processing and nulling. We describe enabling component technology including multi-channel FPGA-based digital hardware and a multi-channel wideband receiver. We also discuss a multi-channel wideband receiver system that was recently developed for electronic sensing and a wideband digital receiver/exciter (DREX) for radar applications.

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Available abstract

This paper describes technology development efforts in support of phased-array digital beamforming at Applied Radar, Inc. The development efforts are aimed at increasing the bandwidth and dynamic range and enabling real-time throughput of multi-channel array data. This digital beamforming approach enables improved calibration, increased coverage through multiple receive beams, and adaptive processing and nulling. We describe enabling component technology including multi-channel FPGA-based digital hardware and a multi-channel wideband receiver. We also discuss a multi-channel wideband receiver system that was recently developed for electronic sensing and a wideband digital receiver/exciter (DREX) for radar applications.

Key concepts: Beamforming, Phased array, Wideband, Computer science, Field-programmable gate array, Electronic engineering, Channel (broadcasting), Bandwidth (computing)

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