EP1007902A1

Self-calibrating optical fiber pressure, strain and temperature sensors

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 29 July 2018, 8.2 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

18 claims: 3 independent, 15 dependent

  1. 1
    Claims of equivalent WO 9906795 A1 CLAIMS Having thus described my invention, what I claim as new and desire to secure by Letters Patent is as follows:1. An optical fiber measurement system including a source of broadband energy, a transducer receiving said broadband energy having a gap between reflective interfaces of a length which is greater than one-half a coherence length of said broadband energy, a band-pass filter having a pass band smaller than a spectral content of said broadband energy and corresponding to a coherence length greater than twice said length of said gap, and means for determining a ratio of energy of a portion of said broadband energy reflected by said transducer having a coherence length less than twice said length of said gap and energy of another portion of said broad band energy reflected by said transducer having a coherence length greater than twice said length of said gap.
  2. 11
    A method of measuring temperature, pressure or strain including the steps of reflecting broadband energy from two spaced interfaces defining a gap wherein said gap length varies with temperature, pressure or strain, said broadband energy having a coherence length less than one-half said gap length, band pass filtering a portion of reflected broadband energy in accordance with a pass band corresponding to a coherence length greater than twice said gap, and comparing power of said portion of reflected broadband energy filtered by said band pass filtering step with power of another portion of said broadband energy.
  3. 15
    An optical transducer for a measurement system using broadband energy including two reflective interfaces spaced from each other and capable of causing an interference between energy reflected by respective ones of said interfaces, spacing between said interfaces being greater than a coherence length of said broadband energy, and means for limiting change of said spacing of said two reflective interfaces over a measurement range to one-quarter of a wavelength of energy included in said broadband energy.