Search NASASearch

NASA NTRS · 20000090521

Future Applications Using Return-Pulse Correlation from Imaging Laser Altimeters

Abstract

The Laser Vegetation Imaging Sensor (LVIS) is an airborne, wide-swath, digitization-only laser altimeter capable of collecting full return waveforms (i.e. echoes) from laser footprints ranging in diameter from 1 to 80 m across up to a 1 km wide data swath. The return waveform can be used to enhance the accuracy of laser ranging and to provide information about the vertical structure of vegetation and topography within each laser footprint. Although extremely small laser footprints (< 1 0 cm diameter) generally return simple, impulse responses to their target surface, larger footprints typically exhibit complex returns representing the diverse vertical distributions of surfaces contained in each footprint. Only a handful of airborne and spaceborne laser altimeters record the return echo or return pulse that is reflected from the Earth's surface (i.e. NASA's LVIS, SLA, VCL, and GLAS laser altimeters). Waveforms are currently interpreted to extract a timing or ranging point or points to represent the mean ground elevation or the vertical height of vegetation. But, recent progress using pulse shape correlation techniques shows promise for a variety of science applications involving change detection of surface topography and vegetation as well as potential for improving data processing by correlating images or crossovers to solve systematic biases. We show example correlation images from LVIS and discuss instrument design implications and potential science applications.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Blair, J. Bryan, Hofton, Michelle A., Rabine, David L.. 2000-01-01. Future Applications Using Return-Pulse Correlation from Imaging Laser Altimeters. https://ntrs.nasa.gov/citations/20000090521

Cite the original work for its findings. Save a collection to share your selection of sources.