EP1392012A2

Receiving apparatus with waveform degradation compensating function

Abstract

A receiving apparatus comprises a first waveform degradation compensating unit (3), a second waveform degradation compensating unit (5), a received waveform measuring unit (8) for measuring waveform data on a received signal, a control unit (9) for controlling compensation characteristics of the first and second waveform degradation compensating units (3, 5) to minimize a difference between frequency data obtained by converting the obtained received waveform data into a frequency domain and frequency data on a reference waveform free from waveform degradation, and time-constant generating units (16-1, 16-2) for making a difference in compensation characteristic control speed between the first and second waveform degradation compensating units (3, 5). This realizes high-accuracy compensation for waveform degradation of a received signal stemming from chromatic dispersion, polarization mode dispersion or the like without employing a dispersion compensation fiber or a polarization maintaining fiber.

EP1392012A2, drawing sheet 1
Sheet 1 of 21

Term

Term ended

Projected expiry passed 17 February 2023, 3.6 years ago.

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11 claims: 2 independent, 9 dependent

  1. 1
    A receiving apparatus with a waveform degradation compensating function, characterised by comprising:first waveform degradation compensating means (3) of a compensation characteristic variable type for compensating for waveform degradation of a received signal;second waveform degradation compensating means (5) of a compensation characteristic variable type for further compensating for waveform degradation of an output of said first waveform degradation compensating means (3);received waveform measuring means (8) for measuring waveform data on said received signal (which will be referred to hereinafter as "received waveform data");control means (9) for controlling compensation characteristics of said first and second waveform degradation compensating means (3, 5) so that a difference between frequency data obtained by converting said received waveform data, acquired by said received waveform measuring means (8), into a frequency domain and frequency data on a reference waveform free from waveform degradation reaches a minimum;and time-constant generating means (16-1, 16-2) for making a difference between a speed of the control of said compensation characteristic of said first waveform degradation compensating means (3) by said control means (9) and a speed of the control of said compensation characteristic of said second waveform degradation compensating means (5) by said control means (9).
  2. 10
    A receiving apparatus with a waveform degradation compensating function, characterised by comprising:a demultiplexing unit (41) for receiving a wavelength-multiplexed optical signal, produced by multiplexing a plurality of kinds of wavelengths, from an optical transmission line to demultiplex said wavelength-multiplexed optical signal according to wavelength;optical waveform degradation compensating means (5A or 5B) of a compensation characteristic variable type for compensating for waveform degradation said wavelength-multiplexed optical signal encounters;a plurality of electric waveform degradation compensating means (3, 5) of a compensation characteristic variable type provided with respect to a specified wavelength of at least one wave of optical signals obtained by the demultiplexing in said demultiplexing unit (41) for compensating for waveform degradation a received signal suffers after photoelectric conversion of the optical signal;received waveform measuring means (8) for measuring waveform data on said received signal (which will be referred to hereinafter as "received waveform data");control means (9) for individually controlling compensation characteristics of said optical waveform degradation compensating means (5A or 5B) and said electric waveform degradation compensating means (3, 5) so that a difference between frequency data obtained by converting said received waveform data, acquired by said received waveform measuring means (8), into a frequency domain and frequency data on a reference waveform free from waveform degradation reaches a minimum;and time-constant generating means (16-1, 16-2) for making a difference between a speed of the control of said compensation characteristic of said optical waveform degradation compensating means (5A or 5B) by said control means (9) and a speed of the control of the compensation characteristic of each of the electric waveform degradation compensating means (3, 5) by said control means (9).