2018Unpublished venueRequires access

LiDAR Systems and Calibration

Aloysius Wehr

Open publisher page 18 citations

Abstract

This chapter focuses on the physical principles of the operation and the resulting effects of laser ranging. Laser ranging methods are examined focusing on the most commonly employed type of laser altimeter technology that uses pulsed laser light. Waveform recording systems and those that generate point clouds are described. For the latter type, discrete return and single-photon detection approaches are addressed. Relationships between ranging methods, instrument parameters, and the character of the resulting elevation data are considered. The emphasis is on vegetated landscapes and, in particular, the measurement of ground topography beneath vegetation cover and characterization of forest canopy structure.

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What this paper is about

This chapter focuses on the physical principles of the operation and the resulting effects of laser ranging. Laser ranging methods are examined focusing on the most commonly employed type of laser altimeter technology that uses pulsed laser light. Waveform recording systems and those that generate point clouds are described. For the latter type, discrete return and single-photon detection approaches are addressed. Relationships between ranging methods, instrument parameters, and the character of the resulting elevation data are considered. The emphasis is on vegetated landscapes and, in particular, the measurement of ground topography beneath vegetation cover and characterization of forest canopy structure.

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OpenAlex reports 18 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This chapter focuses on the physical principles of the operation and the resulting effects of laser ranging. Laser ranging methods are examined focusing on the most commonly employed type of laser altimeter technology that uses pulsed laser light. Waveform recording systems and those that generate point clouds are described. For the latter type, discrete return and single-photon detection approaches are addressed. Relationships between ranging methods, instrument parameters, and the character of the resulting elevation data are considered. The emphasis is on vegetated landscapes and, in particular, the measurement of ground topography beneath vegetation cover and characterization of forest canopy structure.

Key concepts: Lidar, Calibration, Remote sensing, Environmental science, Computer science, Geography, Mathematics, Statistics

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