WO2015073733A2

Flexible grid twdm-pon architecture and intelligent set-up for twdm-pon

Abstract

An approach to proving a flexible grid architecture for time and wavelength division multiplexed passive optical networks is described. One embodiment includes an optical transmitter array configured to transmit an optical signal, an optical combiner coupled to the optical transmitter array configured to receive unlocked wavelengths from the optical transmitter array and output a single optical signal, and an optical amplifier coupled to the optical combiner configured to boost downstream optical power. In some embodiments, a WDM filter is coupled to the optical amplifier, and a tunable optical network units (ONUs) coupled to the WDM filter configured to transmit and receive the optical signals. In still other embodiments, a cyclic demultiplexer is coupled to the optical splitter and connects to an optical receiver array configured to receive optical signals.

WO2015073733A2, drawing sheet 1
Sheet 1 of 12

Term

No projected expiry on record.

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21 claims: 3 independent, 18 dependent

  1. 1
    CLAIMS:What is claimed is: 1. An apparatus for performing time and wavelength division multiplexing, comprising: an optical transmitter array configured to transmit an optical signal and comprising: a first optical transmitter, and a second optical transmitter;an optical combiner coupled to the optical transmitter array and configured to receive the optical signal from the optical transmitter array and output a multi-wavelength optical signal;and an optical amplifier coupled to the optical combiner and configured to boost downstream optical power, wherein the optical combiner is further configured to receive a first optical signal having a first wavelength and a second optical signal having a second wavelength, different from the first wavelength, and wherein an output of the first optical transmitter and an output of the second optical transmitter comprise intermediate grid wavelength values.
  2. 9
    A method of performing online receiver characterization for a tunable optical network unit (ONU) having matching upstream and downstream channels, the method comprising:tuning an optical receiver of the tunable ONU to a first downstream channel;synchronizing one or more transceivers at an optical line terminal (OLT);opening a timeslot for channel checking of one or more upstream channels;receiving a channel checking message from the OLT comprising a downstream channel ID at the tunable ONU;activating a laser at a pre-set temperature;sending an upstream message from the tunable ONU to the OLT, wherein the upstream message comprises the downstream channel ID and an identifier associated with the tunable ONU;and verifying the downstream and upstream channels at the OLT based on the downstream channel ID and the identifier associated with the tunable ONU.
  3. 16
    A method of performing channel checking and matching for a tunable optical network unit (ONU), the method comprising:receiving a first channel number from an optical line terminal (OLT) at a tunable ONU;tuning a downstream channel of the tunable ONU based on the first channel number;waiting for a channel checking and matching message;determining if the downstream channel and upstream channel of the tunable ONU are a same channel number;responsive to the downstream channel and upstream channel of the tunable ONU being a same channel number, entering a registration status at the tunable ONU;and responsive to the downstream channel and upstream channel of the tunable ONU being of different channel numbers: transferring upstream information from the tunable ONU to the OLT, wherein the upstream information relates to an ONU receiving channel;receiving a second channel number from the OLT at the tunable ONU;tuning the tunable ONU based on the upstream information and/or the second channel number;and entering a registration status at the tunable ONU.