1 January 1991 Lidar In-Space Technology Experiment (LITE): NASA's first in-space lidar system for atmospheric research
Richard H. Couch, Carroll W. Rowland, K. Scott Ellis, Michael P. Blythe, Curtis R. Regan, Michael R. Koch, Charles W. Antill Jr., Wayne L. Kitchen, John W. Cox, Joseph F. DeLorme, Sharon K. Crockett, Rubin G. Remus, Joseph C. Casas, William H. Hunt
Author Affiliations +
Abstract
The Lidar In-Space Technology Experiment (LITE) is being developed by NASA/Langley Research Center for flight on the Space Shuttle. The system will detect stratospheric and tropospheric aerosols, probe the planetary boundary layer, measure cloud top heights, and measure atmospheric temperature and density in the range of 10 to 40 km. The system consists of a nominal 1 m diameter telescope receiver, a three-color neodymium: YAG laser transmitter, and the system electronics. The instrument makes extensive use of Space Shuttle resources for electrical power, thermal control, and command and data handling. The instrument will fly on the Space Shuttle in mid-1993. This paper presents the engineering aspects of the design, fabrication, integration, and operation of the instrument. A companion paper by members of the LITE Science Steering Group that details the science aspects of LITE is in preparation and will be published at a later time.
Richard H. Couch, Carroll W. Rowland, K. Scott Ellis, Michael P. Blythe, Curtis R. Regan, Michael R. Koch, Charles W. Antill Jr., Wayne L. Kitchen, John W. Cox, Joseph F. DeLorme, Sharon K. Crockett, Rubin G. Remus, Joseph C. Casas, and William H. Hunt "Lidar In-Space Technology Experiment (LITE): NASA's first in-space lidar system for atmospheric research," Optical Engineering 30(1), (1 January 1991). https://doi.org/10.1117/12.55775
Published: 1 January 1991
Lens.org Logo
CITATIONS
Cited by 40 scholarly publications.
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
LIDAR

Electronics

Space telescopes

Telescopes

Sensors

Space operations

Aerospace engineering

RELATED CONTENT

Space-based direct detection wind mission design
Proceedings of SPIE (May 03 2007)
A Lidar Technology Experiment From Space Shuttle Lidar In...
Proceedings of SPIE (October 06 1986)
Multiband imaging photometer for SIRTF
Proceedings of SPIE (August 28 1998)
Optical instruments heading in a new direction
Proceedings of SPIE (September 07 2006)
Ball global imaging system for Earth remote sensing
Proceedings of SPIE (February 09 2001)

Back to Top