EP0902565A2

Optical communication system with optical amplification

Abstract

The invention relates to an optical communication system comprising a terminal station which sends first and second light signals through an optical transmission line, the first light signal having a variable number of channels associated with different wavelengths, and the second light signal indicating initiation of changing the number of channels in the first lights signal; and an optical repeater which receives the first and second light signals, said optical repeater including an optical amplifier which amplifies the first light signal, and a controller which receives the second light signal and, upon receipt of the second light signal, controls the optical amplifier to amplify the first light signal with an approximately constant gain during a process of changing the number of channels. Moreover, the invention relates to an optical communication network, comprising an optical transmission line; terminal stations, each connected to the optical transmission line, for transmitting and receiving, through an optical transmission line, a first light signal having a variable number of channels associated with different wavelengths and a second light signal indicating completion of changing the number of channels; and an optical repeater receiving the first and second light signals, the optical repeater including a controller which receives the second light signal and, upon receipt of the second light signal, finishes preparation of changing the number of channels, and an optical amplifier which is controlled by the controller to amplify the first light signal with an approximately constant gain during the preparation of changing the number of channels.

EP0902565A2, drawing sheet 1
Sheet 1 of 32

Term

Term ended

Projected expiry passed 30 April 2017, 9.4 years ago.

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28 claims: 8 independent, 20 dependent

  1. 1
    An optical communication system comprising:a terminal station which sends first and second light signals through an optical transmission line, the first light signal having a variable number of channels associated with different wavelengths, and the second light signal indicating initiation of changing the number of channels in the first lights signal;and an optical repeater which receives the first and second light signals, the optical repeater including an optical amplifier which amplifies the first light signal, and a controller which receives the second light signal and, upon receipt of the second light signal, controls the optical amplifier to amplify the first light signal with an approximately constant gain during a process of changing the number of channels.
  2. 5
    An optical communication system for transmitting, through an optical transmission line, a first light signal having a variable number of channels associated with different wavelengths, comprising;a terminal station which sends, through the optical transmission line, a second light signal indicating initiation of changing the number of channels in the first light signal;and an optical repeater which receives the first and second light signal, the optical repeater including an optical amplifier which amplifies the first light signal, and a controller which receives the second light signal and, upon receipt of the second light signal, controls the optical amplifier to amplify the first light signal with an approximately constant gain during a process of changing the number of channels and produces the third light signal indicating that the process is ready to be completed, the optical repeater transmitting the first and third light signals.
  3. 7
    An optical communication system comprising:a terminal station which sends first and second light signals through an optical transmission line, the first light signal having a variable number of channels associated with different wavelengths, and the second light signal indicating completion of changing the number of channels in the first light signal;and an optical repeater which receives the first and second light signals, the optical repeater including an optical amplifier which amplifies the first light signal, and a controller which receives the second light signal and, upon receipt of the second light signal, completes a first mode in which the optical amplifier is controlled to amplify the first light signal with an approximately constant gain during a process of changing the number of channels.
  4. 11
    An optical communication system comprising:a terminal station which sends first and second light signals through an optical transmission line, the first light signal having a variable number of channels associated with different wavelengths, and the second light signal indicating initiation of changing the number of channels in the first light signal;and an optical repeater which receives the first and second light signals, the optical repeater including a controller which receives the second light signal and, upon receipt of the second light signal, starts preparation of changing the number of channels, and an optical amplifier which is controlled by the controller to amplify the first light signal with an approximately constant gain during the preparation of changing the number of channels.
  5. 15
    An optical communication system for transmitting, through an optical transmission line, a first light signal having a variable number of channels associated with different wavelengths, comprising:a terminal station which sends, through the optical transmission line, a second light signal indicating initiation of changing the number of channels in the first light signal;and an optical repeater which receives the first and second light signals, the optical repeater including a controller which receives the second light signal and, upon receipt of the second light signal, starts preparation of changing the number of channels and produces a third light signal indicating that the preparation is ready to be completed and an optical amplifier which is controlled by the controller to amplify the first light signal with an approximately constant gain during the preparation of changing the number of channels, the optical repeater transmitting the first and third light signals.
  6. 17
    An optical communication system comprising:a terminal station which sends first a second light signals through an optical transmission line, the first light signal having a variable number of channels associated with different wavelengths, and the second light signal indicating completion of changing the number of channels in the first light signal;and an optical repeater which receives the second light signals and, upon receipt of the second light signal, finishes preparation of changing the number of channels, and a controller which receives the second light signals and, upon receipt of the second light signal, finishes preparation of changing the number of channels, and an optical amplifier which is controlled by the controller to amplify the first light signal with an approximately constant gain during the preparation of changing the number of channels.
  7. 21
    An optical communication network, comprising:an optical transmission line;terminal stations, each connected to the optical transmission line, for transmitting and receiving, through the optical transmission line, a first light signal having a variable number of channels associated with different wavelengths and a second light signal indicating initiation of changing the number of channels in the first light signal;an optical repeater which receives the first and second light signals through the optical transmission line, the optical repeater including a controller which receives the second light signal and, upon receipt of the second light signal, starts preparation of changing the number of channels, and an optical amplifier which is controlled by the controller to amplify the first light signal with an approximately constant gain during the preparation of changing the number of channels.
  8. 25
    An optical communication network, comprising:an optical transmission line;terminal stations, each connected to the optical transmission line, for transmitting and receiving, through an optical transmission line, a first light signal having a variable number of channels associated with different wavelengths and a second light signal indicating completion of changing the number of channels;and an optical repeater receiving the first and second light signals, the optical repeater including a controller which receives the second light signal and, upon receipt of the second light signal, finishes preparation of changing the number of channels, and an optical amplifier which is controlled by the controller to amplify the first light signal with an approximately constant gain during the preparation of changing the number of channels.