Phased array digital beamforming hardware development at Applied Radar
William H. Weedon
Abstract
William H. Weedon
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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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)