Claims
- 1. An optical transmission system comprising:
- an optical fiber transmission line;
- a plurality of optical repeaters arranged along the transmission line; and
- a plurality of gain equalizers, each gain equalizer being arranged along the transmission line after an integer number of optical repeaters, each gain equalizer equalizing the gain of upstream optical repeaters, wherein each optical repeater includes
- a gain equalizer, and
- a connection mechanism having a first state and a second state so that
- when the connection mechanism is in the first state, the gain equalizer of the optical repeater equalizes the gain of upstream optical repeaters, and when the connection mechanism is in the second state, the gain equalizer of the optical repeater does not equalize the gain of upstream optical repeaters, the connection mechanism of each optical repeater being in either the first state or the second state to provide the plurality of gain equalizers arranged along the transmission line.
- 2. An optical transmission system comprising:
- an optical fiber transmission line;
- a plurality of optical repeaters arranged along the transmission line; and
- a plurality of gain equalizers, each gain equalizer being arranged along the transmission line after an integer number of optical repeaters, each gain equalizer equalizing the gain of upstream optical repeaters, wherein each optical repeater comprises
- an optical amplifier which amplifies a light signal travelling along the transmission line and through the optical repeater,
- a gain equalizer, and
- a connection mechanism having a first state and a second state so that
- when the connection mechanism is in the first state, the gain equalizer of the optical repeater equalizes the gain of upstream optical repeaters, and
- when the connection mechanism is in the second state, the gain equalizer of the optical repeater does not equalize the gain of upstream optical repeaters,
- the connection mechanism of each optical repeater being in either the first state or the second state to provide the plurality of gain equalizers arranged along the transmission line.
- 3. An optical transmission system as in claim 2, wherein, in each optical repeater,
- when the connection mechanism is in the first state, the gain equalizer of the optical repeater is optically connected to the transmission line so that the light signal travelling along the transmission line and through the optical repeater also travels through the gain equalizer, and
- when the connection mechanism is in the second state, the gain equalizer of the optical repeater is not optically connected to the transmission line.
- 4. An optical repeater, comprising:
- an optical amplifier which amplifies a light signal;
- a gain equalizer; and
- a connection mechanism having a first state and a second state so that
- when the connection mechanism is in the first state, the gain equalizer of the optical repeater performs an equalization process on the light signal, and
- when the connection mechanism is in the second state, the gain equalizer of the optical repeater does not perform an equalization process on the light signal.
- 5. An optical repeater as in claim 4, wherein,
- when the connection mechanism is in the first state, the gain equalizer is optically connected to optical amplifier, and
- when the connection mechanism is in the second state, the gain equalizer is not optically connected to the optical amplifier.
- 6. An optical repeater as in claim 4, further comprising:
- a first housing which houses the optical amplifier and the gain equalizer of the optical repeater; and
- a second housing which houses the connection mechanism, the first and second housings being air-tight.
- 7. An optical transmission system comprising:
- an optical fiber transmission line;
- a plurality of optical repeaters arranged along the transmission line, each optical repeater including
- a gain equalizer, and
- a connection mechanism having a first state and a second state so that
- when the connection mechanism is in the first state, the gain equalizer of the optical repeater equalizes the gain of upstream optical repeaters, and
- when the connection mechanism is in the second state, the gain equalizer of the optical repeater does not equalize the gain of upstream optical repeaters, the connection mechanism of each optical repeater being in either the first state or the second state to provide a plurality of gain equalizers arranged along the transmission line, each gain equalizer being arranged along the transmission line after an integer number of optical repeaters.
- 8. An optical transmission system comprising:
- an optical fiber transmission line;
- a plurality of optical repeaters arranged along the transmission line, each optical repeater including
- an optical amplifier which amplifies a light signal travelling along the transmission line and through the optical repeater,
- a gain equalizer, and
- a connection mechanism having a first state and a second state so that
- when the connection mechanism is in the first state, the gain equalizer of the optical repeater equalizes the gain of upstream optical repeaters, and
- when the connection mechanism is in the second state, the gain equalizer of the optical repeater does not equalize the gain of upstream optical repeaters, the connection mechanism of each optical repeater being in either the first state or the second state to provide a plurality of gain equalizers arranged along the transmission line, each gain equalizer being arranged along the transmission line after an integer number of optical repeaters.
Priority Claims (2)
Number |
Date |
Country |
Kind |
8-278278 |
Oct 1996 |
JPX |
|
9-066916 |
Mar 1997 |
JPX |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is based on, and claims priority to, Japanese application numbers 08-278278 and 09-066916, filed Oct. 21, 1996, and Mar. 19, 1997, respectively, in Japan, and which are incorporated herein by reference.
US Referenced Citations (3)
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Date |
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5225922 |
Chraplyvy et al. |
Jul 1993 |
|
5675429 |
Henmi et al. |
Oct 1997 |
|
5815299 |
Bayart et al. |
Jul 1993 |
|
Non-Patent Literature Citations (1)
Entry |
Toba et al, "A 100-Channel Optical FDM Six-Stage In-Line Amplifier System Employing Tunable Gain Equalizers", IEEE, abstract and p. 249, Feb. 1993. |