Claims
- 1. A spectrometer comprising:
- a transducer comprising a dispersive element for dispersing light and a photodetector for converting the dispersed light into an electrical signal representative of spectral data, the transducer having a spectral resolution R>4 nm; and,
- a processor for enhancing the resolution of the spectral data to provide spectral data having a resolution of at least 2 times that of the transducer.
- 2. A spectrometer as defined in claim 1 wherein the transducer comprises a light diffraction grating having a spectral resolution R, 5 nm.ltoreq.R.ltoreq.15 nm, and wherein the spectral data provided by the processor has a resolution of at least 10 times that of the transducer.
- 3. A spectrometer as defined in claim 1 wherein the transducer is absent means for performing optical processing of the spectrum other than the dispersive element.
- 4. A spectrometer as defined in claim 1 wherein the transducer comprises a light diffraction grating having a lower spectral resolution than 5 nm and the spectral data provided by the processor is approximately that spectral data obtained using a spectrometer with a resolution of better than 2 nm.
- 5. A spectrometer as defined in claim 1 wherein a single integrated component comprises the transducer.
- 6. A spectrometer as defined in claim 1 wherein a single integrated component comprises the transducer and the processor.
- 7. A spectrometer as defined in claim 1 wherein the transducer is a broadband transducer for providing spectral data relating to a broadband spectrum.
- 8. A spectrometer as defined in claim 1 wherein the processor comprises
- memory for storing data relating a spectrum of a sample the spectrum captured using the transducer and data relating to a substantially ideal spectrum of the sample;
- processing means for determining an estimate of another spectrum having a higher resolution from captured spectral data based on the data relating a spectrum of a sample to a substantially ideal spectrum of the same sample stored within the memory.
- 9. A spectrometer as defined in claim 8 comprising:
- calibration means for receiving spectral information relating to the sample having a known spectrum, for determining the data relating the captured spectrum and the known spectrum, and for storing the data relating the captured spectrum and the known spectrum in memory.
- 10. A spectrometer as defined in claim 8 wherein the processor comprises calibration means for receiving spectral information {y.sub.n.sup.cal } relating to the sample having a known spectrum x.sup.cal (.lambda.), for choosing a form of an ideal peak v.sub.s (.lambda.,l) and of projection operator and reconstruction operator for pre-processing the data {y.sub.n.sup.cal }, for determining parameters of projection operator and parameters of reconstruction operator and for storing the data relating a spectrum of a sample to a substantially ideal spectrum of the same sample in memory.
- 11. A spectrometer as defined in claim 10 wherein the processor is customized for use with the transducer.
- 12. A spectrometer as defined in claim 8 wherein the processor comprises:
- means for estimating positions l of peaks within a spectrum on the basis of an estimate s(.lambda.) of s(.lambda.;l,a);
- means for estimating magnitudes a of the peaks; and,
- means for iteratively correcting the estimates of the positions and magnitudes of the peaks.
- 13. A spectrometer as defined in claim 1 comprising a temperature transducer for providing temperature information to the processor and wherein the processor is for correcting errors in the spectral data in dependence upon sensed fluctuations in temperature.
- 14. A spectrometric sensor comprising:
- a low resolution transducer consisting of a port for receiving electromagnetic radiation for measuring a spectrum thereof; a dispersive element for receiving the electromagnetic radiation received at the port, for dispersing the received electromagnetic radiation, and for providing the dispersed electromagnetic radiation; a photodetector for receiving the dispersed electromagnetic radiation from the dispersive element and for converting the dispersed electromagnetic radiation into an electrical signal representative of spectral data;
- an analog to digital converter for converting the electrical signal representative of spectral data into a digital electrical signal representative of the spectral data; and,
- a processor for receiving the digital signal, for significantly enhancing the resolution of the spectral data and for correcting some errors within the spectral data using stored data, the stored data relating a captured spectrum of a sample to a known spectrum of the sample, the known spectrum of the sample having higher resolution, wherein the low-resolution transducer has resolution R>2 nm.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2212776 |
Aug 1997 |
CAX |
|
Parent Case Info
This application claims benefit of Provisional application Ser. No. 60/046,944 filed May 19, 1997.
US Referenced Citations (7)