IP Library Granted Patent US 10,193,619
Granted Patent B2
US 10,193,619 · App. 15/762,386 · Granted Jan 29, 2019

Mode division multiplexed passive optical network

Inventors: Filipe Ferreira (Birmingham, GB); Andrew Ellis (Birmingham, GB); Naoise Mac-Suibhne (Birmingham, GB); Christian Sanchez-Costa (Birmingham, GB)
H04B10/0775H04J14/04H04Q11/0067
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Quick Facts
Patent No.
US 10,193,619
App. No.
15/762,386
Granted
Jan 29, 2019
Kind
B2
Abstract

A method of compensating for crosstalk in a mode division multiplexing passive optical network using a technique of transmitter-side crosstalk pre-compensation, performed at the Central Office, in which a downlink reference signal such as a training sequence or pilot signal is retrieved at the transmitter without being influenced by crosstalk effects on its uplink transmission. An uplink reference signal is transmitted in a quasi-single mode transmission along the optical fiber, and a plurality of optical signals input to transmission multiplexer are adapted based on the uplink reference signal to pre-compensate for crosstalk.

Claims (29)

1. A mode division multiplexing passive optical network comprising:

a plurality of input channels, each of the plurality of input channels being arranged to convey an input optical signal in a different one of a plurality of modes;

an optical transfer unit comprising:

a multiplexer having a plurality of input ports and an output port, wherein each of the plurality of input ports is connected to a respective one of the plurality of input channels;

an optical fibre having an uplink end connected to the output port, wherein the optical fibre is arranged to receive from the multiplexer a mode multiplexed signal corresponding to the input optical signals from the plurality of input channels; and

a demultiplexer having an input port and a plurality of output ports, wherein the input port is connected to a downlink end of the optical fibre, and wherein the demultiplexer is arranged to divide the mode multiplexed signal between each of the plurality of output ports; and

a plurality of output channels, each of the plurality of output channels being connected to a respective one of the plurality of output ports and being arranged to convey an output optical signal in a different one of the plurality of modes conveyed by the plurality of input channels, wherein the optical transfer unit is arranged to:

transmit a plurality of downlink reference signals in the mode multiplexed signal, each of the plurality of downlink reference signals being in a different one of the plurality of modes,

receive the plurality of downlink reference signals at the plurality of output ports,

couple the received plurality of downlink reference signals into an uplink reference signal,

transmit the uplink reference signal in a quasi-single mode transmission along the optical fibre, and

receive the uplink reference signal at the uplink end of the optical fibre; and

wherein the passive optical network further comprises a downlink signal pre-compensation module arranged to adapt the optical signals on two or more of the plurality of input channels to pre-compensate for crosstalk in the optical transfer unit,

wherein the downlink signal pre-compensation module is controllable based on the received uplink reference signal.

2. The network of claim 1 , wherein the multiplexer is mode-selective.

3. The network of claim 2 , wherein the downlink reference signals are pilot tones transmitted on degenerate mode pairs in the plurality of modes.

4. The network of claim 2 , wherein the downlink pre-compensation module comprises an electrical butterfly FIR filter on each of the two or more of the plurality of input channels.

5. The network of claim 1 , wherein each downlink reference signal comprises a training sequence transmitted in a downlink training sequence time slot.

6. The network of claim 5 , wherein the training sequence time slot includes a guard band having a duration long enough to encompass a uplink training sequence that comprises the received downlink reference signals in series.

7. The network of claim 1 , wherein the uplink reference signal is transmitted using a non-degenerate mode in the plurality of modes.

8. The network of claim 1 , wherein the optical fibre is a few mode fibre (FMF) capable of supporting propagation in a plurality of degenerate and non-generate modes.

9. A method of compensating for crosstalk in a mode division multiplexing passive optical network, the method comprising:

inputting a plurality of downlink reference signals to a multiplexer, each of the plurality of downlink reference signals being in a different one of a plurality of modes;

transmitting the plurality of downlink reference signals as a mode multiplexed signal along an optical fibre;

receiving the mode multiplexed signal at a demultiplexer;

outputting a plurality of received downlink reference signals from the demultiplexer, each of the received plurality of downlink reference signals being in a different one of a plurality of modes;

coupling the received plurality of downlink reference signals into an uplink reference signal,

transmitting the uplink reference signal in a quasi-single mode transmission along the optical fibre,

adapting a plurality of optical signals input to the multiplexer based on the uplink reference signal to pre-compensate for crosstalk.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 11, 2019
From: FERREIRA, FILIPE; MAC-SUIBHNE, NAOISE; ELLIS, ANDREW; SANCHEZ-COSTA, CHRISTIAN
To: ASTON UNIVERSITY
Reel/Frame 049727/0685 →
Priority Claims (1)
GB 1516759.9 · Sep 22, 2015 · national
Continuity (1)
Related Publication 20180302154A1 · Oct 18, 2018