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US Patent 10404400 Optical transport system employing direct-detection self-coherent receivers and compatible transmitters

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Is a
Patent
Patent
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Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
0
Patent Number
104044000
Patent Inventor Names
Chandrasekhar Sethumadhavan0
Peter J. Winzer0
Xi Chen0
Date of Patent
September 3, 2019
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Patent Application Number
155815780
Date Filed
April 28, 2017
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Patent Citations Received
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US Patent 12119880 Rapid polarization tracking in an optical channel
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US Patent 10735128 Optical phase sensitivity enhancement for reduced power
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US Patent 11621795 Polarization-diversity optical power supply
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US Patent 11650340 Detection of seismic disturbances using optical fibers
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US Patent 11309959 Direct-detection optical receiver capable of signal-to-signal beat interference cancellation
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US Patent 11405114 Automatic power control for an optical receiver
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US Patent 12066653 Communication systems having optical power supplies
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Patent Primary Examiner
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Ted M Wang
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Patent abstract

An optical WDM system configured to use direct detection of communication signals that is compatible with electronic CD compensation on a per-channel basis. In an example embodiment, to enable full (e.g., amplitude and phase) electric-field reconstruction at the receiver, the optical WDM system uses a carrier-frequency plan according to which the carrier-frequency comb used at one end of the WDM link and the carrier-frequency comb used at the other end of the WDM link are offset with respect to one another by one half of the bandwidth of an individual WDM component transmitted therethrough. This frequency offset places each local carrier frequency at a roll-off edge of the corresponding incoming data-modulated signal. As a result, the corresponding combined optical signal beneficially lends itself to direct detection that can be followed by full electric-field reconstruction using a known self-coherent Kramers-Kronig method and then by conventional electronic CD compensation.

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