EP0805571A2

Controller which controls a variable optical attentuator to control the power level of a wavelength-multiplexed optical signal when the number of channels are varied

Abstract

An optical amplifying apparatus which includes an optical amplifier, an optical attenuator and a controller. The optical amplifier amplifies a light signal having a variable number of channels. The optical attenuator passes the amplified light signal and has a variable light transmissivity. Prior to varying the number of channels in the light signal, the controller varies the light transmissivity of the optical attenuator so that a power level of the amplified light signal is maintained at an approximately constant level that depends on the number of channels in the light signal prior to the varying the number of channels. While the number of channels in the light signal is being varied, the controller maintains the light transmissivity of the optical attenuator to be constant. Subsequent to varying the number of channels in the light signal, the controller varies the light transmissivity of the optical attenuator so that a power level of the amplified light signal is maintained at an approximately constant level that depends on the number of channels in the light signal subsequent to the varying the number of channels.

EP0805571A2, drawing sheet 1
Sheet 1 of 32

Term

Term ended

Projected expiry passed 30 April 2017, 9.4 years ago.

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58 claims: 8 independent, 50 dependent

  1. 1
    An apparatus comprising:an optical amplifier which amplifies a light signal having a variable number of channels;and a controller which controls a power level of the amplified light signal in response to variations in the number of channels in the light signal.
  2. 4
    An apparatus comprising:an optical amplifier which amplifies a light signal having a variable number of channels;and a controller which, prior to, and subsequent to, varying the number of channels in the light signal, passes the amplified light signal with a varying light transmissivity so that a power level of the amplified light signal is maintained at an approximately constant level in accordance with the number of channels in the light signal, and, while the number of channels in the light signal is being varied, passes the amplified light signal with a constant light transmissivity.
  3. 29
    An apparatus comprising:an optical amplifier which amplifies a light signal having a variable number of channels;a controller which controls the amplified light signal in response to variations in the number of channels in the light signal;a demultiplexer which demultiplexes the controlled, amplified light signal into individual signals;and an automatic level control unit which controls the power level of a respective individual signal so that the power level of the individual signal is maintained to be approximately constant.
  4. 30
    An apparatus for amplifying a light signal, comprising:an automatic level control unit which maintains a power level of the light signal to be approximately constant and produces a corresponding output signal;and an optical fiber amplifier which amplifies the output signal of the automatic level control unit with a constant gain.
  5. 45
    An apparatus comprising:an optical amplifier which amplifies a light signal having a variable number of channels;and a controller which, prior to, and subsequent to, varying the number of channels in the light signal, maintains a power level of the amplified light signal at an approximately constant level in accordance with the number of channels in the light signal, and, while the number of channels in the light signal is being varied, amplifies the amplified light signal with an approximately constant gain.
  6. 56
    An apparatus comprising:an optical amplifier which amplifies a light signal having a variable number of channels;an optical attenuator which passes the amplified light signal and has a variable light transmissivity;and a controller which, prior to varying the number of channels in the light signal, varies the light transmissivity of the optical attenuator so that a power level of the amplified light signal is maintained at an approximately constant level that depends on the number of channels in the light signal prior to the varying the number of channels, while the number of channels in the light signal is being varied, maintains the light transmissivity of the optical attenuator to be constant, and subsequent to varying the number of channels in the light signal, varies the light transmissivity of the optical attenuator so that a power level of the amplified light signal is maintained at an approximately constant level that depends on the number of channels in the light signal subsequent to the varying the number of channels.
  7. 57
    A method for controlling a light signal having a variable number of channels and amplified by an optical amplifier, the method comprising the steps of:prior to, and subsequent to, varying the number of channels in the light signal, passing the amplified light signal with a varying light transmissivity so that a power level of the amplified light signal is maintained at an approximately constant level in accordance with the number of channels in the light signal, and, while the number of channels in the light signal is being varied, passing the amplified light signal with a constant light transmissivity.
  8. 58
    A method for controlling a light signal having a variable number of channels and amplified by an optical amplifier, the method comprising the steps of:prior to, and subsequent to, varying the number of channels in the light signal, maintaining a power level of the amplified light signal at an approximately constant level in accordance with the number of channels in the light signal, and, while the number of channels in the light signal is being varied, amplifying the amplified light signal with an approximately constant gain.