2005•Unpublished venueRequires access

The NASA/JPL Multifrequency, Multipolarisation Airborne SAR System

Daniel N. Held, W.E. Brown, A. Freeman, J.D. Klein, Howard A. Zebker, T. Sate, Therese C. Miller, Quynh Giang Nguyen, Yunling Lou

Open publisher page 44 citations

Abstract

Polarimetric synthetic aperture radars, operating at L-, C- and P-band, were designed to replace and upgrade a system destroyed in an aircraft accident. Ground and flight tests were conducted, and the radar was flown over a calibration site in a sequence of experiments designed to calibrate the system. The radar also took part in science campaigns.

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What this paper is about

Polarimetric synthetic aperture radars, operating at L-, C- and P-band, were designed to replace and upgrade a system destroyed in an aircraft accident. Ground and flight tests were conducted, and the radar was flown over a calibration site in a sequence of experiments designed to calibrate the system. The radar also took part in science campaigns.

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OpenAlex reports 44 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Polarimetric synthetic aperture radars, operating at L-, C- and P-band, were designed to replace and upgrade a system destroyed in an aircraft accident. Ground and flight tests were conducted, and the radar was flown over a calibration site in a sequence of experiments designed to calibrate the system. The radar also took part in science campaigns.

Key concepts: Remote sensing, Synthetic aperture radar, Space-based radar, Side looking airborne radar, 3D radar, Early-warning radar, Radar, Radar configurations and types

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