2007Unpublished venueRequires access

An interferometric imaging altimeter applied for both ocean and land observation

Yunhua Zhang, Xiangkun Zhang, Xin Meng, Wei Luo, Zhixin Zhou, Jingshan Jiang

Open publisher page 29 citations

Abstract

This paper introduces an interferometric imaging altimeter system designed for both ocean and land observations. This sensor combines the functions of interferometric radar altimeter and SAR together and is aimed to provide centimeter- level accuracy of topography for ocean and meter-level accuracy of topography for land. With the interferometry technique, a wide swath of 80 km is achieved, and with the synthetic aperture technique, a resolution of 100 m for land observation is achieved. System design is outlined and some preliminary results are presented.

About this research paper

What this paper is about

This paper introduces an interferometric imaging altimeter system designed for both ocean and land observations. This sensor combines the functions of interferometric radar altimeter and SAR together and is aimed to provide centimeter- level accuracy of topography for ocean and meter-level accuracy of topography for land. With the interferometry technique, a wide swath of 80 km is achieved, and with the synthetic aperture technique, a resolution of 100 m for land observation is achieved. System design is outlined and some preliminary results are presented.

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OpenAlex reports 29 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper introduces an interferometric imaging altimeter system designed for both ocean and land observations. This sensor combines the functions of interferometric radar altimeter and SAR together and is aimed to provide centimeter- level accuracy of topography for ocean and meter-level accuracy of topography for land. With the interferometry technique, a wide swath of 80 km is achieved, and with the synthetic aperture technique, a resolution of 100 m for land observation is achieved. System design is outlined and some preliminary results are presented.

Key concepts: Altimeter, Remote sensing, Interferometry, Synthetic aperture radar, Radar altimeter, Interferometric synthetic aperture radar, Geology, Space-based radar

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