IP Library › Granted Patent US 8,515,288
Granted Patent B2
US 8,515,288 · App. 12/457,762 · Granted Aug 20, 2013

Optical signal transmission control apparatus and optical signal transmission control method

Inventor: Futoshi Izumi (Kawasaki, JP)
Assignee: Fujitsu Limited
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 8,515,288
App. No.
12/457,762
Granted
Aug 20, 2013
Kind
B2
Abstract

An optical signal transmission control apparatus that controls transmission of optical signals transmitted via a plurality of redundant routes. The optical signal transmission control apparatus includes a delay difference adjusting unit that adjusts a transmission delay difference between the optical signals of each route by converting a wavelength of the optical signal and making the optical signal with a converted wavelength pass through a waveguide in which a transmission delay of the optical signal changes continuously depending on the wavelength, and a waveform degradation compensating unit that compensates degradation of a waveform of the optical signal, while maintaining the transmission delay difference adjusted by the delay difference adjusting unit.

Claims (36)

1. An optical signal transmission control apparatus that controls transmission of optical signals transmitted via a plurality of redundant routes, the optical signal transmission control apparatus comprising:

a delay difference adjusting unit that adjusts a transmission delay difference between the optical signals of each route by applying an excitation light to more than one optical signal of different wavelengths at the same time, converting the wavelengths of the optical signals, and making the optical signals with converted wavelengths pass through a waveguide in which a transmission delay of the optical signals changes continuously depending on the wavelength; and

a waveform degradation compensating unit that compensates degradation of a waveform of the optical signal, while maintaining the transmission delay difference adjusted by the delay difference adjusting unit.

2. The optical signal transmission control apparatus according to claim 1 , further comprising

a wavelength converting unit that reconverts the wavelength of the optical signal to a predetermined wavelength, after the wavelength of the optical signal is converted by the delay difference adjusting unit.

3. The optical signal transmission control apparatus according to claim 1 , further comprising

an optical buffer unit that adjusts the transmission delay difference of the optical signals, by switching a plurality of waveguides with different lengths and discretely changing the transmission delay of the optical signals, wherein

the delay difference adjusting unit further adjusts the transmission delay difference of the optical signals that is adjusted by the optical buffer unit.

4. The optical signal transmission control apparatus according to claim 1 , wherein

the delay difference adjusting unit adjusts the transmission delay difference between a plurality of optical signals, which are transmitted via redundant routes and multiplexed using wavelength division multiplexing, by signals with same wavelength.

5. The optical signal transmission control apparatus according to claim 4 , wherein

the delay difference adjusting unit receives the optical signal on which a delay difference detecting signal for detecting the transmission delay difference of the optical signal is multiplexed, and adjusts the transmission delay difference between the optical signals by referring to the delay difference detecting signal.

6. The optical signal transmission control apparatus according to claim 1 , further comprising

a signal interruption detecting unit that detects generation of a signal interruption;

an optical signal output unit that combines and outputs the optical signals of respective routes; and

a signal level adjusting unit that, when the signal interruption is detected by the signal interruption detecting unit, adjusts an intensity level of the optical signal at each route in which the degradation of the waveform is compensated by the waveform degradation compensating unit so that the intensity level of the optical signal output from the optical signal output unit is of a predetermined level.

7. The optical signal transmission control apparatus according to claim 6 , further comprising

an optical buffer unit that adjusts the transmission delay difference of the optical signals, by switching the waveguides with different lengths and discretely changing the transmission delay of the optical signal, wherein

the delay difference adjusting unit further adjusts the delay difference of the optical signals in which the transmission delay difference is adjusted by the optical buffer unit; and

the signal interruption detecting unit detects the signal interruption that occurs to the signal before the signal is input to the optical buffer unit.

8. The optical signal transmission control apparatus according to claim 6 , wherein

the signal level adjusting unit, when the signal interruption is detected by the signal interruption detecting unit, performs an adjustment of the intensity levels of the optical signals at respective route before the optical signal stops reaching.

9. The optical signal transmission control apparatus according to claim 1 , further comprising

an optical signal output unit that combines and outputs the optical signals at respective routes; and

a signal level adjusting unit that monitors the intensity level of the optical signal output from the optical signal output unit and adjusts the intensity level of the optical signal at each route in which the degradation of the waveform of the optical signal is compensated by the waveform degradation compensating unit so that the intensity level is of a predetermined level.

10. The optical signal transmission control apparatus according to claim 1 , further comprising

a signal storage unit that electrically stores therein the optical signals at the routes in which the degradation of the waveform is compensated by the waveform degradation compensating unit, and

a signal reading unit that reads out the signal at the route without signal interruption, from the signal storage unit.

11. The optical signal transmission control apparatus according to claim 10 , wherein

the delay difference adjusting unit readjusts the transmission delay difference of the optical signal, when the signal interruption occurred at the route is absorbed, and the signal at the route in which the signal interruption is absorbed is read out from the signal storage unit by the signal reading unit.

12. The optical signal transmission control apparatus according to claim 1 , further comprising

an error signal detecting unit that detects a communication error signal generated when the delay difference exists in the optical signals at the routes, wherein

the delay difference adjusting unit adjusts the transmission delay difference between the optical signals at each route, until the error signal detecting unit detects no communication error signal.

13. An optical signal transmission control method that controls transmission of optical signals transmitted via a plurality of redundant routes, the optical signal transmission control method comprising:

delay difference adjusting for adjusting a transmission delay difference between the optical signals of each route by applying an excitation light to more than one optical signal of different wavelengths at the same time, converting the wavelengths of the optical signals, and making the optical signals with converted wavelengths pass through a waveguide in which a transmission delay of the optical signals changes continuously depending on the wavelength; and

waveform degradation compensating for compensating degradation of a waveform of the optical signal, while maintaining the transmission delay difference adjusted in the delay difference adjusting.

Continuity (2)
Continuation 11992231
Related Publication 20090269079A1 · Oct 29, 2009