Method for determining actual values of one or more characteristics of a phase-modulated optical signal

US12323185B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12323185-B2
Application numberUS-202217742005-A
CountryUS
Kind codeB2
Filing dateMay 11, 2022
Priority dateMay 28, 2021
Publication dateJun 3, 2025
Grant dateJun 3, 2025

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Abstract

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Provided is a method for determining actual values of one or more characteristics of a phase-modulated optical signal. The method includes the steps of acquiring the phase-modulated optical signal by a non-linear device; generating an electrical spectrum based on the acquired phase-modulated optical signal; and extracting actual values of one or more characteristics of the phase-modulated optical signal from the electrical spectrum.

First claim

Opening claim text (preview).

The invention claimed is: 1. A method for controlling performance of an optical channel in an optical network, wherein in the optical network pairs of nodes of the network are associated with distinct bands of optical channels used for communication between the pairs of nodes, wherein the method comprises the steps of: (a) determining actual values of one or more characteristics of a phase-modulated optical signal comprising: acquiring the phase-modulated optical signal by a non-linear device, generating an electrical spectrum based on the acquired phase-modulated optical signal, and extracting actual values of one or more characteristics of the phase-modulated optical signal from the electrical spectrum; (b) for each of the one or more characteristics, determining whether the actual value is within a predetermined range for the characteristic; and (c) taking an action if, for one or more of the one or more characteristics, the actual value is outside of the predetermined range for the characteristic, to control performance of the optical channel, wherein: the one or more characteristics of the phase-modulated optical signal include a symbol rate, a roll-off factor and a modulation format; the phase-modulated optical signal is inputted into an optical channel by a third-party terminal, wherein the optical channel is part of an optical fiber network of a communication service provider, wherein the third-party terminal is used by a third party that has paid to use the optical fiber network; the non-linear device is a photodiode; and the action is configured to ensure that the third party using the third-party terminal does not use more resources than what they paid for and to prevent degradation of quality of transmission of neighboring wavelength-division multiplexing channels due to linear and non-linear interference. 2. The method according to claim 1 , wherein the step of generating the electrical spectrum further comprises the steps of: analog spectral slicing of the acquired phase-modulated optical signal to detect sub-bands of the acquired phase-modulated optical signal; digitally stitching the detected sub-bands to generate an optimized signal; and generating the electrical spectrum based on the optimized signal. 3. The method according to claim 1 , wherein a machine learning technique is used to extract the roll-off factor of the phase-modulated optical signal and/or the modulation format of the phase-modulated optical signal from the electrical spectrum. 4. The method according to claim 1 , wherein, for each of the one or more characteristics, a warning is issued if the actual value is slightly outside of the predetermined range for the characteristic, and an allocation of wavelength to channel is blocked if the actual value is greatly outside of the predetermined range for the characteristic. 5. The method according to claim 1 , wherein the step of taking an action if, for one or more of the one or more characteristics, the actual value is outside of the predetermined range for the characteristic comprises dampening a channel bandwidth and/or attenuating a signal power. 6. An apparatus for controlling performance of an optical channel in an optical network, wherein in the optical network pairs of nodes of the network are associated with distinct bands of optical channels used for communication between the pairs of nodes, wherein the apparatus comprises: an apparatus for determining actual values of one or more characteristics of a phase-modulated optical signal comprising a non-linear device that is configured to acquire the phase-modulated optical signal, a generating device that is configured to generate an electrical spectrum based on the acquired phase-modulated optical signal, and a pre-processing device that is configured to extract actual values of one or more characteristics of the phase-modulated optical signal from the electrical spectrum, wherein the apparatus for determining actual values of one or more characteristics of a phase-modulated optical signal is configured to determine actual values of one or more characteristics of a phase-modulated optical signal inputted into an optical channel in the optical network; a determining device that is configured to determine, for each of the one or more characteristics, whether the actual value is within a predetermined range for the characteristic, and an actuator that is configured to take an action if, for one or more of the one or more characteristics, the actual value is outside of the predetermined range for the characteristic, to control performance of the optical channel wherein: the one or more characteristics of the phase-modulated optical signal include a symbol rate, a roll-off factor and a modulation format; the phase-modulated optical signal is inputted into an optical channel by a third-party terminal, wherein the optical channel is part of an optical fiber network of a communication service provider, wherein the third-party terminal is used by a third party that has paid to use the optical fiber network; the non-linear device is a photodiode; and the action is configured to ensure that the third party using the third-party terminal does not use more resources than what they paid for and to prevent degradation of quality of transmission of neighboring wavelength-division multiplexing channels due to linear and non-linear interference. 7. The apparatus according to claim 6 , wherein the apparatus further comprises at least one tunable mixer that is configured to perform slicing and stitching of the acquired phase-modulated optical signal to generate an optimized signal, wherein the generating device is configured to generate the electrical spectrum based on the optimized signal. 8. The apparatus according to claim 6 , wherein the pre-processing device is configured to use a machine learning technique to extract the roll-off factor of the phase-modulated optical signal and/or the modulation format of the phase-modulated optical signal from the electrical spectrum.

Assignees

Inventors

Classifications

  • Wavelength-division multiplex systems · CPC title

  • Operation, administration, maintenance or provisioning [OAMP] of WDM networks, e.g. media access, routing or wavelength allocation · CPC title

  • Performance monitoring; Measurement of transmission parameters · CPC title

  • Network aspects, e.g. central monitoring of transmission parameters · CPC title

  • Phase or frequency modulation · CPC title

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What does patent US12323185B2 cover?
Provided is a method for determining actual values of one or more characteristics of a phase-modulated optical signal. The method includes the steps of acquiring the phase-modulated optical signal by a non-linear device; generating an electrical spectrum based on the acquired phase-modulated optical signal; and extracting actual values of one or more characteristics of the phase-modulated optic…
Who is the assignee on this patent?
Adva Optical Networking Se
What technology area does this patent fall under?
Primary CPC classification H04B10/27. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Jun 03 2025 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).