IP Library Granted Patent US 11,799,551
Granted Patent B2
US 11,799,551 · App. 17/945,735 · Granted Oct 24, 2023

Optical transmission and reception system, optical transmitter, and optical receiver

Inventor: Tomohiro Naganuma (Kawasaki, JP)
Assignee: Fujitsu Limited
H04B10/25759H04B10/25133
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Quick Facts
Patent No.
US 11,799,551
App. No.
17/945,735
Granted
Oct 24, 2023
Kind
B2
Abstract

An optical transmission and reception system includes an optical transmitter that converts an electrical data signal into an optical signal and transmits the optical signal; and an optical receiver that receives the optical signal input from the optical transmitter via an optical transmission line and converts the optical signal into the data signal. The optical transmitter includes a first compensator that compensates for a loss generated in the optical transmitter based on a first coefficient and a second coefficient, and the optical receiver includes a second compensator that compensates for a loss generated in the optical transmission line based on a third coefficient.

Claims (50)

1. An optical transmission and reception system comprising:

an optical transmitter that converts an electrical data signal into an optical signal and transmits the optical signal; and

an optical receiver that receives the optical signal input from the optical transmitter via an optical transmission line and converts the optical signal into the electrical data signal;

wherein the optical transmitter includes a first compensator that compensates for a loss generated in the optical transmitter based on a first coefficient in which an upward peak of a power of a band is on a higher frequency side in a frequency band of the electrical data signal, and a second coefficient in which the power of the band increases as a frequency becomes lower in a part of the band on a lower frequency side than the peak in the frequency band of the electrical data signal, and

the optical receiver includes a second compensator that compensates for a loss generated in the optical transmission line based on a third coefficient in which the power of the band decreases as the frequency becomes lower in a part of the band on the lower frequency side than the peak.

2. An optical transmission and reception system comprising:

an optical transmitter that converts an electrical data signal into an optical signal and transmits the optical signal; and

an optical receiver that receives the optical signal input from the optical transmitter via an optical transmission line and converts the optical signal into the electrical data signal;

wherein the optical transmitter includes:

a first compensator that compensates for a loss generated in the optical transmitter to the electrical data signal based on a first compensation coefficient; and

a first setter that sets the first compensation coefficient to the first compensator;

wherein the first setter generates the first compensation coefficient based on a first coefficient for amplifying a power of a band on a higher frequency side in the frequency band of the electrical data signal so that the loss generated in the optical transmitter is compensated, and a second coefficient for amplifying the power of the band on a lower frequency side in the frequency band of the electrical data signal so that a signal quality of the electrical data signal is equal to or more than a predetermined value,

wherein the optical receiver includes:

a second compensator that compensates for the loss generated in the optical transmission line to the electrical data signal based on a second compensation coefficient; and

a second setter that sets the second compensation coefficient to the second compensator;

wherein the second setter generates the second compensation coefficient based on a third coefficient for amplifying the electrical data signal and a fourth coefficient for amplifying the electrical data signal based on an amplification characteristic opposite to the second coefficient so that a loss generated in the optical transmission line is compensated.

3. The optical transmission and reception system as claimed in claim 2 , wherein

the first compensator suppresses the power of the electrical data signal to an upper limit value or less of a converter that converts the electrical data signal in a digital form into the electrical data signal in an analog form.

4. The optical transmission and reception system as claimed in claim 2 , wherein

the optical transmitter transmits the second coefficient to the optical receiver, and

the second setter generates the fourth coefficient based on the second coefficient received by the optical receiver.

5. The optical transmission and reception system as claimed in claim 2 , wherein

the optical transmitter transmits the second coefficient to the optical receiver using a first signal having a lower baud rate than a baud rate of the electrical data signal.

6. The optical transmission and reception system as claimed in claim 2 , wherein

the optical transmitter transmits the second coefficient to the optical receiver using a second signal having a lower multi-level degree than a multi-level degree of the electrical data signal.

7. The optical transmission and reception system as claimed in claim 2 , wherein

the optical transmitter transmits the second coefficient to the optical receiver by using a third signal having a modulated transmission frequency.

8. The optical transmission and reception system as claimed in claim 2 , wherein

the first setter determines the first coefficient in accordance with at least one of a baud rate and a modulation scheme of the electrical data signal, and

the second setter determines the third coefficient in accordance with at least one of the baud rate and the modulation scheme of the electrical data signal.

9. The optical transmission and reception system as claimed in claim 2 , wherein

the first setter determines both the first coefficient and the second coefficient according to at least one of a baud rate and a modulation scheme of the electrical data signal, and

the second setter determines both the third coefficient and the fourth coefficient according to at least one of the baud rate and the modulation scheme of the electrical data signal.

10. An optical transmitter that converts an electrical data signal into an optical signal and transmits the optical signal to an optical receiver that receives the optical signal input via an optical transmission line and converts the optical signal into the electrical data signal, the optical transmitter comprising:

a first compensator that compensates for a loss generated in the optical transmitter to the electrical data signal based on a first compensation coefficient; and

a first setter that sets the first compensation coefficient to the first compensator;

wherein the first setter generates the first compensation coefficient by superimposing a first coefficient for amplifying a power of a band on a higher frequency side in the frequency band of the electrical data signal so that the loss generated in the optical transmitter is compensated, and a second coefficient for amplifying the power of the band on a lower frequency side in the frequency band of the electrical data signal so that a signal quality of the electrical data signal is equal to or more than a predetermined value,

wherein the optical receiver includes:

a second compensator that compensates for the loss generated in the optical transmission line to the electrical data signal based on a second compensation coefficient; and

a second setter that sets the second compensation coefficient to the second compensator;

wherein the second setter generates the second compensation coefficient by superimposing a third coefficient for amplifying the electrical data signal and a fourth coefficient for amplifying the electrical data signal based on an amplification characteristic opposite to the second coefficient so that a loss generated in the optical transmission line is compensated.

11. An optical receiver that receives an optical signal input via an optical transmission line from an optical transmitter and converts the optical signal into an electrical data signal, the optical transmitter converting the electrical data signal into the optical signal and transmitting the optical signal, the optical receiver comprising:

wherein the optical transmitter includes:

a first compensator that compensates for a loss generated in the optical transmitter to the electrical data signal based on a first compensation coefficient; and

a first setter that sets the first compensation coefficient to the first compensator;

wherein the first setter generates the first compensation coefficient based on a first coefficient for amplifying a power of a band on a higher frequency side in the frequency band of the electrical data signal so that the loss generated in the optical transmitter is compensated, and a second coefficient for amplifying the power of the band on a lower frequency side in the frequency band of the electrical data signal so that a signal quality of the electrical data signal is equal to or more than a predetermined value,

wherein the optical receiver includes:

a second compensator that compensates for the loss generated in the optical transmission line to the electrical data signal based on a second compensation coefficient; and

a second setter that sets the second compensation coefficient to the second compensator;

wherein the second setter generates the second compensation coefficient based on a third coefficient for amplifying the electrical data signal and a fourth coefficient for amplifying the electrical data signal based on an amplification characteristic opposite to the second coefficient so that a loss generated in the optical transmission line is compensated.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 5, 2026
From: FUJITSU LIMITED
To: 1FINITY INC.
Reel/Frame 074197/0244 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2022
From: NAGANUMA, TOMOHIRO
To: FUJITSU LIMITED
Reel/Frame 061110/0498 →
Priority Claims (1)
JP 2021-207957 · Dec 22, 2021 · national
Continuity (1)
Related Publication 20230198621A1 · Jun 22, 2023