Claims
- 1. Apparatus for measuring parameters of an input optical signal comprising:an interferometer having a cyclical transfer function of narrow band peaks to produce a plurality of spectrally resolved portions of said optical signal; means for isolating said spectrally resolved portions; and means for measuring said parameters from said isolated spectrally resolved portions.
- 2. Apparatus as claimed in claim 1 wherein said means for isolating includes means for separating said spectrally resolved portions in the space domain as a function of wavelength.
- 3. Apparatus as claimed in claim 2 wherein said means for separating is located before said interferometer for first separating the optical signal spectrum into different wavelength bands, and wherein each band is scanned by said interferometer.
- 4. Apparatus as claimed in claim 2 wherein said means for separating is located after said interferometer for separating the spectrally resolved portions in the space domain.
- 5. Apparatus as claimed in claim 1 wherein said means for isolating includes means for separating said spectrally resolved portions in the time domain as a function of time.
- 6. A link quality monitor for an optical transmission system comprising the apparatus of claim 1 wherein said parameters include carrier wavelengths.
- 7. A link quality monitor for an optical transmission system comprising the apparatus of claim 1 wherein said parameters include optical signal to noise ratios.
- 8. A link quality monitor for an optical transmission system comprising the apparatus of claim 1 wherein said parameters include ASE noise levels.
- 9. A link quality monitor for an optical transmission system comprising the apparatus of claim 1 wherein said parameters include optical non-linearities.
- 10. A link quality monitor an optical transmission system comprising the apparatus of claim 1 wherein said parameters include signal baseband information.
- 11. A method for measuring parameters of an input optical signal comprising:scanning said optical signal with an interferometer having a cyclical transfer function of narrow band peaks to produce a plurality of spectrally resolved portions of said optical signal; isolating said spectrally resolved portions; and measuring said parameters from said isolated spectrally resolved portions.
- 12. A method as claimed in claim 11 wherein said step of isolating includes separating said spectrally resolved portions in the space domain as a function of wavelength.
- 13. A method as claimed in claim 12 wherein said step of separating occurs prior to the scanning by interferometer in order to first separate the optical signal spectrum into different wavelength bands, and then scanning each band by said interferometer.
- 14. A method as claimed in claim 12 wherein said step of separating occurs after said interferometer for separating the spectrally resolved portions in the space domain.
- 15. A method as claimed in claim 11 wherein said step of isolating includes separating said spectrally resolved portions in the time domain as a function of rime.
Parent Case Info
This application is a continuation of U.S. patent application Ser. No. 09/411,649 filed Oct. 4, 1999, now U.S. Pat. No. 6,493,088.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
6344910 |
Cao |
Feb 2002 |
B1 |
6452681 |
Carver et al. |
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Continuations (1)
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Number |
Date |
Country |
Parent |
09/411649 |
Oct 1999 |
US |
Child |
10/266574 |
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US |