Method of remotely measuring diffuse attenuation coefficient of

Optics: measuring and testing – For optical fiber or waveguide inspection

Patent

Rate now

  [ 0.00 ] – not rated yet Voters 0   Comments 0

Details

356301, G01N 2100, G01J 344

Patent

active

049866567

ABSTRACT:
A method of remotely measuring the diffuse attenuation coefficient K of ocean water from an airborne platform such as an aircraft. By directing a pulsed laser beam having a wavelength .lambda..sub.0 from the platform into the water, the beam interacts therewith to produce inelastic Brillouin backscatter signals at the wavelength .lambda..sub.1, where .lambda..sub.1 .noteq..lambda..sub.0. The desired backscatter propagate generally oppositely to the direction of propagation of the pulsed laser beam so that the backscatter can be received and collected at the platform. The upwelling optical energy includes the desired backscatter signals, which are separated out from the remainder of the upwelling optical energy. The separated backscatter signals are converted to equivalent electrical signals and periodically analyzed to generate therefrom the diffuse attenuation coefficient of the ocean water at the .lambda..sub.1 wavelength at periodic depths beneath the water surface. In another aspect of this invention both the Brillouin backscatter signals and the Raman backscatteer signals are separately filtered out to simultaneously measure the diffuse attenuation coefficient of the water at two distinct wavelengths. In another aspect of this invention the diffused attenation coefficient K is measured from a submerged platform, such as a submarine. This has the advantage of allowing deep ocean layers to be measured along with ocean water beneath the polar ice cap.

REFERENCES:
patent: 4123160 (1978-10-01), Caputo et al.
patent: 4411525 (1983-10-01), Ogawa
patent: 4853543 (1989-08-01), Ozdemir
patent: 4867558 (1989-09-01), Leonard et al.
NATO Advisory Group for Aerospace Research and Development, Austin et al., 41081, pp. 18-1-18-9.
"Brillouin Scattering in Water: The Landau-Placzek Ratio" by C. L. O'Conner, J. P. Schlept, Journal of Chemical Physics, vol. 47, No. 1, 1 Jul. 67, pp. 31-38.
"Atomic Resonance Filters" by J. A. Gelbwachs, IEEE Journal of Quantum Physics, vol. 24, No. 7, Jul. 1988, pp. 1266-1277.
"Remote Sensing of the Diffuse Attenuation Coefficient of Ocean Water" by R. W. Austin, Special Topics in Optical Propagation, AGARD Conference Proceedings No. 300, pp. 18-1-18-9.
"Spectral Dependence of the Diffuse Attenuation Co-Efficient of Light in Ocean Waters" by R. W. Austin, T. J. Petzoid, Optical Engineering, Mar. 1986, vol. 25 No. 3, pp. 471-479.
"Optical Properties of the Clearest Natural Waters (200-800 nm)" by Raymond C. Smith, Karen S. Baker, Applied Optics, 15 Jan. 1981, Bol. 20, No. 2, pp. 177-184.

LandOfFree

Say what you really think

Search LandOfFree.com for the USA inventors and patents. Rate them and share your experience with other people.

Rating

Method of remotely measuring diffuse attenuation coefficient of does not yet have a rating. At this time, there are no reviews or comments for this patent.

If you have personal experience with Method of remotely measuring diffuse attenuation coefficient of , we encourage you to share that experience with our LandOfFree.com community. Your opinion is very important and Method of remotely measuring diffuse attenuation coefficient of will most certainly appreciate the feedback.

Rate now

     

Profile ID: LFUS-PAI-O-1551661

  Search
All data on this website is collected from public sources. Our data reflects the most accurate information available at the time of publication.