Claims
- 1. An optical signal receiver comprising:
a photodetector for receiving the optical signal and converting it into an electrical signal; an electronic amplifier for amplifying the electrical signal; a decision circuit for discretising the electrical signal into logical ones and logical zeros based on a decision threshold; a forward error correction circuit for counting a number of errors in the logical ones and a number of errors in the logical zeros; a feedback circuit for setting the threshold based on an optimization parameter related to the number of errors in the number of logical ones and the number of errors in the number of logical zeros.
- 2. The optical signal receiver of claim 1 within the optimization parameter is a ratio of the number of errors in the logical ones to the number of errors in the logical zeros.
- 3. The optical signal receiver of claim 2 wherein the optimization parameter is 3.
- 4. The optical signal receiver of claim 1 wherein the optimization parameter minimizes bit error rate in the signal.
- 5. The optical signal receiver of claim 1 wherein the feedback circuit comprises a microcontroller.
- 6. The optical signal receiver of claim 1 wherein the optimization parameter is determined by iteratively measuring bit error rate in the signal.
- 7. A method of optimizing a decision threshold in an optical receiver comprising the steps of:
setting a target ratio value; measuring a number of erred ones in the signal; measuring a number of erred zeros in the signal; adjusting the decision threshold to close on the target ratio.
- 8. The method of claim 7 wherein the step of adjusting further comprises:
calculating an actual ratio of the number of erred ones to the number of erred zeros; checking the actual ratio against the target ratio; increasing the decision threshold by a set amount if the actual ratio is less than the target ratio; decreasing the decision threshold by the set amount if the actual ratio is greater than the target ratio.
- 9. The method of claim 8 wherein the actual ratio is about 3.
- 10. The method of claim 7 wherein the step of adjusting includes minimizing a bit error rate of the optical signal.
- 11. An optical signal receiver comprising:
a receiver unit receiving the optical signal and converting it into an electronic signal; a decision circuit connected to the inverting receiver, interpreting the electronic signal into logical ones and logical zeros based on a threshold; a counting circuit connected to the decision circuit, tabulating the number of erred ones and erred zeros in the logical ones and zeros; a controller connected to the counting circuit and the decision circuit whereby a ratio of erred ones to erred zeros is used to calculate the threshold.
- 12. The optical signal receiver of claim 11 wherein the threshold is optimized.
- 13. The optical signal receiver of claim 11 wherein the threshold is about 3.
- 14. The optical signal receiver of claim 11 wherein the calculation minimizes bit error rate of the optical signal.
- 15. The optical signal receiver of claim 11 further comprising a low pass filter connected to the receiver unit.
- 16. The optical signal receiver of claim 11 wherein the counting circuit is a forward error correction circuit.
- 17. The optical signal receiver of claim 11 wherein the receiver unit comprises an inverting receiver.
- 18. The optical signal receiver of claim 11 wherein the receiver unit comprises a photodetector.
- 19. The optical signal receiver of claim 11 wherein the receiver unit comprises a photo detector coupled with an electrical amplifier.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority to Provisional Application Ser. No. 60/385,947, entitled “Apparatus and Method for Controlling the Decision Threshold in an Optical Network”, by Eiselt, et al. filed Jun. 4, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60385947 |
Jun 2002 |
US |