Non-invasive wine taint detector
View Patent ↗A system includes a computing device including a memory configured to store instructions. The computing device also includes a processor to execute the instructions to perform operations including initiating transmission of incident light from one or more light sources to a sealed bottle containing liquid. The operations also include receiving scattered light from the liquid contained in the sealed bottle. The operations also include processing one or more signals representative of the scattered light to detect interactions of the incident light with a particular molecule.
1. A computing device implemented method comprising:
initiating transmission of incident light from one or more light sources to a sealed wine or spirits bottle containing an alcoholic liquid;
receiving scattered light from the liquid contained in the sealed wine or spirits bottle; and
processing one or more signals representative of the scattered light, the signals indicative of at least one of Raman scattered light and an absence of Rayleigh scattered light, by using particular frequencies to detect interactions of the incident light with one or more molecules indicative of a characteristic being present in the alcoholic liquid contained in the sealed wine or spirits bottle.
2. The computing device implemented method of claim 1 , further comprising:
filtering the scattered light prior to processing one or more signals representative of the scattered light.
3. The computing device implemented method of claim 1 , wherein processing one or more signals representative of the scattered light comprises filtering signals.
4. The computing device implemented method of claim 3 , wherein filtering the scattered light comprises passing frequencies of the received scattered light that are within a particular frequency range.
5. The computing device implemented method of claim 1 , further comprising:
spectrally separating the scattered light prior to processing one or more signals representative of the scattered light.
6. The computing device implemented method of claim 1 , wherein the characteristic is a defect being present in the alcoholic liquid contained in the sealed wine or spirits bottle.
7. The computing device implemented method of claim 6 , wherein processing comprises determining if the alcoholic liquid is tainted from interactions of the incident light with one or more taint molecules being included in the one or more molecules.
8. The computing device implemented method of claim 1 , wherein processing one or more signals representative of the scattered light comprises determining if the received scattered light is above a threshold value.
9. The computing device implemented method of claim 1 , wherein the light source comprises a laser or a light emitting diode.
10. A system comprising:
a computing device comprising:
a memory configured to store instructions; and
a processor to execute the instructions to perform operations comprising:
initiating transmission of incident light from one or more light sources to a sealed wine or spirits bottle containing an alcoholic liquid;
receiving scattered light from the liquid contained in the sealed wine or spirits bottle; and
processing one or more signals representative of the scattered light, the signals indicative of at least one of Raman scattered light and an absence of Rayleigh scattered light, by using particular frequencies to detect interactions of the incident light with one or more molecules indicative of a characteristic being present in the alcoholic liquid contained in the sealed wine or spirits bottle.
11. The system of claim 10 , wherein the characteristic is a defect being present in the alcoholic liquid contained in the sealed wine or spirits bottle.
12. The system of claim 11 , wherein processing comprises determining if the liquid is tainted from interactions of the incident light with one or more taint molecules being included in the one or more molecules.
13. The system of claim 10 , wherein the light source comprises a laser or a light emitting diode.
14. One or more computer-readable non-transitory media storing instructions that are executable by a processing device, and upon such execution cause the processing device to perform operations comprising:
initiating transmission of incident light from one or more light sources to a sealed wine or spirits bottle containing an alcoholic liquid;
receiving scattered light from the liquid contained in the sealed wine or spirits bottle; and
processing one or more signals representative of the scattered light, the signals indicative of at least one of Raman scattered light and an absence of Rayleigh scattered light, by using particular frequencies to detect interactions of the incident light with one or more molecules indicative of a characteristic being present in the alcoholic liquid contained in the sealed wine or spirits bottle.
15. The computer-readable media of claim 14 , wherein the characteristic is a defect being present in the alcoholic liquid contained in the sealed wine or spirits bottle.
16. The computer-readable media of claim 15 , wherein processing comprises determining if the alcoholic liquid is tainted from interactions of the incident light with one or more taint molecules being included in the one or more molecules.
17. The computer-readable media of claim 14 , wherein the light source comprises a laser or a light emitting diode.
18. The computing device implemented method of claim 7 , wherein the taint molecule is a trichloroanisole molecule or a sulphur taint molecule.
19. The system of claim 12 , wherein the taint molecule is a trichloroanisole molecule or a sulphur taint molecule.
20. The computer-readable media of claim 16 , wherein the taint molecule is a trichloroanisole molecule or a sulphur taint molecule.