EP2209232A2

Gain and signal level adjustments of cascaded optical amplifiers

Abstract

An optical amplification device which includes first and second optical amplifiers, and a controller. The first optical amplifier receives a light and amplifies the received light. The second optical amplifier receives the light amplified by the first optical amplifier, and amplifies the received light. When a level of the light received by the first optical amplifier changes by Δ, the controller controls a level of the flight received by the second optical amplifier to change by approximately -Δ, In various embodiments, the controller causes the sum of the gains of the first and second optical amplifiers to be constant. In other embodiments, the optical amplification device includes first and second optical amplifier and a gain adjustor. The gain adjustor detects a deviation in gain of the first optical amplifier from a target gain, and adjusts the gain of the second optical amplifier to compensate for the detected deviation.

EP2209232A2, drawing sheet 1
Sheet 1 of 23

Term

Term ended

Projected expiry passed 15 March 2019, 7.5 years ago.

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15 claims: 2 independent, 13 dependent

  1. 1
    An apparatus comprising:a first optical amplifier for amplifying a light with a gain of the first optical amplifier;a second optical amplifier for receiving the light amplified by the first optical amplifier, and for amplifying the received light with a gain of the second optical amplifier;and a gain adjustor for detecting a deviation in gain of the first optical amplifier from a target gain, and for adjusting the gain of the second optical amplifier to compensate for the detected deviation.
  2. 2
    An apparatus as in Claim 1, further comprising:a first gain controller for controlling the gain of the first optical amplifier to be constant;and a second gain controller for controlling the gain of the second optical amplifier to be constant.
  3. 3
    An apparatus as in Claim 1, further comprising:a first compensating device for compensating for wavelength dependence of gain of the first optical amplifier;and a second compensating device for compensating for wavelength dependence of gain of the second optical amplifier.
  4. 4
    An apparatus as in Claim 2, further comprising:a first compensating device for compensating for wavelength dependence of gain of the first optical amplifier;and a second compensating device for compensating for wavelength dependence of gain of the second optical amplifier.
  5. 5
    An apparatus as in Claim 1, further comprising:a level controller for controlling a level of the light amplified by the first optical amplifier before being amplified by the second optical amplifier to be at a target level.
  6. 6
    An apparatus as in Claim 1, further comprising:a level controller for controlling a level of the light amplified by the first optical amplifier before being amplified by the second optical amplifier to be at a target level, the level controller being arranged to adjust the target level to compensate for the detected deviation in gain of the first optical amplifier.
  7. 7
    An apparatus as in Claim 2, further comprising:a level controller for controlling a level of the light amplified by the first optical amplifier before being amplified by the second optical amplifier to be at a target level, the level controller being arranged to adjust the target level to compensate for the detected deviation in gain of the first optical amplifier.
  8. 8
    An apparatus as in Claim 1, wherein the gain adjustor comprises:a gain detecting device for detecting the deviation in gain of the first optical amplifier;and a gain adjusting device for adjusting the gain of the second optical amplifier in accordance with the detected deviation.
  9. 9
    An apparatus as in Claim 1, further comprising:a gain controller for controlling the gain of the first optical amplifier to be constant, wherein the deviation in gain of the first optical amplifier is a deviation from the target gain caused by a change in power level of the light before being amplified by the first optical amplifier.
  10. 10
    An apparatus as in Claim 6, further comprising:a gain controller for controlling the gain of the first optical amplifier to be constant, wherein the deviation in gain of the first optical amplifier is a deviation from the target gain caused by a change in power level of the light before being amplified by the first optical amplifier.
  11. 11
    An apparatus as in Claim 8, wherein the gain detecting device is arranged to detect the gain of the first optical amplifier from input and output levels of the first optical amplifier, and to detect the deviation in gain from the detected gain.
  12. 12
    An apparatus as in Claim 8, wherein the first optical amplifier comprises a doped optical fiber for amplifying the light as the light travels through the doped optical fiber, and the gain detecting device is arranged to detect the gain of the first optical amplifier from amplified spontaneous emission generated in the doped optical fiber, and to detect the deviation in gain from the detected gain.
  13. 13
    An apparatus as in Claim 1, wherein, to compensate for the detected deviation in gain of the first optical amplifier, the gain adjustor is arranged to increase the gain of the second optical amplifier to compensate for a decrease in gain of the first optical amplifier, and decrease the gain of the second optical amplifier to compensate for an increase in gain of the first optical amplifier.
  14. 14
    An apparatus as in Claim 1, wherein the gain adjustor comprises:logarithmic circuits for detecting a logarithmic value corresponding to the deviation in gain of the first optical amplifier, the logarithmic value being used to adjust the gain of the second optical amplifier.
  15. 15
    A method comprising:a first optical amplification process of amplifying a light with a gain of the first optical amplification process;controlling the gain of the first optical amplification process to be constant at a target gain;a second optical amplification process of receiving the light amplified by the first optical amplification process, and amplifying the received light with a gain of the second optical amplifying process;detecting a deviation in gain of the first optical amplification process from the target gain;and adjusting the gain of the second optical amplification process to compensate for the detected deviation.