IP Library Granted Patent US 11,444,689
Granted Patent B2
US 11,444,689 · App. 17/170,220 · Granted Sep 13, 2022

Systems and methods for detecting optical network conditions based on signal loss

Inventor: Jeremy Craig Lyon (Harvest, AL)
Assignee: ADTRAN, Inc.
H04B10/0791H04B10/07955
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Quick Facts
Patent No.
US 11,444,689
App. No.
17/170,220
Granted
Sep 13, 2022
Kind
B2
Abstract

A system for detecting an optical network condition, such as a fiber bend, has an optical line terminal (OLT) that is configured to communicate control information with optical network terminals (ONTs) indicating the transmit power levels and the receive power levels of optical signals, such as optical data signals, that are communicated between the OLT and the ONTs. Based on such information, line losses at different wavelengths are determined and then compared in order to detect an optical network condition, such as a fiber bend. Since the measurements can be performed on optical data signals ordinarily communicated between the OLT and the ONTs, the testing may be performed during data communication. Further, as long as optical communication between the OLT and the ONTs is possible, a fiber bend or other network condition may be detected at any point along the optical path.

Claims (47)

1. A system for detecting optical network conditions based on signal loss, comprising:

at least one optical line terminal (OLT) of an optical network;

a plurality of optical network terminals (ONTs) of the optical network, each of the plurality of ONTs optically coupled to the at least one OLT by a plurality of optical fibers; and

a condition detector configured to:

receive information indicative of communication performance of the optical network;

determine, based on the information, a first value indicative of a measured amount of signal loss for a first optical signal transmitted at a first wavelength through the optical network between the at least one OLT and at least one ONT of the plurality of ONTs;

calculate, based on a distance between the at least one OLT and the at least one ONT, a second value indicative of an expected amount of signal loss between the at least one OLT and the at least one ONT at the first wavelength;

calculate, based on a difference between the first value and the second value, a third value indicative of a signal loss associated with the first optical signal;

determine, based on the information, a fourth value indicative of a measured amount of signal loss for a second optical signal transmitted at a second wavelength through the optical network between the at least one OLT and the at least one ONT;

calculate, based on a distance between the at least one OLT and the at least one ONT, a fifth value indicative of an expected amount of signal loss between the at least one OLT and the at least one ONT at the second wavelength;

calculate, based on a difference between the fourth value and the fifth value, a sixth value indicative of a signal loss associated with the second optical signal;

compare the third value to the sixth value; and

detect a condition in the optical network based on comparison of the third value to the sixth value.

2. The system of claim 1 , wherein the condition is a fiber bend.

3. The system of claim 1 , further comprising a communication network, wherein the condition detector is configured to communicate with the at least one OLT through the communication network and to receive the information from the at least one OLT via the communication network.

4. The system of claim 1 , wherein the condition detector is configured to determine a difference between the third value and the sixth value, and wherein the condition detector is configured to compare the difference to a predefined threshold.

5. The system of claim 1 , wherein the condition detector is configured to determine a location of the condition within the optical network based on the comparison.

6. The system of claim 1 , wherein the condition detector is configured to determine which of the plurality of ONTs are associated with the condition, and wherein the condition detector is configured to determine a location of the condition within the optical network based on the ONTs determined to be associated with the condition.

7. The system of claim 1 , wherein the condition detector is configured to determine at least one optical component in an optical path between the at least one OLT and the at least one ONT and to determine the second value based on the at least one optical component.

8. The system of claim 1 , wherein the plurality of ONTs includes at least a first ONT and a second ONT, wherein the first optical signal is transmitted between the at least one OLT and the first ONT, and wherein the second optical signal is transmitted between the at least one OLT and the second ONT.

9. A system for detecting optical network conditions, comprising:

at least one optical line terminal (OLT) of an optical network;

a plurality of optical network terminals (ONTs) of the optical network, the plurality of ONTs optically coupled to the at least one OLT by a plurality of optical fibers; and

a condition detector configured to:

receive (1) a first value indicative of communication performance for a first optical signal transmitted through the optical network between the OLT and at least one ONT of the plurality of ONTs at a first wavelength, wherein the first value is based on a single measurement of optical attenuation of the first optical signal and (2) a second value indicative of a communication performance of a second optical signal transmitted through the optical network between the OLT and the at least one ONT at a second wavelength, wherein the second value is based on a single measurement of optical attenuation of the second optical signal;

compare the first value and the second value; and

detect a condition in the optical network based on comparison of the first value and the second value.

10. The system of claim 9 , wherein the condition is a fiber bend.

11. A method for detecting optical network conditions based on signal loss, comprising:

receiving, with processing circuitry, information indicative of communication performance of an optical network in communicating between at least one optical line terminal (OLT) of the optical network and a plurality of optical network terminals (ONTs) of the optical network, the plurality of ONTs optically coupled to the at least one OLT by a plurality of optical fibers;

determining, with the processing circuitry based on the information, a first value indicative of a measured amount of signal loss for a first optical signal transmitted at a first wavelength through the optical network between the at least one OLT and at least one ONT of the plurality of ONTs;

calculating, based on a distance between the at least one OLT and the at least one ONT, a second value indicative of an expected amount of signal loss between the at least one OLT and the at least one ONT at the first wavelength;

calculating, based on a difference between the first value and the second value, a first third value indicative of a signal loss associated with the first optical signal;

determining, with the processing circuitry based on the information, a fourth value indicative of a measured amount of signal loss for a second optical signal transmitted at a second wavelength through the optical network between the at least one OLT and the at least one ONT;

calculating, with the processing circuitry based on a distance between the at least one OLT and the at least one ONT, a fifth value indicative of an expected amount of signal loss between the at least one OLT and the at least one ONT at the second wavelength;

calculating, with the processing circuitry based on a difference between the fourth value and the fifth value, a sixth value indicative of a signal loss associated with the second optical signal;

comparing, with the processing circuitry, the third value to the sixth value; and

detecting, with the processing circuitry, a condition in the optical network based on the comparing.

12. The method of claim 11 , wherein the condition is a fiber bend.

13. The method of claim 11 , further comprising receiving, with the processing circuitry, the information from the at least one OLT via a communication network.

14. The method of claim 11 , wherein the comparing comprises determining a difference between the third value and the sixth value, and wherein the method further comprises comparing, with the processing circuitry, the difference to a predefined threshold.

15. The method of claim 11 , further comprising determining, with the processing circuitry, a location of the condition within the optical network based on the comparing.

16. The method of claim 11 , further comprising:

determining, with the processing circuitry, which of the plurality of ONTs are associated with the condition; and

determining, with the processing circuitry, a location of the condition within the optical network based on the ONTs determined to be associated with the condition.

17. The method of claim 11 , further comprising determining,

with the processing circuitry, at least one optical component within an optical path between the at least one OLT and the at least one ONT, wherein the determining the second value is based on the at least one optical component.

Assignments (2)
SECURITY INTEREST Recorded Jul 21, 2026
From: ADTRAN, INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 076028/0412 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 8, 2021
From: LYON, JEREMY CRAIG
To: ADTRAN, INC.
Reel/Frame 055183/0601 →
Continuity (1)
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