IP Library Granted Patent US 7,941,049
Granted Patent B2
US 7,941,049 · App. 11/946,151 · Granted May 10, 2011

Optical transmission apparatus with optical amplifiers

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Quick Facts
Patent No.
US 7,941,049
App. No.
11/946,151
Granted
May 10, 2011
Kind
B2
Abstract

An optical transmission apparatus including an optical amplifier for providing a high-power optical amplifier on the receive side, in which a wavelength of pumping light for an optical amplifier on the transmission side is suitably shifted to be different from a wavelength of pumping light for an optical amplifier on the receive side, pumping optical power for the optical amplifier on the transmission side is not all consumed in a doped fiber in amplification process, and remnant pump light that was left surplus is added by a wavelength multiplex coupler to the pumping light for the optical amplifier on the receive side, thereby enhancing a gain and light output without an increase in output power of the pumping light used for the optical amplifier on the receive side.

Claims (44)

1. An optical transmission apparatus for transmitting a multi-wavelength optical signal, comprising:

a first optical amplification portion for amplifying a multi-wavelength optical signal incoming from a first optical transmission path by using pumping light emitted from a first pump light source;

a first switch portion for switching a path for every wavelength of a multi-wavelength optical signal from the first optical amplification portion;

a second optical amplification portion for amplifying a multi-wavelength optical signal from the first switch portion by using pumping light emitted from a second pump light source and sending the signal to a second optical transmission path;

a third optical amplification portion for amplifying a multi-wavelength optical signal from a third optical transmission path by using pumping light emitted from a third pump light source;

a second switch portion for switching a path for every wavelength of a multi-wavelength optical signal from the third optical amplification portion; and

a fourth optical amplification portion for amplifying a multi-wavelength optical signal from the second switch portion by using pumping light emitted from a fourth pump light source and sending the signal to a fourth optical transmission path, wherein

the first optical amplification portion uses a first remnant pump light that is the remaining of the pumping light emitted from the fourth pump light source, used in the fourth optical amplification portion;

the third optical amplification portion uses a second remnant pump light that is the remaining of the pumping light emitted from the second pump light source, used in the second optical amplification portion, wherein

a wavelength range of the pumping light of the first pump light source and a wavelength range of the pumping light of the fourth pump light source are different from each other, and

a wavelength range of the pumping light of the second pump light source and a wavelength range of the pumping light of the third pump light source are different from each other.

2. The optical transmission apparatus according to claim 1 , wherein

the first optical amplification portion includes:

a first wavelength multiplex portion for adding the first remnant pump light to the multi-wavelength optical signal; and

a second wavelength multiplex portion for adding the pumping light emitted from the first pump light source to the multi-wavelength optical signal, and

the third optical amplification portion includes:

a third wavelength multiplex portion for adding the second remnant pump light to the multi-wavelength optical signal; and

a fourth wavelength multiplex portion for adding the pumping light emitted from the third pump light source to the multi-wavelength optical signal.

3. The optical transmission apparatus according to claim 1 , wherein

the first optical amplification portion includes:

a first wavelength multiplex portion for adding the first remnant pump light to the pump light emitted from the first pump light source; and

a second wavelength multiplex portion for adding pumping light including the first remnant pump light from the first wavelength multiplex portion and the pumping light emitted from the first pump light source to the multi-wavelength optical signal, and

the third optical amplification portion includes:

a third wavelength multiplex portion for adding the second remnant pump light to the pumping light emitted from the third pump light source; and

a fourth wavelength multiplex portion for adding pumping light including the second remnant pump light from the third wavelength multiplex portion and the pumping light emitted from the third pump light source to the multi-wavelength optical signal.

4. The optical transmission apparatus according to claim 2 or 3 , wherein

the first optical amplification portion includes a fifth pump light source and a fifth wavelength multiplex portion for adding pump light emitted from the fifth pump light source to the multi-wavelength optical signal, and

the fourth optical amplification portion includes a sixth pump light source and a sixth wavelength multiplex portion for adding pumping light emitted from the sixth pump light source to the multi-wavelength optical signal.

5. The optical transmission apparatus according to claim 1 , wherein

the second optical amplification portion includes a first wavelength demultiplex portion for separating the first remnant pump light from the multi-wavelength optical signal, and

the forth optical amplification portion includes a second wavelength demultiplex portion for separating the second remnant pump light from the multi-wavelength optical signal.

6. The optical transmission apparatus according to claim 1 , wherein

the first optical amplification portion includes:

a first monitor portion for monitoring at least a part of a power level of the multi-wavelength optical signal inputted to the first optical amplification portion;

a second monitor portion for monitoring at least a part of a power level of the multi-wavelength optical signal outputted from the first optical amplification portion; and

a gain control portion for controlling an amplitude value of the pumping light emitted from the first pump light source, based on the power level monitored by the first monitor portion and the second monitor portion.

7. The optical transmission apparatus according to claim 4 , wherein

the first optical amplification portion includes:

a first monitor portion for monitoring at least a part of a power level of the multi-wavelength optical signal inputted to the first optical amplification portion;

a second monitor portion for monitoring at least a part of a power level of the multi-wavelength optical signal outputted from the first optical amplification portion; and

a gain control portion for controlling an amplitude value of the pumping light emitted from at least one of the first pump light source and the fifth pump light source, based on the power level monitored by the first monitor portion and the second monitor portion.

8. The optical transmission apparatus according to claim 1 , wherein

the first optical amplification portion and the fourth optical amplification portion are installed on the same optical amplification board, and

the second optical amplification portion and the third optical amplification portion are installed on the same optical amplification board.

Assignments (2)
MERGER Recorded Jan 12, 2010
From: HITACHI COMMUNICATION TECHNOLOGIES, LTD.
To: HITACHI, LTD.
Reel/Frame 023758/0625 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2008
From: NAKANO, HIROYUKI; TAKEUCHI, HIROSHI; MASUDA, HIROSHI
To: HITACHI COMMUNICATION TECHNOLOGIES, LTD.
Reel/Frame 020658/0770 →