IP Library › Granted Patent US 11,476,635
Granted Patent B2
US 11,476,635 · App. 16/640,242 · Granted Oct 18, 2022

Optically amplified repeater system and optical amplifier

Inventors: Takayuki Mizuno (Yokosuka, JP); Akira Isoda (Yokosuka, JP); Kohki Shibahara (Yokosuka, JP); Mitsunori Fukutoku (Yokosuka, JP); Yutaka Miyamoto (Yokosuka, JP)
Assignee: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
H01S3/2308H01S3/06708H01S3/06754H01S3/09415H01S3/094003H01S3/094069H01S3/1608H01S3/2383H01S3/302H04B10/297
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Quick Facts
Patent No.
US 11,476,635
App. No.
16/640,242
Granted
Oct 18, 2022
Kind
B2
Abstract

An optically amplified repeater system includes optical transmission paths, a multi-channel optical amplifier, one or more Raman amplification pumping light sources, and a wavelength multiplexer. The multi-channel optical amplifier includes K simultaneous pumping light sources, N optical amplification media, and one or more optical couplers, and simultaneously amplifies, with the K simultaneous pumping light sources, light intensities of optical signals that pass through the N optical amplification media and propagate through the optical transmission paths. Light intensities of the wavelength band of the optical signals is Raman amplified by the Raman amplification pumping light. A light intensity of the Raman amplification pumping light output from the one or more Raman amplification pumping light sources is determined in accordance with characteristic differences between the optical signals passing through the optical transmission paths.

Claims (47)

1. An optically amplified repeater system comprising:

optical transmission paths that include optical fibers;

a multi-channel optical amplifier comprising K simultaneous pumping light sources, N optical amplification media, and one or more optical couplers that couples light output from the K simultaneous pumping light sources to the N optical amplification media, N being an integer equal to or larger than “1”, K being an integer equal to or larger than “1” and satisfying relation N>K, wherein, with the K simultaneous pumping light sources, the multi-channel optical amplifier simultaneously amplifies light intensities of optical signals that pass through the N optical amplification media and propagate through the optical transmission paths;

one or more Raman amplification pumping light sources that output Raman amplification pumping light having a wavelength different from a wavelength band of the optical signals; and

a wavelength multiplexer that multiplexes the Raman amplification pumping light having a wavelength different from the wavelength band of the optical signals into at least one optical transmission path among the optical transmission paths,

wherein light intensities of the wavelength band of the optical signals is Raman amplified by the Raman amplification pumping light, and

wherein the Raman amplification is applied to (N−1) or less optical transmission paths other than an optical transmission path having the best transmission characteristics among a plurality of optical transmission paths, and

wherein a light intensity of the Raman amplification pumping light output from the one or more Raman amplification pumping light sources is determined in accordance with characteristic differences between the optical signals passing through the optical transmission paths to which the Raman amplification is applied.

2. The optically amplified repeater system according to claim 1 ,

wherein the optical transmission paths comprise a multicore optical fiber having a plurality of cores.

3. The optically amplified repeater system according to claim 2 ,

wherein the wavelength multiplexer multiplexes the Raman amplification pumping light having a wavelength different from the wavelength band of the optical signals into each of the plurality of cores of the multicore optical fiber, and

wherein the multicore optical fiber, the wavelength multiplexer, and N optical paths of the multi-channel optical amplifier are interconnected so as to be optically coupled.

4. The optically amplified repeater system according to claim 3 , further comprising an optical tap that branches the optical signals propagating through the optical transmission paths,

wherein the light intensity of the Raman amplification pumping light output from the one or more Raman amplification pumping light sources is determined in accordance with light intensities of the optical signals branched by the optical tap.

5. The optically amplified repeater system according to claim 1 , wherein the optical transmission paths include N optical fibers, and each of the N optical fibers is equipped with an optical tap that branches the optical signals propagating through the optical transmission paths, and

wherein the light intensity of the Raman amplification pumping light output from the one or more Raman amplification pumping light sources is determined in accordance with light intensities of the optical signals branched by the optical taps.

6. The optically amplified repeater system according to claim 1 , further comprising an amplifier including:

the multi-channel optical amplifier;

the wavelength multiplexer;

the one or more Raman amplification pumping light sources;

at least N input ports connected to the optical transmission paths; and

at least N output ports outputting the optical signals amplified by the multi-channel optical amplifier.

7. The optically amplified repeater system according to claim 1 , further comprising an amplifier including:

the multi-channel optical amplifier;

the wavelength multiplexer;

the one or more Raman amplification pumping light sources;

an input port having at least N cores connected to the optical transmission paths; and

an output port having at least N cores outputting the optical signals amplified by the multi-channel optical amplifier.

8. The optically amplified repeater system according to claim 1 , further comprising at least one of:

an optical amplifier including the multi-channel optical amplifier and the wavelength multiplexer; and

a first amplifier including the multi-channel optical amplifier, the wavelength multiplexer, the one or more Raman amplification pumping light sources, at least N input ports connected to the optical transmission paths, and at least N output ports outputting the optical signals amplified by the multi-channel optical amplifier.

9. An optical amplifier connecting to optical transmission paths that include optical fibers, the optical amplifier comprising:

a multi-channel optical amplifier that simultaneously amplifies light intensities of optical signals propagating through the optical transmission paths;

one or more Raman amplification pumping light sources that output Raman amplification pumping light having a wavelength other than a wavelength band of the optical signals; and

a wavelength multiplexer that multiplexes the Raman amplification pumping light into at least one optical transmission path among the optical transmission paths,

wherein a light intensity of a wavelength band of an optical signal is Raman amplified by the Raman amplification pumping light, the optical signal being propagated through at least one optical transmission path in which the Raman amplification pumping light is multiplexed,

wherein the Raman amplification is applied to (N−1) or less optical transmission paths other than an optical transmission path having the best transmission characteristics among a plurality of optical transmission paths, and

wherein the one or more Raman amplification pumping light sources output the Raman amplification pumping light having light intensity in accordance with characteristic differences between the optical signals passing through the optical transmission paths to which the Raman amplification is applied.

10. An optical amplifier connecting to optical transmission paths that include optical fibers, and which connects to a multi-channel optical amplifier that simultaneously amplifies light intensities of optical signals propagating through the optical transmission paths, the optical amplifier comprising:

one or more Raman amplification pumping light sources that output Raman amplification pumping light having a wavelength other than a wavelength band of the optical signals; and

a wavelength multiplexer that multiplexes the Raman amplification pumping light into at least one optical transmission path among the optical transmission paths,

wherein a light intensity of a wavelength band of an optical signal is Raman amplified by the Raman amplification pumping light, the optical signal being propagated through at least one optical transmission path in which the Raman amplification pumping light is multiplexed,

wherein the Raman amplification is applied to (N−1) or less optical transmission paths other than an optical transmission path having the best transmission characteristics among a plurality of optical transmission paths, and

wherein the one or more Raman amplification pumping light sources output the Raman amplification pumping light having light intensity in accordance with characteristic differences between the optical signals passing through the optical transmission paths to which the Raman amplification is applied.

11. The optically amplified repeater system according to claim 3 , further comprising:

a second amplifier including the multi-channel optical amplifier, the wavelength multiplexer, the one or more Raman amplification pumping light sources, an input port having at least N cores each of which connected to one of the optical transmission paths, and an output port having at least N cores each of which outputting one of the optical signals amplified by the multi-channel optical amplifier.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 19, 2020
From: MIZUNO, TAKAYUKI; ISODA, AKIRA; SHIBAHARA, KOHKI; FUKUTOKU, MITSUNORI; MIYAMOTO, YUTAKA
To: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
Reel/Frame 051971/0149 →
Priority Claims (1)
JP JP2017-162837 · Aug 25, 2017 · national
Continuity (1)
Related Publication 20200381888A1 · Dec 3, 2020
Cited By (1)
US 12,640,814