EP0771091A2

Chirped-pulse multiple wavelength telecommunications system

Abstract

An apparatus and method provides optical multiple wavelength signals using a single optical broadband source to generate many independent optical wavelength channels. An optical transmitter includes a pulse chirping device which separates the frequency components of periodic optical pulses in the time domain forming separate wavelength channels which are separately modulated by a high-speed broadband optical modulator. A receiver includes a passive splitter to separate the individual wavelength channels. The chirped-pulse transmitter can then be conveniently adjusted to provide optimum overlap of wavelength channels with the modulating channel spectra.

EP0771091A2, drawing sheet 1
Sheet 1 of 13

Term

Term ended

Projected expiry passed 15 October 2016, 9.9 years ago.

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

29 claims: 16 independent, 13 dependent

  1. 1
    An optical multiple wavelength apparatus (200) characterized by an optical disperser (202) for receiving short optical pulses at a first rate and forming therefrom a train of chirped optical pulses with each such chirped optical pulse extending over a plurality of time periods, each time period associated with a different optical wavelength channel;andan optical modulator (207) encoding an optical wavelength channel of one or more of the time periods of selected ones of the chirped optical pulse train using a data signal operating at a second rate equal to or greater than said first rate to form an encoded optical signal.
  2. 5
    The optical multiple wavelength apparatus of any of the preceding claims characterized in that the short optical pulses have a pulse width that is less than or equal to the inverse of the second rate.
  3. 6
    The optical multiple wavelength apparatus of any of the preceding claims characterized in that the optical disperser is an optical prism.
  4. 7
    The optical multiple wavelength apparatus of any of claims 1 to 5 characterized in that the optical disperser is a single-mode dispersive optical fiber.
  5. 8
    The optical multiple wavelength apparatus of any of claims 1 to 5 characterized in that the optical disperser is an optical grating.
  6. 9
    The optical multiple wavelength apparatus of any of the preceding claims further characterized by    a frequency-dependent filter connected to the output of the optical disperser for equalizing the power spectra of all optical wavelength channels.
  7. 12
    The optical multiple wavelength apparatus of any of the preceding claims characterized in that said optical modulator is arranged so that alternate chirped optical pulses are selected for encoding and the remaining chirped optical pulses are not encoded.
  8. 13
    The optical multiple wavelength apparatus of any of claims 1 to 11 characterized in that said optical modulator is arranged so that each of the chirped optical pulses are selected for encoding.
  9. 14
    The optical multiple wavelength apparatus of any of the preceding claims characterized in that said optical modulator is arranged so that the plurality of time periods are divided into at least two portions, at least one portion having at least one optical wavelength channel encoded by the optical modulator and at least one portion having no optical wavelength channels that are encoded.
  10. 15
    The optical multiple wavelength apparatus of any of the preceding claims characterized in that said optical modulator is adapted to use an analog signal as the data signal.
  11. 16
    The optical multiple wavelength apparatus of any of the preceding claims characterized in that the optical modulator is responsive to an input analog signal having a predefined amplitude characteristic which is modulated by the optical modulator to produce a substantially amplitude-equalized encoded optical signal.
  12. 19
    An optical multiple wavelength communication system characterized by the multiple wavelength apparatus of any of the preceding claims arranged for transmitting the encoded optical signal over an optical medium and further characterized by    a multiple wavelength receiver (210) for demultiplexing the optical signal into the plurality of modulated optical wavelength channels.
  13. 24
    The optical multiple wavelength communication system of any of claims 19 to 23 further characterized by a phase detector circuit connected to the output of the optical modulator to detect the phase of signals in a modulated optical wavelength channel and in response thereto generating a control signal anda phase shifting circuit responsive to said control signal for controlling the alignment of optical wavelength channels with time periods of the data signal.
  14. 25
    The optical multiple wavelength communication system of any of claims 19 to 24 characterized in that at said multiple wavelength apparatus, alternate chirped optical pulses are selected for encoding and are sent along with the unencoded chirped optical pulses over the optical medium, andsaid multiple wavelength receiver includesa selective demultipler for selecting one or more modulated optical wavelength channels to be decoded, andan optical modulator for modulating a data signal onto one or more optical wavelength channels of the unencoded chirped optical pulses for transmission to said multiple wavelength apparatus.
  15. 28
    A method of operating an optical multiple wavelength communication system characterized by the steps of:receiving short optical pulses at a first rate and forming a train of chirped optical pulses having a plurality of time periods, each time period associated with a different optical wavelength channel;encoding the optical wavelength channel of one or more of the time periods of selected ones of the chirped optical pulse train using a data signal operating at a second rate equal to or greater than said first rate;transmitting the resulting encoded optical signal over an optical medium;andreceiving over the optical medium and demultiplexing the encoded optical signal into a plurality of modulated optical wavelength channels.
  16. 29
    A method of forming optical multiple wavelength signals characterized by the steps of:receiving short optical pulses at a first rate and forming therefrom a train of chirped optical pulses with each such chirped optical pulse extending over a plurality of time periods, each time period associated with a different optical wavelength channel;andencoding the optical wavelength channel of one or more of the time periods of selected ones of the chirped optical pulse train using a data signal operating at a second rate equal to or greater than said first rate to form an encoded optical signal.
Independent claims16