Ring pigeon double-eye ring type iris identification system
By irradiating the racing pigeon iris at 360 degrees, the problem of blurred upper and lower iris structure in the prior art is solved, and more efficient and accurate iris recognition is achieved.
Patent Information
- Application Number
- CN202421587301.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-06-26
- Filing Date
- 2024-07-05
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-07-05
AI Technical Summary
In the identification of racing pigeon iris, the left and right double infrared LED lamps are used to illuminate, resulting in the upper and lower structure of the iris being relatively blurred, affecting the identification efficiency and accuracy.
The ring infrared LED light is used to illuminate the iris of the racing pigeon in a direction of 360 degrees, and the iris images are obtained through the first and second lenses, and stored and analyzed through the computer analysis module.
The complete structure of the racing pigeon iris is clearly displayed and captured, effectively increasing the efficiency and accuracy of identification.
Smart Images

Figure CN222980036U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of iris recognition, and particularly to a ring-shaped iris recognition system for both eyes of racing pigeons. Background Art
[0002] In order to identify racing pigeons, the previous technology was to tie a leg ring on the legs of racing pigeons, but it was difficult to prevent cheating incidents such as AB pigeons from occurring.
[0003] Therefore, some manufacturers use two infrared LED lights to irradiate the iris of racing pigeons to obtain the iris structure of racing pigeons.
[0004] The disadvantages of the above technology are as follows: Since the left and right infrared LED lights are used to cover the iris of racing pigeons, only the left and right irradiation directions are used, resulting in a clearer left and right iris structure of racing pigeons and a blurrier upper and lower iris structure. Therefore, the efficiency and accuracy of racing pigeon iris recognition are affected. Content of the Utility Model
[0005] The main technical problem to be solved by the utility model is to overcome the above defects existing in the prior art, and to provide a ring-shaped iris recognition system for both eyes of racing pigeons, which uses a ring-shaped infrared LED light to irradiate the iris of racing pigeons in a 360-degree direction, can clearly display and capture the complete structure of the iris of racing pigeons, and can effectively improve the efficiency and accuracy of recognition.
[0006] The technical solution adopted by the utility model to solve its technical problems is as follows:
[0007] A ring-shaped iris recognition system for both eyes of racing pigeons includes: a fixed footrest, a detection lamp holder, a first lens, a first ring-shaped infrared LED light, a second ring-shaped infrared LED light, and a second lens;
[0008] The fixed footrest includes a fixed part and a bent assembly part. The fixed part is combined with the platform mechanism. One end of the assembly part is connected to the fixed part, and the other end has a platform surface;
[0009] Both sides of the detection lamp holder have a first assembly area and a second assembly area. A first accommodation hole for the first lens to pass through is provided in the center of the first assembly area. The second assembly area is located at the other end of the first assembly area. A second accommodation hole for the second lens to pass through is provided in the center of the second assembly area. The inner edge of the aforementioned first assembly area is for setting the first ring-shaped infrared LED light, and the inner edge of the aforementioned second assembly area is for setting the second ring-shaped infrared LED light. The center of the detection lamp holder has symmetrically arranged U-shaped plates, and a detection area is formed between the two U-shaped plates;
[0010] The body of the first lens is arranged on the platform surface of the fixed footrest, and the first lens passes through the first accommodation hole of the detection lamp holder, and the first ring-shaped infrared LED light is just arranged around the first lens;
[0011] The second lens is installed in the second accommodation hole of the detection lamp socket, and the second annular infrared LED lamp is just arranged around the second lens;
[0012] Place the head of the racing pigeon into the detection area, cooperate with the aforementioned first annular infrared LED lamp and the second annular infrared LED lamp to irradiate the iris of the racing pigeon, and obtain the iris image of the aforementioned racing pigeon by the first lens and the second lens.
[0013] In the embodiment of the present utility model, the first lens and the second lens are also electrically connected to a computer analysis module for storing and analyzing the iris structure of the racing pigeon.
[0014] Through the above description, the features and effects of the present utility model are briefly described as follows: By using the annular infrared LED lamp to irradiate the iris of the racing pigeon in a 360-degree direction, the complete structure of the iris of the racing pigeon can be clearly displayed and captured, which can effectively improve the efficiency and accuracy of identification.
[0015] The beneficial effect of the present utility model is that by using the annular infrared LED lamp to irradiate the iris of the racing pigeon in a 360-degree direction, the complete structure of the iris of the racing pigeon can be clearly displayed and captured, which can effectively improve the efficiency and accuracy of identification. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The present utility model will be further described below with reference to the drawings and embodiments.
[0017] Figure 1 is an exploded view of the structure of the present utility model.
[0018] Figure 2 is a structural diagram of the present utility model.
[0019] Figure 3 is a system block diagram of the present utility model.
[0020] Description of the reference numerals in the drawings:
[0021] 1: Fixed tripod
[0022] 11: Fixed part
[0023] 12: Assembly part
[0024] 121: Platform surface
[0025] 2: Detection lamp socket
[0026] 21: First assembly area
[0027] 211: First accommodation hole
[0028] 22: Second assembly area
[0029] 221: Second accommodation hole
[0030] 23: U-shaped plate
[0031] 24: Detection area
[0032] 3: First lens
[0033] 31: Body
[0034] 4: First annular infrared LED lamp
[0035] 5: Second annular infrared LED lamp
[0036] 6: Second lens
[0037] 7: Computer analysis module
[0038] P: Iris image Detailed implementation method
[0039] As Figure 1 , Figure 2 shown, the pigeon double-eye annular iris recognition system of the present utility model includes: a fixed tripod 1, a detection lamp base 2, a first lens 3, a first annular infrared LED lamp 4, a second annular infrared LED lamp 5, and a second lens 6.
[0040] As Figure 1 , Figure 2 shown, the fixed tripod 1 includes a fixed part 11 and a bent assembly part 12. The fixed part 11 is combined with a platform mechanism (not shown in the figure), and the aforementioned platform mechanism is a device such as a table or a detection table. One end of the assembly part 12 is connected to the fixed part 11, and the other end has a platform surface 121.
[0041] As Figure 1 , Figure 2 shown, the two sides of the detection lamp base 2 have a first assembly area 21 and a second assembly area 22. The center of the first assembly area 21 is provided with a first accommodation hole 211 for the first lens 3 to penetrate. The second assembly area 22 is provided at the other end of the first assembly area 21. The center of the second assembly area 22 is provided with a second accommodation hole 221 for the second lens 6 to penetrate. The inner edge of the aforementioned first assembly area 21 is for the first annular infrared LED lamp 4 to be set, and the inner edge of the aforementioned second assembly area 22 is for the second annular infrared LED lamp 5 to be set. The center of the detection lamp base 2 has symmetrically arranged U-shaped plates 23, and a detection area 24 is formed between the two U-shaped plates 23.
[0042] As Figure 1 , Figure 2As shown, the body 31 of the first lens 3 is disposed on the platform surface 121 of the fixed tripod 1, and the first lens 3 penetrates into the first accommodation hole 211 of the detection lamp base 2, and the first annular infrared LED lamp 4 is just arranged around the first lens 3 in a ring shape.
[0043] As Figure 1 , Figure 2 shown, the second lens 6 is installed in the second accommodation hole 221 of the detection lamp base 2, and the second annular infrared LED lamp 5 is just arranged around the second lens 6 in a ring shape.
[0044] As Figure 2 shown, the first lens 3 and the second lens 6 are also electrically connected to the computer analysis module 7 through a transmission line.
[0045] The above is the introduction of each element of the present utility model. The following will introduce the usage mode of the present utility model.
[0046] 1. As Figures 1 to 3 shown, place the head of the racing pigeon into the detection area 24 of the detection lamp base 2.
[0047] 2. The aforementioned first annular infrared LED lamp 4 and second annular infrared LED lamp 5 irradiate the iris of the racing pigeon, and the first lens 3 and the second lens 6 obtain the iris image P of the aforementioned racing pigeon.
[0048] 3. The computer analysis module 7 stores the iris image P for use in confirming the identity of the racing pigeon after the competition.
[0049] 4. By using the first and second annular infrared LED lamps 4 and 5 of the present utility model to irradiate the iris of the racing pigeon in a 360-degree direction, the complete structure of the iris of the racing pigeon can be clearly displayed and captured, which can effectively improve the efficiency and accuracy of identification.
[0050] The above is only a preferred embodiment of the present utility model, and it is not intended to limit the present utility model in any form. Any simple modification, equivalent change and modification made to the above embodiments based on the technical essence of the present utility model still fall within the scope of the technical solution of the present utility model.
Claims
1. A racing pigeon binocular ring iris recognition system, characterized in that: include: A fixed tripod, a detection lamp holder, a first lens, a first ring-shaped infrared LED lamp, a second ring-shaped infrared LED lamp and a second lens; The fixed tripod comprises a fixed part and a bent assembly part, the fixed part is assembled on the platform mechanism, one end of the assembly part is connected to the fixed part, and the other end has a platform surface; The detection lamp holder has a first assembly area and a second assembly area on both sides, a first accommodating hole for the first lens to penetrate is provided in the center of the first assembly area, the second assembly area is provided at the other end of the first assembly area, a second accommodating hole for the second lens to penetrate is provided in the center of the second assembly area, the first ring-shaped infrared LED lamp is provided at the inner edge of the first assembly area, and the second ring-shaped infrared LED lamp is provided at the inner edge of the second assembly area, and a symmetrically arranged U-shaped plate is provided in the center of the detection lamp holder, and a detection area is formed between the two U-shaped plates; The body of the first lens is arranged on the platform surface of the fixed tripod, and the first lens is inserted into the first receiving hole of the detection lamp holder, and the first ring-shaped infrared LED lamp is arranged around the periphery of the first lens; The second lens is installed in the second receiving hole of the detection lamp holder, and the second ring-shaped infrared LED lamp is arranged around the periphery of the second lens; The head of a racing pigeon is placed in the detection area, and the iris of the racing pigeon is illuminated by the first ring-shaped infrared LED lamp and the second ring-shaped infrared LED lamp, and the iris image of the racing pigeon is obtained by the first lens and the second lens.
2. The racing pigeon binocular ring iris recognition system according to claim 1, characterized in that: The first lens and the second lens are also electrically connected to a computer analysis module to store and analyze the iris structure of the racing pigeon.