National Technical Reports Library - NTRL

National Technical Reports Library

The National Technical Information Service acquires, indexes, abstracts, and archives the largest collection of U.S. government-sponsored technical reports in existence. The NTRL offers online, free and open access to these authenticated government technical reports. Technical reports and documents in its repository may be available online for free either from the issuing federal agency, the U.S. Government Publishing Office’s Federal Digital System website, or through search engines.




Details
Actions:
Download PDFDownload PDF
Download

Speckle Imaging Over Horizontal Paths.


DE200415006854

Publication Date 2002
Personal Author Carrano, C. J.
Page Count 18
Abstract Atmospheric aberrations reduce the resolution and contrast in surveillance images recorded over horizontal or slant paths. This paper describes our recent horizontal and slant path imaging experiments of extended scenes as well as the results obtained using speckle imaging. The experiments were performed with an 8-inch diameter telescope placed on either a rooftop or hillside and cover ranges of interest from 0.5 km up to 10 km. The scenery includes resolution targets, people, vehicles, and other structures. The improvement in image quality using speckle imaging is dramatic in many cases, and depends significantly upon the atmospheric conditions. We quantify resolution improvement through modulation transfer function measurement comparisons.
Keywords
  • Modulation
  • Resolution
  • Targets
  • Telescopes
  • Transfer functions
  • Horizontal path imaging
  • Slant path imaging
  • Extended scenes
  • Horizontal paths
  • Speckle imaging
Source Agency
  • Technical Information Center Oak Ridge Tennessee
Corporate Authors Lawrence Livermore National Lab., CA.; Department of Energy, Washington, DC.
Supplemental Notes Sponsored by Department of Energy, Washington, DC.
Document Type Technical Report
NTIS Issue Number 200416
Speckle Imaging Over Horizontal Paths.
Speckle Imaging Over Horizontal Paths.
DE200415006854

  • Modulation
  • Resolution
  • Targets
  • Telescopes
  • Transfer functions
  • Horizontal path imaging
  • Slant path imaging
  • Extended scenes
  • Horizontal paths
  • Speckle imaging
  • Technical Information Center Oak Ridge Tennessee
Loading