IP Library Granted Patent US 10,243,687
Granted Patent B2
US 10,243,687 · App. 15/354,811 · Granted Mar 26, 2019

Optical network unit wavelength tuning

Inventors: Xiangjun Zhao (Fremont, CA); Cedric Fung Lam (San Carlos, CA); Shuang Yin (Mountain View, CA); Changhong Joy Jiang (Dublin, CA); Ke Dong (San Jose, CA)
Assignee: Google LLC
H04J14/0295H04J14/0246H04J14/0249H04Q11/0067H04J2014/0253H04Q2011/0081H04Q2011/0083
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Quick Facts
Patent No.
US 10,243,687
App. No.
15/354,811
Filed
Nov 17, 2016
Granted
Mar 26, 2019
Kind
B2
Art Unit
2637
USPC
398/7
Abstract

A method of establishing communication between an optical line terminal and an optical network unit within an optical access network includes receiving a signal indication from an optical transceiver of an optical line terminal. The signal indication includes: (i) a loss-of-signal indication indicating non-receipt of an upstream optical signal from the optical network unit; or (ii) a signal-received indication indicating receipt of the upstream optical signal from the optical network unit. The method includes determining whether the signal indication includes the loss-of-signal indication. When the signal indication includes the loss-of-signal indication, the method includes instructing the optical transceiver to cease signal transmission from the optical transceiver to the optical network unit. Moreover, when the signal indication includes the signal-received indication, the method includes instructing the optical transceiver to transmit a downstream optical signal from the optical transceiver to the optical network unit.

Claims (44)

1. A method comprising:

receiving, at data processing hardware, a signal indication from an optical transceiver of an optical line terminal, the signal indication comprising:

a loss-of-signal indication indicating non-receipt of an upstream optical signal having an upstream wavelength from an optical network unit; or

a signal-received indication indicating receipt of the upstream optical signal having the upstream wavelength from the optical network unit;

determining, by the data processing hardware, whether the signal indication comprises the loss-of-signal indication;

when the signal indication comprises the loss-of-signal indication, instructing, by the data processing hardware, the optical transceiver to cease signal transmission from the optical transceiver to the optical network unit; and

when the signal indication comprises the signal-received indication, instructing, by the data processing hardware, the optical transceiver to transmit a downstream optical signal from the optical transceiver to the optical network unit,

wherein the optical network unit is configured to recursively transmit the upstream optical signal at different wavelengths until receipt of the downstream optical signal.

2. The method of claim 1 , wherein the optical network unit is configured to recursively transmit the upstream optical signal at sequentially different wavelengths within a free spectral range.

3. The method of claim 1 , wherein the optical network unit is configured to delay transmission of a subsequent upstream optical signal after a prior upstream optical signal by a threshold period of time.

4. The method of claim 1 , wherein the upstream optical signal and the downstream optical signal have different wavelengths.

5. An optical line terminal comprising:

an optical transceiver;

data processing hardware in communication with the optical transceiver; and

memory hardware in communication with the data processing hardware, the memory hardware storing instructions that when executed on the data processing hardware cause the data processing hardware to perform operations comprising:

receiving a signal indication from the optical transceiver, the signal indication comprising:

a loss-of-signal indication indicating non-receipt of an upstream optical signal having an upstream wavelength from an optical network unit; or

a signal-received indication indicating receipt of the upstream optical signal having the upstream wavelength from the optical network unit;

determining whether the signal indication comprises the loss-of-signal indication;

when the signal indication comprises the loss-of-signal indication, instructing the optical transceiver to cease signal transmission from the optical transceiver to the optical network unit; and

when the signal indication comprises the signal-received indication, instructing the optical transceiver to transmit a downstream optical signal from the optical transceiver to the optical network unit,

wherein the optical network unit is configured to recursively transmit the upstream optical signal at different wavelengths until receipt of the downstream optical signal.

6. The optical line terminal of claim 5 , wherein the optical network unit is configured to delay transmission of a subsequent upstream optical signal after a prior upstream optical signal by a threshold period of time.

7. The optical line terminal of claim 5 , wherein the optical network unit is configured to recursively transmit the upstream optical signal at sequentially different wavelengths within a free spectral range.

8. The optical line terminal of claim 5 , wherein the upstream optical signal and the downstream optical signal have different wavelengths.

9. A method comprising:

receiving, at data processing hardware, a signal indication from an optical transceiver of an optical line terminal, the signal indication comprising:

a loss-of-signal indication indicating non-receipt of an upstream optical signal having an upstream wavelength from an optical network unit; or

a signal-received indication indicating receipt of the upstream optical signal having the upstream wavelength from the optical network unit;

determining, by the data processing hardware, whether the signal indication comprises the loss-of-signal indication;

when the signal indication comprises the loss-of-signal indication, instructing, by the data processing hardware, enablement and disablement of the optical transceiver to transmit a downstream optical signal to the optical network unit at a threshold bit rate, resulting in a modulated downstream optical signal comprising encoded channel information; and

when the signal indication comprises the signal-received indication, instructing, by the data processing hardware, the optical transceiver to continuously transmit the downstream optical signal from the transceiver to the optical network unit according to the encoded channel information.

10. The method of claim 9 , wherein the encoded channel information comprises an x-bit long delimiter segment and a y-bit long channel segment.

11. An optical line terminal comprising:

an optical transceiver;

data processing hardware in communication with the optical transceiver; and

memory hardware in communication with the data processing hardware, the memory hardware storing instructions that when executed on the data processing hardware cause the data processing hardware to perform operations comprising:

receiving a signal indication from the optical transceiver, the signal indication comprising:

a loss-of-signal indication indicating non-receipt of an upstream optical signal having an upstream wavelength from an optical network unit; or

a signal-received indication indicating receipt of the upstream optical signal having the upstream wavelength from the optical network unit;

determining whether the signal indication comprises the loss-of-signal indication;

when the signal indication comprises the loss-of-signal indication, instructing, by the data processing hardware, enablement and disablement of the optical transceiver to transmit a downstream optical signal to the optical network unit at a threshold bit rate, resulting in a modulated downstream optical signal comprising encoded channel information; and

wherein the operations further comprise, when the signal indication comprises the signal-received indication, instructing the optical transceiver to continuously transmit the downstream optical signal from the transceiver to the optical network unit according to the encoded channel information.

12. The optical line terminal of claim 11 , wherein the encoded channel information comprises an x-bit long delimiter segment and a y-bit long channel segment.

Assignments (2)
CHANGE OF NAME Recorded Oct 20, 2017
From: GOOGLE INC.
To: GOOGLE LLC
Reel/Frame 044567/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2016
From: ZHAO, XIANGJUN; LAM, CEDRIC FUNG; YIN, SHUANG; JIANG, CHANGHONG JOY; DONG, KE
To: GOOGLE INC.
Reel/Frame 040365/0439 →
Continuity (1)
Related Publication 20180139006A1 · May 17, 2018
Cited By (1)
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