IP Library › Granted Patent US 11,251,897
Granted Patent B2
US 11,251,897 · App. 16/228,214 · Granted Feb 15, 2022

External network to network interface and optical express power controls

Inventors: Omer F. Yilmaz (Palo Alto, CA); Stephane St-Laurent (Roxboro, CA); Steve Sanders (Los Altos, CA); Matthew L. Mitchell (Monte Sereno, CA)
Assignee: Infinera Corporation
H04J14/0221H04B10/03H04B10/038H04B10/0771H04B10/0791H04J3/1652H04J14/0291H04L41/0677H04L41/0816H04L41/12H04L41/0668H04L41/0893H04L43/08
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Quick Facts
Patent No.
US 11,251,897
App. No.
16/228,214
Granted
Feb 15, 2022
Kind
B2
Abstract

Methods, systems, and optical power controllers are disclosed. Various problems caused by the use of a single L0 power controller in the prior art are addressed by using first and second L0 power controllers with the first L0 power controller managing first optical components with the optical network, and the second L0 power controller managing second optical components within the optical network.

Claims (15)

1. An apparatus, comprising

a reconfigurable optical network having a path for providing L0 optical communication services from a first terminal optics to a second terminal optics via a plurality of first optical components, an external network to network interface, and a plurality of second optical components, the external network to network interface being an optical communication link connecting at least one of the first optical components to at least one of the second optical components, the first terminal optics, the second terminal optics, the first optical components, the second optical components, and the external network to network interface;

a first L0 power controller operable to maintain first optical power levels of the first optical components at first target power levels; and

a second L0 power controller operable to maintain second optical power levels of the second optical components at second target power levels, wherein first circuitry of the first L0 power controller communicates with second circuitry of the second L0 power controller to exchange power control information to enable the L0 optical communication services between the first terminal optics and the second terminal optics,

wherein the reconfigurable optical network includes a reconfigurable optical add drop multiplexer having a demultiplexer receiving optical signals from a first communication link, and a multiplexer providing optical signals onto a second communication link, and wherein the external network to network interface optically connects the demultiplexer to the multiplexer, and wherein the demultiplexer is one of the first optical components, and the multiplexer is one of the second optical components.

2. A reconfigurable optical network, comprising

an optical network having a path for providing L0 optical communication services from a first terminal optics to a second terminal optics via a plurality of first optical components, an external network to network interface, and a plurality of second optical components, the external network to network interface being an optical communication link connecting at least one of the first optical components to at least one of the second optical components, the first terminal optics, the second terminal optics, the first optical components, and the second optical components, and the external network to network interface;

a first L0 power controller operable to maintain first optical power levels of the first optical components at first target power levels; and

a second L0 power controller operable to maintain second optical power levels of the second optical components at second target power levels, wherein first circuitry of the first L0 power controller communicates with second circuitry of the second L0 power controller to exchange power control information to enable the L0 optical communication services between the first terminal optics and the second terminal optics,

wherein the optical network includes a reconfigurable optical add drop multiplexer having a demultiplexer receiving optical signals from a first communication link, and a multiplexer providing optical signals onto a second communication link, and wherein the external network to network interface optically connects the demultiplexer to the multiplexer, and wherein the demultiplexer is one of the first optical components, and the multiplexer is one of the second optical components.

3. A method, comprising:

forming an optical network having a path for providing L0 optical communication services from a first terminal optics to a second terminal optics via a plurality of first optical components, an external network to network interface, and a plurality of second optical components, the external network to network interface being an optical communication link connecting at least one of the first optical components to at least one of the second optical components, the first terminal optics, the second terminal optics, the first optical components, the second optical components, and the external network to network interface;

maintaining, by first circuitry of a first L0 power controller, first optical power levels of the first optical components at first target power levels; and

maintaining, by second circuitry of a second L0 power controller, second optical power levels of the second optical components at second target power levels,

wherein the optical network includes a reconfigurable optical add drop multiplexer having a demultiplexer receiving optical signals from a first communication link, and a multiplexer providing optical signals onto a second communication link, and wherein the external network to network interface optically connects the demultiplexer to the multiplexer, and wherein the demultiplexer is one of the first optical components, and the multiplexer is one of the second optical components.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2018
From: YILMAZ, OMER F.; MITCHELL, MATTHEW L.; ST-LAURENT, STEPHANE; SANDERS, STEVE
To: INFINERA CORP.
Reel/Frame 047836/0095 →
Continuity (7)
Continuation 15887771 · Feb 2, 2018
Provisional Application 62453519 · Feb 2, 2017
Provisional Application 62453523 · Feb 2, 2017
Provisional Application 62453525 · Feb 2, 2017
Provisional Application 62453530 · Feb 2, 2017
Provisional Application 62453531 · Feb 2, 2017
Related Publication 20190123817A1 · Apr 25, 2019
Cited By (1)
US 12,574,138