IP Library Granted Patent US 9,252,840
Granted Patent B2
US 9,252,840 · App. 14/103,211 · Granted Feb 2, 2016

Optical signal processing apparatus, transmission apparatus, and optical signal processing method

Inventor: Shigeki Watanabe (Kawasaki, JP)
Assignee: FUJITSU LIMITED
H04B3/32H04B10/506H04B10/5057H04J14/02
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Quick Facts
Patent No.
US 9,252,840
App. No.
14/103,211
Granted
Feb 2, 2016
Kind
B2
Abstract

An optical signal processing apparatus includes: an optical frequency comb generation unit configured to generate an optical frequency comb; an extraction unit configured to extract a plurality of optical components having a certain frequency interval between the optical components from the optical frequency comb; and an optical carrier generation unit configured to multiplex the plurality of optical components with reference light to thereby generate an optical carrier having a center frequency away from the center frequency of the reference light by an integer multiple of the frequency interval.

Claims (45)

1. An optical signal processing apparatus, comprising:

an optical frequency comb generation unit configured to generate an optical frequency comb;

an extraction unit configured to extract a plurality of optical components having a certain frequency interval between the optical components from the optical frequency comb;

an optical carrier generation unit configured to multiplex the plurality of optical components with reference light to thereby generate an optical carrier having a center frequency away from the center frequency of the reference light by an integer multiple of the frequency interval; and

a carrier-increasing frequency comb generation unit configured to generate a frequency comb based on the optical carrier generated by the optical carrier generation unit, wherein

the optical carrier generation unit includes a non-linear optical medium,

the optical carrier generation unit generates a plurality of modulated components by multiplexing the plurality of optical components and the reference light and the generated modulated components are input into the non-linear optical medium, and

the optical carrier generation unit extracts a predetermined modulated component from the plurality of modulated components to thereby generate the optical carrier.

2. The optical signal processing apparatus according to claim 1 , wherein the non-linear optical medium is an optical fiber.

3. The optical signal processing apparatus according to claim 1 , further comprising:

a state detection unit configured to detect at least one state of the plurality of modulated components generated by the optical carrier generation unit; and

a state control unit configured to control the state of the plurality of optical components to be input to the optical carrier generation unit based on the at least one state of the plurality of modulated components detected by the state detection unit.

4. The optical signal processing apparatus according to claim 1 , wherein the optical frequency comb generation unit generates the optical frequency comb by modulating light based on a drive signal that oscillates at a predetermined reference frequency.

5. The optical signal processing apparatus according to claim 1 , wherein the extraction unit is an optical frequency filter.

6. A transmission apparatus, comprising:

an optical signal processing apparatus includes:

an optical frequency comb generation unit configured to generate an optical frequency comb,

an extraction unit configured to extract a plurality of optical components having a certain frequency interval between the optical components from the optical frequency comb,

an optical carrier generation unit configured to multiplex the plurality of optical components with reference light to thereby generate an optical carrier having a center frequency away from the center frequency of the reference light by an integer multiple of the frequency interval, and

a carrier-increasing frequency comb generation unit configured to generate a frequency comb based on the optical carrier generated by the optical carrier generation unit;

a plurality of modulators configured to respectively modulate a plurality of optical carriers respectively generated by the plurality of optical signal processing apparatuses with a plurality of data signals to generate a plurality of optical signals; and

a multiplexer configured to multiplex the plurality of optical signals, wherein

the optical carrier generation unit includes a non-linear optical medium,

the optical carrier generation unit generates a plurality of modulated components by multiplexing the plurality of optical components and the reference light and the generated modulated components are input into the non-linear optical medium, and

the optical carrier generation unit extracts a predetermined modulated component from the plurality of modulated components to thereby generate the optical carrier.

7. The transmission apparatus according to claim 6 , wherein the plurality of optical signal processing apparatuses each generate an optical carrier of a frequency that is used on an unused channel among a plurality of channels respectively corresponding to the plurality of optical signals.

8. The optical signal processing apparatus according to claim 6 , further comprising:

a state detection unit configured to detect at least one state of the plurality of modulated components generated by the optical carrier generation unit; and

a state control unit configured to control the state of the plurality of optical components to be input to the optical carrier generation unit based on the at least one state of the plurality of modulated components detected by the state detection unit.

9. The optical signal processing apparatus according to claim 6 , wherein the optical frequency comb generation unit generates the optical frequency comb by modulating light based on a drive signal that oscillates at a predetermined reference frequency.

10. An optical signal processing method, comprising:

generating an optical frequency comb;

extracting a plurality of optical components having a certain frequency interval between the optical components from the optical frequency comb;

multiplexing the plurality of optical components with reference light to thereby generate an optical carrier having a center frequency away from the center frequency of the reference light by an integer multiple of the frequency interval;

generating a carrier-increasing frequency comb based on the generated optical carrier;

generating a plurality of modulated components by multiplexing the plurality of optical components and the reference light and inputting the generated modulated components into a non-linear optical medium; and

extracting a predetermined modulated component from the plurality of modulated components to thereby generate the optical carrier.

11. The optical signal processing method according to claim 10 , wherein the optical frequency comb is generated by modulating light based on a drive signal that oscillates at a predetermined reference frequency.

12. The optical signal processing apparatus according to claim 1 , wherein the extraction unit comprises an optical frequency filter configured to extract the plurality of optical components having a certain frequency interval nω r (n=1, 2, 3, . . . ) from the optical frequency comb, thereby producing a beat light having a difference frequency n times the frequency interval ω r of the optical frequency comb.

13. The optical signal processing apparatus according to claim 12 , wherein the optical frequency filter is a tunable frequency filter.

14. An optical signal processing apparatus, comprising:

an optical frequency comb generation unit configured to generate an optical frequency comb;

an extraction unit configured to extract a plurality of optical components having a certain frequency interval between the optical components from the optical frequency comb;

an optical carrier generation unit configured to generate, by non-linear optical effect in a non-linear optical medium, an optical carrier by multplexing the plurality of optical components and the reference light, the optical carrier having a center frequency away from the center frequency of the reference light by an integer multiple of the frequency interval; and

a carrier-increasing frequency comb generation unit configured to generate a frequency comb based on the optical carrier generated by the optical carrier generation unit.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 13, 2025
From: FUJITSU LIMITED
To: 1FINITY INC.
Reel/Frame 072423/0070 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2013
From: WATANABE, SHIGEKI
To: FUJITSU LIMITED
Reel/Frame 032065/0300 →
Priority Claims (1)
JP 2013-028400 · Feb 15, 2013 · national
Continuity (1)
Related Publication 20140233957A1 · Aug 21, 2014