IP Library › Granted Patent US 8,848,283
Granted Patent B2
US 8,848,283 · App. 12/909,146 · Granted Sep 30, 2014

Optical amplification device and method

Inventors: Dogan Atlas (Johns Creek, GA); Mohammad Mahbobzadeh (Suwanee, GA)
Assignee: ADVA Optical Networking SE
H01S3/1301H01S3/1305H04B10/2931H01S3/10015H01S2301/02H01S3/06754
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,848,283
App. No.
12/909,146
Granted
Sep 30, 2014
Kind
B2
Abstract

It is described an optical amplification device for receiving an optical input signal and transmitting an amplified optical output signal on the basis of the optical input signal comprising an optical amplifier that comprises an input and an output. An optical gain control unit is connected to the output path of the optical amplifier and the optical gain control unit is connected to the input path of the optical amplifier. The optical gain control unit is configured to control the gain of the optical output signal. Additionally, an electrical gain control unit is connected to the output path of the optical amplifier. The electrical gain control unit is also connected to the input path of the optical amplifier. The electrical gain control unit is configured to control the gain of the optical output signal. By providing both an electrical gain control unit and an optical gain control unit, a control characteristic can be improved.

Claims (16)

1. Optical amplification device for receiving an optical input signal and transmitting an amplified optical output signal on the basis of the optical input signal comprising:

an optical amplifier comprising an input and an output;

an optical gain control unit connected to the output path of the optical amplifier and the optical gain control unit connected to the input path of the optical amplifier, the optical gain control unit configured to control the gain of the optical output signal; and

an electrical gain control unit connected to the output path of the optical amplifier and the electrical gain control unit connected to the input path of the optical amplifier, the electrical gain control unit configured to control the gain of the optical output signal;

wherein the electrical gain control unit is further connected to said output path of the optical amplifier by means of an optical add/drop filter and is configured to control the operating parameters of the optical amplifier by means of a control signal, wherein the electrical gain control unit is configured to incorporate a target gain for the optical amplifier, wherein the optical gain control unit comprises an attenuation device connected to the output path of the optical amplifier and the attenuation device is connected to the input path of the optical amplifier, and wherein the attenuation device is controlled depending on the target gain supplied to the electrical gain control unit.

2. Optical amplification device according to claim 1 , the optical gain control unit further comprising an optical add/drop filter connected to the output path of the optical amplifier;

the attenuation device connected to the optical add/drop filter; and an optical add/drop filter connected to the attenuation device and the optical add/drop filter ( 26 ) connected to the input path of the optical amplifier.

3. Optical amplification device according to claim 1 , the gain control unit ( 6 ) further comprising a converter device attached to the input path and/or the output path of the optical amplifier, the converter device configured to convert optical signals into electrical signals.

4. Optical amplification device according to claim 1 , the electrical gain control unit configured to incorporate an ASE correction signal which stands for the power of amplified spontaneous emission.

5. Method for receiving an optical input signal and transmitting an amplified optical output signal on the basis of the optical input signal with an optical amplifier providing optical amplification of said optical input signal, said method comprising:

(a) controlling of the amplification by means of an optical gain control unit connected to said input path of the optical amplifier by means of an optical add/drop filter, and wherein said optical gain control unit is connected to said output path of the optical amplifier by means of an optical add/drop filter; and

(b) controlling of the amplification by means of an electrical gain control unit by generating a control signal for the optical amplifier depending on a target gain, and attenuating a signal portion from the output path of the optical amplifier.

6. Method according to claim 5 , the controlling of the amplification by means of the optical gain control unit further comprising:

injecting the attenuated signal portion in the input path of the optical amplifier.

7. Method according to claim 5 , the controlling of the amplification by means of the electrical gain control unit further comprising:

monitoring the input path and/or the output path of the optical amplifier.

Assignments (4)
CHANGE OF NAME Recorded Jan 7, 2024
From: ADVA OPTICAL NETWORKING SE
To: ADTRAN NETWORKS SE
Reel/Frame 066208/0736 →
MERGER Recorded Jun 10, 2014
From: ADVA AG OPTICAL NETWORKING
To: ADVA OPTICAL NETWORKING SE
Reel/Frame 033108/0291 →
MERGER Recorded Feb 4, 2014
From: ADVA AG OPTICAL NETWORKING
To: ADVA OPTICAL NETWORKING SE
Reel/Frame 033262/0514 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 21, 2010
From: ATLAS, DOGAN; MAHBOBZADEH, MOHAMMAD
To: ADVA AG OPTICAL NETWORKING
Reel/Frame 025173/0472 →
Continuity (1)
Related Publication 20120099186A1 · Apr 26, 2012