IP Library Granted Patent US 12694696
Granted Patent B2
US 12694696 · App. 18/404,944 · Granted Jul 28, 2026

Food status recognition and display system and food status recognition and display method

Inventors: Hsiu-Wen Wang (Taipei City, TW); Chih-Wen Lin (Taipei City, TW)
Assignee: PRIMAX ELECTRONICS LTD.
G06V20/68G06V10/143G06V20/188G06V20/52
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 12694696
App. No.
18/404,944
Granted
Jul 28, 2026
Kind
B2
Abstract

A food status recognition and display system and a food status recognition and display method are provided. The food status recognition and display system includes a camera and light source module, a processing module and a display interface. The camera and light source module faces a food storage environment. After the camera and light source module photographs at least one food item using the light beams in a visible light band, a near-infrared light band and a short-wave infrared light band, respective food photography results are obtained. The processing module receives the food photography results. After the food photography results are processed through an image recognition process, a vegetation index formula, a vegetation water content formula and a vegetation correlation analysis formula, at least one corresponding food status information is generated and then transmitted.

Claims (18)

1 . A food status recognition and display system, comprising:

a camera and light source module facing a food storage environment, wherein the camera and light source module photographs at least one food item in the food storage environment by using light beams in a visible light band, a near-infrared light band, and a short-wave infrared light band, so that the respective food photography results are generated;

a processor receiving the food photography results, wherein after the processor processes and analyzes the food photography results through an image recognition process, a vegetation index formula, a vegetation water content formula, and a vegetation correlation analysis formula, at least one corresponding food status information is generated and then transmitted; and

a display interface receiving the at least one food status information, wherein the at least one food status information is shown on the display interface so as to be viewed;

wherein the food photography results include a near-infrared light image signal and a short-wave infrared light image signal, wherein a vegetation water content is obtained through the vegetation water content formula after a value of the near-infrared light image signal minus the short-wave infrared light image signal is divided by a value of the near-infrared light image signal plus the short-wave infrared light image signal.

2 . The food status recognition and display system according to claim 1 , wherein the food status recognition and display system further comprises a refrigerator, and the food storage environment is formed in the refrigerator, wherein the camera and light source module faces the food storage environment, the camera and light source module is disposed within the refrigerator, the processor is in communication with the camera and light source module, and the processor is installed in the refrigerator.

3 . The food status recognition and display system according to claim 2 , wherein the food status recognition and display system further comprises a user device, and the display interface is installed on the user device, wherein the refrigerator further comprises a network transmitter, and the network transmitter is in communication with the processor, wherein after the network transmitter receives the at least one food status information, the at least one food status information is transmitted from the network transmitter to the user device in a wired transmission manner or a wireless transmission manner.

4 . The food status recognition and display system according to claim 1 , wherein the camera and light source module comprises a wide-angle lens module or a fisheye lens module.

5 . The food status recognition and display system according to claim 1 , wherein the camera and light source module comprises a visible light source, a near-infrared light source, a short-wave infrared light source, a visible light sensing chip, a near-infrared light sensing chip and a short-wave infrared light sensing chip, wherein the camera and light source module senses the at least one food item using the light beams in the visible light band, the near-infrared light band and the short-wave infrared light band, so that the respective food photography results are generated.

6 . The food status recognition and display system according to claim 1 , wherein the camera and light source module comprises an integrated multi-spectral sensing chip that integrates the sensing functions in the visible light band, the near-infrared light band and the short-wave infrared light band.

7 . The food status recognition and display system according to claim 1 , wherein the food photography results include a visible light image signal, wherein when the image recognition process is performed, the visible light image signal is loaded, and the visible light image signal is subjected to image correction and extraction and classified into one or more regions of interest in a default model, so that a name of the at least one food item corresponding to a content of the visible light image signal is determined.

8 . The food status recognition and display system according to claim 1 , wherein the food photography results include a near-infrared light image signal and a red light image signal, wherein a vegetation index is obtained through the vegetation index formula after a value of the near-infrared light image signal minus the red light image signal is divided by a value of the near-infrared light image signal plus the red light image signal.

9 . The food status recognition and display system according to claim 8 , wherein if a difference between 1 and the vegetation index falls within a specified range, the corresponding food status information represents a high freshness level of a food status, wherein if the difference between and the vegetation index is beyond the specified range, the corresponding food status information represents a low freshness level of the food status.

10 . The food status recognition and display system according to claim 1 , wherein if a difference between 1 and the vegetation water content falls within a specified range, the corresponding food status information represents a high freshness level of a food status, wherein if the difference between 1 and the vegetation water content is beyond the specified range, the corresponding food status information represents a low freshness level of the food status.

11 . The food status recognition and display system according to claim 1 , wherein the food photography results include a near-infrared light image signal and a red light image signal, wherein a vegetation index is obtained through the vegetation index formula after a value of the near-infrared light image signal minus the red light image signal is divided by a value of the near-infrared light image signal plus the red light image signal.

12 . The food status recognition and display system according to claim 11 , wherein the vegetation correlation analysis formula is related to a correlation analysis about the vegetation index and the vegetation water content, and a vegetation correlation coefficient is obtained through the vegetation correlation analysis formula.

13 . The food status recognition and display system according to claim 12 , wherein if a difference between 1 and the vegetation correlation coefficient falls within a specified range, there is a positive correlation between the vegetation index and the vegetation water content.

14 . The food status recognition and display system according to claim 1 , wherein the food status recognition and display system further comprises a user device, wherein the camera and light source module, the processor and the display interface are installed on the user device, and the food storage environment is a food exhibition area.