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Suppression of Sidelobe Scatterers in an AESA FMCW Radar
This paper describes an active electronically scanned array (AESA) FMCW radar with eight transceivers. Each transceiver has its own Direct Digital Synthesizer (DDS) for signal generation which enables digital beam forming on transmit as well as on receive. The coherent operation of the eight transceivers and the capability to perform digital beam forming on transmit and receive is demonstrated. Also the first results from radar measurements with suppression of sidelobe scatterers are shown.
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Digital beam forming on transmit and receive with an AESA FMCW radar
This paper describes an active electronically scanned array (AESA) FMCW radar with eight transceivers. Each transceiver has its own Direct Digital Synthesizer (DDS) for signal generation which enables digital beam forming on transmit as well as on receive. The coherent operation of the eight transceivers and the capability to perform digital beam forming on transmit and receive is demonstrated. © 2007 EuMA.
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3D mapping of buildings with SAPPHIRE
An experimental radar system is described that is designed to determine a building map in three dimensions by driving past the building with the radar mounted on a vehicle. The radar system, SAPPHIRE, produces full polarimetric reflectivity data in three dimensions with a voxel resolution of <0.5 m in each direction at 10 m distance. SAPPHIRE uses SAR in the driving direction, focused beam forming and MIMO in the vertical direction and FMCW radar in the range direction. The reflectivity data allows interpretation of specular and diffuse scattering behaviour and polarimetric behaviour of the scattering returns. In this paper, we describe the system design, component performance and system calibration. We also present building measurement results with the system mounted on a rail, discuss imaging and mapping methods and show the potential of SAPPHIRE for 3D mapping of buildings.
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