Paper
8 June 1994 Orbital debris detection program highlights from the Air Force Maui Optical Station
Jeff E. Houchard, Paul W. Kervin, John L. Africano, Shiao Didi Kuo, Robert S. Medrano, John V. Lambert
Author Affiliations +
Abstract
The Air Force Maui Optical Station (AMOS) conducted searches, measurements, and analyses of the orbital debris environment for the Air Force Space Command and the Phillips Laboratory since May 1991 in support of the Air Force Orbital Debris Measurements Program. The objective of this program was to detect orbiting low earth objects not currently in the United States Space Command Space Surveillance Center catalog. Once objects were detected, further objectives were to track, catalog, and maintain those objects locally, to determine statistics on detected objects, and perform relevant analyses. AMOS has developed a prototype surveillance system for the detection and tracking of orbital debris. In addition to this surveillance activity, AMOS has also automated the post-processing videotape streak detection process and is automating the analysis process. Both the optical tracking of orbital debris and the automatic streak detection process were thought to be virtually impossible only a few years ago. The AMOS program employed wide field of view optical telescopes using the Maui Groundbased Electro-Optical Deep Space Surveillance site and AMOS narrow field of view tracking telescopes, both located at the Maui Space Surveillance Site.
© (1994) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Jeff E. Houchard, Paul W. Kervin, John L. Africano, Shiao Didi Kuo, Robert S. Medrano, and John V. Lambert "Orbital debris detection program highlights from the Air Force Maui Optical Station", Proc. SPIE 2214, Space Instrumentation and Dual-Use Technologies, (8 June 1994); https://doi.org/10.1117/12.177674
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Cited by 2 scholarly publications.
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KEYWORDS
Telescopes

Sensors

Space telescopes

Video

Image processing

Surveillance

Visualization

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