Realizing coarse wavelength-division multiplexing using standard multimode optical fibers

US2016269124A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016269124-A1
Application numberUS-201514644540-A
CountryUS
Kind codeA1
Filing dateMar 11, 2015
Priority dateMar 11, 2015
Publication dateSep 15, 2016
Grant date

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Abstract

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Tuning parameters of individual wavelength channels transmitted over a multimode optical fiber is provided. Characteristics of the multimode optical fiber used for an optical data link within an optical signal transmission system are retrieved. A wavelength channel grid including each central wavelength in a plurality of central wavelengths that corresponds to each particular wavelength channel in a plurality of wavelength channels used to transmit data via optical signals over the multimode optical fiber is determined. A maximum allowable data rate is calculated for each wavelength channel based on the characteristics of the multimode optical fiber at defined channel wavelengths, optical signal transceiver specifications, and data transmission performance requirements for the optical signal transmission system. Operational parameters are assigned to each wavelength channel based on the calculated maximum allowable data rate for each wavelength channel to achieve the data transmission performance requirements for the optical signal transmission system.

First claim

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1 - 8 . (canceled) 9 . A computer system for tuning parameters of individual wavelength channels transmitted over a multimode optical fiber, the computer system comprising: a bus system; a storage device connected to the bus system, wherein the storage device stores program instructions; and a processor connected to the bus system, wherein the processor executes the program instructions to: retrieve characteristics of the multimode optical fiber used for an optical data link within an optical signal transmission system; determine a wavelength channel grid including each central wavelength in a plurality of central wavelengths that corresponds to each particular wavelength channel in a plurality of wavelength channels used to transmit data via optical signals over the multimode optical fiber; calculate a maximum allowable data rate for each wavelength channel in the plurality of wavelength channels based on the characteristics of the multimode optical fiber at defined channel wavelengths, optical signal transceiver specifications, and data transmission performance requirements for the optical signal transmission system; and assign operational parameters to each wavelength channel in the plurality of wavelength channels based on the calculated maximum allowable data rate for each wavelength channel in the plurality of wavelength channels to achieve the data transmission performance requirements for the optical signal transmission system. 10 . The computer system of claim 9 , wherein the processor further executes the program instructions to: assess data transmission performance during operation of the optical data link. 11 . The computer system of claim 10 , wherein the processor further executes the program instructions to: calculate new operational parameters for one or more wavelength channels in the plurality of wavelength channels to achieve the data transmission performance requirements of the optical signal transmission system in response to determining that the assessed data transmission performance of the optical data link does not meet or exceed the data transmission performance requirements for the optical signal transmission system. 12 . The computer system of claim 9 , wherein the processor further executes the program instructions to: determine a bandwidth versus wavelength profile of the multimode optical fiber that transmits the plurality of wavelength channels; provide an electrical data transmission signal to each wavelength channel in the plurality of wavelength channels, each wavelength channel comprises a laser diode of a specific wavelength and a laser diode driver and each wavelength channel is driven at a data transmission rate corresponding to the bandwidth of the multimode optical fiber at the wavelength of each wavelength channel based on the determined bandwidth versus wavelength profile of the multimode optical fiber; and use a wavelength-division multiplexer to couple an optical data transmission signal from each laser diode corresponding to a particular wavelength channel in the plurality of wavelength channels into the multimode optical fiber to transmit the optical data transmission signal. 13 . The computer system of claim 9 , wherein the processor further executes the program instructions to: reduce an output power of one or more wavelength channels in the plurality of wavelength channels in response to not utilizing all of a bandwidth of the multimode optical fiber. 14 . The computer system of claim 9 , wherein the processor further executes the program instructions to: adjust a data rate of one or more wavelength channels in the plurality of wavelength channels based on assessing data transmission performance of the multimode optical fiber. 15 . The computer system of claim 9 , wherein the processor further executes the program instructions to: disable one or more wavelength channels in the plurality of wavelength channels in response to data transmission performance of the multimode optical fiber exceeding the data transmission performance requirements. 16 . A computer program product for tuning parameters of individual wavelength channels transmitted over a multimode optical fiber, the computer program product comprising a computer readable storage medium having program instructions embodied therewith, the program instructions executable by a processor of a computer to cause the processor to perform a method comprising: retrieving, by the processor, characteristics of the multimode optical fiber used for an optical data link within an optical signal transmission system; determining, by the processor, a wavelength channel grid including each central wavelength in a plurality of central wavelengths that corresponds to each particular wavelength channel in a plurality of wavelength channels used to transmit data via optical signals over the multimode optical fiber; calculating, by the processor, a maximum allowable data rate for each wavelength channel in the plurality of wavelength channels based on the characteristics of the multimode optical fiber at defined channel wavelengths, optical signal transceiver specifications, and data transmission performance requirements for the optical signal transmission system; and assigning, by the processor, operational parameters to each wavelength channel in the plurality of wavelength channels based on the calculated maximum allowable data rate for each wavelength channel in the plurality of wavelength channels to achieve the data transmission performance requirements for the optical signal transmission system. 17 . The computer program product of claim 16 further comprising: assessing, by the processor, data transmission performance during operation of the optical data link. 18 . The computer program product of claim 17 further comprising: responsive to the processor determining that the assessed data transmission performance of the optical data link does not meet or exceed the data transmission performance requirements for the optical signal transmission system, calculating, by the processor, new operational parameters for one or more wavelength channels in the plurality of wavelength channels to achieve the data transmission performance requirements of the optical signal transmission system. 19 . The computer program product of claim 16 further comprising: determining, by the processor, a bandwidth versus wavelength profile of the multimode optical fiber that transmits the plurality of wavelength channels; providing, by the processor, an electrical data transmission signal to each wavelength channel in the plurality of wavelength channels, each wavelength channel comprises a laser diode of a specific wavelength and a laser diode driver and each wavelength channel is driven at a data transmission rate corresponding to the bandwidth of the multimode optical fiber at the wavelength of each wavelength channel based on the determined bandwidth versus wavelength profile of the multimode optical fiber; and using, by the processor, a wavelength-division multiplexer to couple an optical data transmission signal from each laser diode corresponding to a particular wavelength channel in the plurality of wavelength channels into the multimode optical fiber to transmit the optical data transmission signal. 20 . The computer program product of claim 16 further comprising: reducing, by the processor, an output power of one or more wavelength channels in the plurality of wavelength channels in response to not utilizing all of a bandwidth of the multimode optical fiber. 21 . The computer program product of claim 16 further comprisin

Assignees

Inventors

Classifications

  • H04B10/572Primary

    Wavelength control · CPC title

  • Optical design, e.g. procedures, algorithms, optimisation routines · CPC title

  • Multi-mode pumping · CPC title

  • Multimode transmission · CPC title

  • Mode multiplex systems · CPC title

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What does patent US2016269124A1 cover?
Tuning parameters of individual wavelength channels transmitted over a multimode optical fiber is provided. Characteristics of the multimode optical fiber used for an optical data link within an optical signal transmission system are retrieved. A wavelength channel grid including each central wavelength in a plurality of central wavelengths that corresponds to each particular wavelength channel…
Who is the assignee on this patent?
IBM
What technology area does this patent fall under?
Primary CPC classification H04B10/572. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Sep 15 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). 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).