2009Unpublished venueRequires access

Study on synthetic aperture imaging lidar based on a laboratory-scale sliding guide system

Bo Zang, Liang Guo, Mengdao Xing, Lulan Long

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Abstract

Synthetic Aperture Imaging Lidar (SAIL) is an extension of conventional microwave Synthetic Aperture Radar (SAR) to much shorter wavelengths (by a factor of about 100,000). This kind of active imaging radar can offer finer resolution and better image feature which is closer to optical image. In this paper, we introduce our laboratory-scale SAIL system in detail, elaborate difficulties that we have solved and will solve, and report our infrared optical synthetic aperture image of a fixed, diffusely scattering target with an aperture moving along with a sliding guide.

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What this paper is about

Synthetic Aperture Imaging Lidar (SAIL) is an extension of conventional microwave Synthetic Aperture Radar (SAR) to much shorter wavelengths (by a factor of about 100,000). This kind of active imaging radar can offer finer resolution and better image feature which is closer to optical image. In this paper, we introduce our laboratory-scale SAIL system in detail, elaborate difficulties that we have solved and will solve, and report our infrared optical synthetic aperture image of a fixed, diffusely scattering target with an aperture moving along with a sliding guide.

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Available abstract

Synthetic Aperture Imaging Lidar (SAIL) is an extension of conventional microwave Synthetic Aperture Radar (SAR) to much shorter wavelengths (by a factor of about 100,000). This kind of active imaging radar can offer finer resolution and better image feature which is closer to optical image. In this paper, we introduce our laboratory-scale SAIL system in detail, elaborate difficulties that we have solved and will solve, and report our infrared optical synthetic aperture image of a fixed, diffusely scattering target with an aperture moving along with a sliding guide.

Key concepts: Synthetic aperture radar, Lidar, Radar imaging, Inverse synthetic aperture radar, Side looking airborne radar, Remote sensing, Computer science, Aperture (computer memory)

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