IP Library Granted Patent US 7,796,325
Granted Patent B2
US 7,796,325 · App. 12/003,493 · Granted Sep 14, 2010

Distributed Raman amplifier and WDM optical transmission system

Assignee: Fujitsu Limited
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Quick Facts
Patent No.
US 7,796,325
App. No.
12/003,493
Granted
Sep 14, 2010
Kind
B2
Abstract

In a distributed Raman amplifier according to the present invention, a WDM signal light and a reference light are supplied to one end of an optical transmission path to which a pumping light is supplied; the WDM signal light and the reference light, which are propagated through the optical transmission path, are subjected to the distributed Raman amplification; the powers of the WDM signal light and the reference light, which are output from the other end of the optical transmission path, are monitored; and pumping light sources are controlled based on the monitor result. A wavelength of the reference light is set within a gain band of the distributed Raman amplification but longer or shorter than a wavelength of the WDM signal light, and also, set to be in a wavelength region in which a fluctuation amount of a Raman gain in the wavelength of the reference light becomes equal to or smaller than ⅕ of a fluctuation amount of a Raman gain in the wavelength band of the WDM signal light. As a result, it is possible to realize a low-cost distributed Raman amplifier of a simple configuration, capable of realizing an automatic gain control with high precision and also capable of compensating for gain wavelength characteristics using a fixed gain equalizer.

Claims (23)

1. A distributed Raman amplifier comprising:

a pumping light generating section that generates a pumping light for distributed Raman amplifying a WDM signal light propagated through an optical transmission path;

a pumping light supply section that supplies the pumping light output from said pumping light generating section in a direction opposite to a propagation direction of the WDM signal light; and

a gain equalizer which receives the WDM signal light propagated through said optical transmission path to be subjected to the distributed Raman amplification, and has fixed transmission wavelength characteristics capable of flattening gain wavelength characteristics of the distributed Raman amplification,

said distributed Raman amplifier further comprising;

a reference light source which generates a reference light having a wavelength set within a gain band of the distributed Raman amplification but longer or shorter than a wavelength of the WDM signal light;

a multiplexer which multiplexes the reference light output from said reference light source with the WDM signal light to supply the multiplexed light to one end of said optical transmission path;

a monitor section that monitors the powers of the WDM light and the reference light, which are output from the other end of said optical transmission path; and

a control section that obtains a Raman gain in the WDM signal light and a Raman gain in the reference light based on the monitor result in said monitor section, to control said pumping light generating section so that a difference between the Raman gains is maintained at constant,

wherein the wavelength of the reference light is set in a wavelength region in which, when an average gain of the distributed Raman amplification is changed, a fluctuation amount of the Raman gain in the wavelength of the reference light becomes equal to or lower than ⅕ of a fluctuation amount of the Raman gain in the wavelength band of the WDM signal light.

2. A distributed Raman amplifier according to claim 1 ,

wherein the wavelength of the reference light is set on the longer wavelength side of the WDM signal light.

3. A distributed Raman amplifier according to claim 1 ,

wherein said pumping light generating section includes a plurality of pumping light sources generating a plurality of pumping lights of different wavelengths, and

said pumping light supply section includes: a first multiplexer which multiplexes the respective pumping lights output from said plurality of pumping light sources; and a second multiplexer which supplies a pumping light obtained by multiplexing the respective pumping lights by said first multiplexer to the other end of said optical transmission path.

4. A distributed Raman amplifier according to claim 1 ,

wherein the reference light is modulated.

5. A distributed Raman amplifier according to claim 1 , further comprising;

transmission pass loss detecting means for detecting a loss in said optical transmission path using the reference light.

6. A distributed Raman amplifier according to claim 1 , further comprising;

APR control means for detecting using the reference light whether or not an abnormality occurs in said optical transmission path, and controlling the pumping light power to a predetermined level or less when the abnormality occurs.

7. A WDM optical transmission system for transmitting a WDM signal light generated in an optical transmission apparatus to an optical transmission path to repeatedly transmit the WDM signal light up to an optical reception apparatus via a plurality of optical repeaters arranged on said optical transmission path,

wherein the distributed Raman amplifier recited in claim 1 is arranged in each repeating section corresponding to each of said plurality of optical repeaters.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 13, 2025
From: FUJITSU LIMITED
To: 1FINITY INC.
Reel/Frame 072434/0582 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 26, 2007
From: SUGAYA, YASUSHI
To: FUJITSU LIMITED
Reel/Frame 020338/0475 →
Priority Claims (1)
JP 2006-352539 · Dec 27, 2006 · national
Continuity (1)
Related Publication 20080158658A1 · Jul 3, 2008