Performance analysis for FMCW ranging using photon-counting detectors

We analyze the performance of FMCW ranging with photon-counting detectors. We derive the Cramér-Rao bound, then determine the optimal fraction of signal-arm photons, given a fixed mean number of source-generated photons.

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Published in:CLEO: 2013 pp. 1 - 2
Main Authors: Erkmen, Baris I., Dahl, Jason R., Barber, Zeb W.
Format: Conference Proceeding
Language:English
Published: The Optical Society 01-06-2013
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Abstract We analyze the performance of FMCW ranging with photon-counting detectors. We derive the Cramér-Rao bound, then determine the optimal fraction of signal-arm photons, given a fixed mean number of source-generated photons.
AbstractList We analyze the performance of FMCW ranging with photon-counting detectors. We derive the Cramér-Rao bound, then determine the optimal fraction of signal-arm photons, given a fixed mean number of source-generated photons.
Author Dahl, Jason R.
Barber, Zeb W.
Erkmen, Baris I.
Author_xml – sequence: 1
  givenname: Baris I.
  surname: Erkmen
  fullname: Erkmen, Baris I.
  email: baris.i.erkmen@jpl.nasa.gov
  organization: Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA, USA
– sequence: 2
  givenname: Jason R.
  surname: Dahl
  fullname: Dahl, Jason R.
  organization: Spectrum Lab., Montana State Univ., Bozeman, MO, USA
– sequence: 3
  givenname: Zeb W.
  surname: Barber
  fullname: Barber, Zeb W.
  organization: Spectrum Lab., Montana State Univ., Bozeman, MO, USA
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Snippet We analyze the performance of FMCW ranging with photon-counting detectors. We derive the Cramér-Rao bound, then determine the optimal fraction of signal-arm...
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StartPage 1
SubjectTerms Detectors
Distance measurement
Frequency modulation
Maximum likelihood estimation
Nickel
Photonics
Title Performance analysis for FMCW ranging using photon-counting detectors
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