Claims
- 1. An optical amplifying apparatus for amplifying input light so that an optical power of output light has a predetermined fixed value, comprising
a correction section for correcting said predetermined fixed value by a correction amount according to an optical power of amplified spontaneous emission when the optical power of the amplified spontaneous emission included in said input light has different values in different wavelength bands from each other.
- 2. The optical amplifying apparatus according to claim 1, wherein
said input light is repeatedly transmitted while being amplified by optical amplifiers for amplifying light, and is a wavelength-division multiplexed optical signal in which an optical signal corresponding to a predetermined channel is dropped/added during the repeated transmissions.
- 3. The optical amplifying apparatus according to claim 1, wherein:
said input light is repeatedly transmitted while being amplified by optical amplifiers for amplifying light, and is a wavelength-division multiplexed optical signal in which an optical signal corresponding to a predetermined channel is dropped/added during the repeated transmissions; and said correction amount is computed based on: accumulated ASE information dk as an optical power of said amplified spontaneous emission being accumulated to said input light; an input channel number mk as a number of channels of said wavelength-division multiplexed optical signal as said input light; a total input power PTink as a total optical power of said input light; a dropped channel number n as a number of channels of said wavelength-division multiplexed optical signal to be dropped during transmission; an ASE rejected band Δfch. as a bandwidth of said amplified spontaneous emission to be rejected corresponding to a drop of one channel; a noise figure NFk; and an amplification band Δf.
- 4. The optical amplifying apparatus according to the claim 1, wherein:
said input light is repeatedly transmitted while being amplified by optical amplifiers for amplifying light, and is a wavelength-division multiplexed optical signal in which an optical signal corresponding to a predetermined channel is dropped/added during the repeated transmissions; and said correction amount is computed based on: accumulated ASE information ek(j) as an optical power of said amplified spontaneous emission being accumulated to every channel of said input light; out-band accumulated ASE information ek(other) as an optical power of said amplified spontaneous emission accumulated to light being outside of a wavelength band of said wavelength-division multiplexed optical signal; an input channel number mk as a number of channels of said wavelength-division multiplexed optical signal as said input light; a total input power PTink as a total optical power of said input light; and a noise figure NF(k) of every channel.
- 5. The optical amplifying apparatus according to claim 1, further comprising:
a first optical amplifying section for amplifying said input light; an optical attenuating section for attenuating output light of said first optical amplifying section; a second optical amplifying section for amplifying output light of said optical attenuating section; and a control section for controlling an attenuation of said optical attenuating section so as to obtain said predetermined fixed value, and wherein said correction section obtains said correction amount by adjusting both or one of a gain of said first optical amplifying section and a gain of said second optical amplifying section.
- 6. An optical amplifying method for amplifying input light so that an optical power of output light has a predetermined fixed value, comprising the step of
correcting said predetermined fixed value by a correction amount according to an optical power of amplified spontaneous emission when the optical power of the amplified spontaneous emission included in the input light has different values in different wavelengths from each other.
- 7. An optical communication system comprising:
an optical transmitting station for generating a wavelength-division multiplexed optical signal in which a plurality of optical signals having different wavelengths from each other is wavelength-multiplexed; an optical transmission line for transmitting said wavelength-division multiplexed optical signal outputted from said optical transmitting station; an optical receiving station for receiving said wavelength-division multiplexed optical signal transmitted through said optical transmission line; and an optical repeater station provided in said optical transmission line, for amplifying said wavelength-division multiplexed optical signal so that an optical power of output light has a predetermined fixed value, and for rejecting a predetermined optical signal, wherein said optical repeater station comprises a correction section for correcting said predetermined fixed value by correction amounts according to optical powers of amplified spontaneous emission of each of said optical signals.
- 8. The optical communication system according to claim 7, further comprising a system management section for notifying said correction amounts to said optical repeater station in order to correct said predetermined fixed value, after computing said correction amounts according to said optical powers of the amplified spontaneous emission of said each optical signal.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-245695 |
Aug 2000 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation application of International Application PCT/JP00/07514, filed Oct. 26, 2000 and designating the U.S.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/JP00/07514 |
Oct 2000 |
US |
Child |
09968892 |
Oct 2001 |
US |