IP Library Granted Patent US 10,187,154
Granted Patent B2
US 10,187,154 · App. 15/739,866 · Granted Jan 22, 2019

Activation of an optical network unit in a multi-wavelength passive optical network

Inventors: Stefano Capriata (Turin, IT); Roberto Gaudino (Turin, IT); Valter Ferrero (Turin, IT); Maurizio Valvo (Turin, IT)
Assignees: TELECOM ITALIA S.p.A.; POLITENCNICO DI TORINO
H04B10/272H04B10/2507H04J14/0282
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Quick Facts
Patent No.
US 10,187,154
App. No.
15/739,866
Granted
Jan 22, 2019
Kind
B2
Abstract

It is disclosed a optical transmitter for an optical network unit of a multi-wavelength passive optical network comprising an optical line termination and a number of further optical network units for transmitting upstream signals to said optical line termination on multiple upstream channels. The optical transmitter is configured to generate and transmit an optical activation signal carrying activation information to be transmitted to said optical line termination on an upstream channel, the activation signal having an optical power lower than the optical power of each one of said upstream signals. The optical transmitter comprises an optical source, a first electric source configured to modulate the optical source with a first electric signal carrying the activation information; and a second electric source configured to directly modulate the optical source with a second electric signal so as to produce a frequency chirp on the optical activation signal.

Claims (28)

1. An optical transmitter for an optical network unit of a multi-wavelength passive optical network comprising an optical line termination and a number of further optical network units for transmitting upstream signals to said optical line termination on multiple upstream channels, said optical transmitter being configured to generate and transmit an optical activation signal carrying activation information to be transmitted from said optical network unit to said optical line termination on an upstream channel of said multiple upstream channels, said activation signal having an optical power lower than the optical power of each one of said upstream signals, said optical transmitter comprising an optical source and;

a first electric source configured to modulate said optical source with a first electric signal carrying said activation information; and

a second electric source configured to directly modulate said optical source with a second electric signal so as to produce a frequency chirp on said optical activation signal.

2. The optical transmitter according to claim 1 , wherein said activation signal has a bitrate lower than a bitrate of each one of said upstream signals transmitted by said further optical network units on said multiple upstream channels.

3. The optical transmitter according to claim 1 , wherein said first electric source is configured to directly modulate said optical source.

4. The optical transmitter according to claim 1 , wherein it further comprises an optical attenuator configured to provide at the output of the optical transmitter said activation signal with said optical power lower than the optical power of each one of said upstream signals.

5. The optical transmitter according to claim 1 , wherein it further comprises an optical modulator downstream said optical source and said first electric source is configured to externally modulate said optical source by feeding the first electric signal to the optical modulator.

6. The optical transmitter according to claim 1 , wherein said first electric signal is a sinusoidal signal modulated by said activation information according to a binary phase shift keying modulation scheme.

7. The optical transmitter according to claim 1 , wherein said first electric signal is a sinusoidal signal modulated by said activation information having a carrier frequency equal to 2.5 MHz.

8. The optical transmitter according to claim 1 , wherein said second electric signal is one of a sinusoidal wave signal, a triangular wave signal or a sawtooth wave signal.

9. The optical transmitter according to claim 1 , wherein said second electric signal has a frequency ranging between about 100 Hz and about 10 KHz.

10. An optical network unit for a multi-wavelength passive optical network comprising an optical line termination and a number of further optical network units for transmitting upstream signals to said optical line termination on multiple upstream channels, said optical network unit comprising an optical transmitter configured to generate and transmit an optical activation signal carrying activation information to be transmitted from said optical network unit to said optical line termination on an upstream channel of said multiple upstream channels, said activation signal having an optical power lower than the optical power of each one of said upstream signals, said optical transmitter comprising an optical source and:

a first electric source configured to modulate said optical source with a first electric signal carrying said activation information; and

a second electric source configured to directly modulate said optical source with a second electric signal so as to produce a frequency chirp on said optical activation signal.

11. A multi-wavelength passive optical network comprising:

an optical line termination;

an optical network unit to be activated on an upstream channel of said multi-wavelength passive optical network; and

a number of further optical network units configured to transmit upstream signals to said optical line termination on multiple upstream channels including said upstream channel,

wherein said optical network unit comprises an optical transmitter configured to generate and transmit an optical activation signal carrying activation information to be transmitted from said optical network unit to said optical line termination on an upstream channel of said multiple upstream channels, said activation signal having an optical power lower than the optical power of each one of said upstream signals, said optical transmitter comprising an optical source and;

a first electric source configured to modulate said optical source with a first electric signal carrying said activation information; and

a second electric source configured to directly modulate said optical source with a second electric signal so as to produce a frequency chirp on said optical activation signal.

12. A method for activating an optical network unit on an upstream channel of a multi-wavelength passive optical network, said multi-wavelength passive optical network comprising an optical line termination and a number of further optical network units for transmitting upstream signals to said optical line termination on multiple upstream channels including said upstream channel, said method comprising generating an optical activation signal carrying activation information to be transmitted from said optical network unit to said optical line termination on an upstream channel of said multiple upstream channels, said activation signal having an optical power lower than the optical power of each one of said upstream signals, said generating an optical activation signal comprising:

a) modulating an optical source with a first electric signal carrying said activation information;

b) directly modulating said optical source with a second electric signal so as to produce a frequency chirp on said optical activation signal; and

c) transmitting said optical activation signal to said optical line termination.

13. The method according to claim 12 , wherein at step a) said modulating comprises directly modulating said optical source or externally modulating said optical source by feeding the first electric signal to an optical modulator downstream said optical source.

14. The method according to claim 12 , further comprising detecting said activation signal at said optical line termination if said activation signal is transmitted on said upstream channel and sending a feedback signal from said optical line termination to said optical network unit.

15. The method according to claim 14 , wherein said step c) comprises transmitting said activation signal in a substantially continuous way until a predefined time has expired or until said feedback signal is received at said optical network unit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 26, 2017
From: CAPRIATA, STEFANO; GAUDINO, ROBERTO; FERRERO, VALTER; VALVO, MAURIZIO
To: TELECOM ITALIA S.P.A.; POLITECNICO DI TORINO
Reel/Frame 044485/0021 →
Continuity (1)
Related Publication 20180183525A1 · Jun 28, 2018