A sports competition and entertainment shooting training intelligent image system
Patent Information
- Application Number
- DE202025104066
- Authority / Receiving Office
- DE · DE
- Patent Type
- Utility models
- Current Assignee / Owner
- Priority Date
- 2025-06-24
- Filing Date
- 2025-07-15
- Publication Date
- 2025-09-11
- Estimated Expiration
- 2035-07-31
Smart Images

Figure 00000000_0000_ABST
Abstract
Description
Technological domain
[0001] The present practical innovation concerns the technical field of intelligent image systems and relates in particular to a sports competition and entertainment shooting training intelligent image system. Technological background
[0002] The intelligent imaging system for sports competition and entertainment shooting training is an innovative solution that combines modern intelligent hardware and artificial intelligence technologies. This system builds a three-dimensional dynamic detection system using a multimodal sensor network (including a 4K / 120fps high-speed camera, thermal camera, laser measurement module, and millimeter-wave radar) and realizes a fully digitalized reconstruction of the shooting process using a deep learning algorithm. At the competition level, the system can track the trajectory of bullets in real time and analyze the distribution patterns of entry points, providing objective data support with millimeter accuracy for referees' decisions.In the area of training optimization, it uses biomechanical feature extraction technology to intelligently detect shooting posture deviations and fluctuations in firing moments as key parameters and generate personalized training reports. The entertainment interaction module uses AR / VR technology to realize immersive experiences such as virtual targets and scenario simulations, significantly enhancing the enjoyment of training.
[0003] The intelligent imaging systems currently widely used in the field of sports competition and entertainment shooting training still have significant limitations in terms of application scenarios and cannot meet the diverse requirements of sports competition and entertainment shooting training, which is why their application range is limited. Summary of the practical innovation
[0004] In view of the deficiencies of the existing technology, the present practical innovation offers a sports competition and entertainment shooting training intelligent image system to solve the problem of the limited application scenarios of the existing intelligent image systems in sports competition and entertainment shooting training as described in the above technological background.
[0005] To achieve the above objective, the present practical innovation is implemented as follows: A sports competition and entertainment shooting training intelligent imaging system comprising a plug-in imaging system and a suspended imaging system, wherein the plug-in imaging system comprises a lower drive shaft, the end of which is connected to a protective tube, the end of which is connected to a sealing cooler end piece, the end of which is connected to a base, the end of which is connected to an adjustable lens, and the interior of which has a main control module, and the suspended imaging system comprises a pipe wrench, the lower part of which is connected to a connecting plate, in one end of which a hole is connected with a rivet, wherein a mirror body is located below the connecting plate, the upper part of which is connected to a gimbal with a screw,whose outside is connected with a spring and whose upper screw connection is connected with a hand nut.
[0006] Preferably, the outer surfaces of the lower drive shaft and the sealing radiator end piece are both provided with a resistance O-ring, and the base has a battery container I at the lower end, the inner chamber of which has a battery holder I in the gimbal disk.
[0007] Preferably, the inner chamber of the battery container I has a metal tube I, the inner chamber of which has a battery I, one end of which is connected to a battery container lid I, and the battery holder I is located at the other end of the battery I remote from the battery container lid I.
[0008] Preferably, the outside of the screw passes through the hole at the other end of the connecting plate away from the rivet, the hand nut is located over the connecting plate, the rivet and screw are located on either side of the pipe wrench, and the end of the mirror body is connected to an end cap.
[0009] Preferably, the lower part of the mirror body has a battery container II, the inner chamber of which has a battery holder II in the gimbal disk, and the inner chamber of which has a metal hose II.
[0010] Preferably, the inner chamber of the metal tube II has a battery II, one end of which is connected to a battery container lid II, and the battery holder II is located at the other end of the battery II remote from the battery container lid II. Advantages
[0011] This practical innovation offers an intelligent imaging system for sports competitions and entertainment shooting training. It has the following beneficial effects: This intelligent imaging system for sports competitions and entertainment shooting training offers two types of imaging systems: plug-in and suspended. The plug-in imaging system can be precisely fixed inside the shooting equipment. Through the cooperation of the adjustable lens and the main control module, it can capture and analyze the bullet trajectory and entry point distribution during the shooting process in real time, providing referees with millimeter-accurate decision-making. At the same time, the suspended imaging system, thanks to its flexible adaptability according to the actual needs of the shooters, can be used for physical target correction, ensuring the precision and effectiveness of training. The above two imaging systems can accommodate a variety of training scenarios and equipment, increasing the flexibility and applicability of training. Description of the drawings Fig. shows the structural drawing of the insertable image system of this practical innovation. Fig. shows the exploding structural drawing of the insertable image system of the present practical innovation. Fig. shows the structural drawing of the suspended image system of this practical innovation. Fig. shows the exploding structural drawing of the suspended image system of the present practical innovation.
[0012] In the drawings: 1, plug-in imaging system; 101, lower drive shaft; 102, resistance O-ring; 103, protective tube; 104, sealing cooler end piece; 105, main control module; 106, base; 107, adjustable lens; 108, battery container I; 109, battery holder I; 110, battery I; 111, metal hose I; 112, battery container cover I; 2, suspended imaging system; 201, pipe wrench; 202, rivet; 203, connecting plate; 204, end cover; 205, battery holder II; 206, battery container II; 207, hand nut; 208, spring; 209, screw; 210, mirror body; 211, battery II; 212, metal hose II; 213, Battery compartment cover II. Description of the embodiments
[0013] The technical solution of the present practical innovation is described clearly and completely below with reference to the accompanying drawings of the embodiments. It is clear that the described embodiments are only a part of the embodiments of the present practical innovation, and not all of them. All other embodiments that a person of ordinary skill in the art can obtain without creative effort based on the embodiments of the present practical innovation fall within the scope of the present practical innovation.
[0014] As in the Fig.As shown, the present practical innovation provides a sports competition and entertainment shooting training intelligent imaging system comprising a plug-in imaging system 1 and a suspended imaging system 2. The plug-in imaging system 1 includes a lower drive shaft 101, one end of which is connected to a protective tube 103, one end of which is connected to a sealing cooler end piece 104, one end of which is connected to a base 106, one end of which is connected to an adjustable lens 107, and the interior of which has a main control module 105. The suspended imaging system 2 includes a pipe wrench 201, the lower part of which is connected to a connecting plate 203, in one end of which a hole is connected with a rivet 202.Below the connecting plate 203 there is a mirror body 210, the upper part of which is connected to a cardan disk with a screw 209, the outer part of which is connected to a spring 208 and the upper screw connection of which is connected to a hand nut 207.
[0015] Specifically, the outer surfaces of the lower drive shaft 101 and the sealing radiator end piece 104 are both provided with a resistance O-ring 102, and the base 106 has a battery container I 108 at the lower end, the inner chamber of which has a battery holder I 109 in the gimbal.
[0016] Specifically, the inner chamber of the battery container I 108 has a metal tube I 111, the inner chamber of which has a battery I 110, one end of which is connected to a battery container lid I 112, and the battery holder I 109 is located at the other end of the battery I 110 away from the battery container lid I 112.
[0017] Specifically, the outer side of the screw 209 passes through the hole at the other end of the connecting plate 203 away from the rivet 202, the hand nut 207 is located above the connecting plate 203, the rivet 202 and the screw 209 are located on both sides of the pipe wrench 201, and the end of the mirror body 210 is connected to an end cap 204.
[0018] Specifically, the lower part of the mirror body 210 has a battery container II 206, the inner chamber of which has a battery holder II 205 in the gimbal disk, and the inner chamber of which has a metal hose II 212.
[0019] Specifically, the inner chamber of the metal tube II 212 has a battery II 211, one end of which is connected to a battery container lid II 213, and the battery holder II 205 is located at the other end of the battery II 211 away from the battery container lid II 213.
[0020] Working principle of the above examples: The intelligent imaging system is equipped with pluggable and suspended imaging systems. Both systems use an adjustable lens with a focal length of 2m to 10m, which can clearly detect targets within a specific range through hardware and software focus adjustment technology. The main control module 105 of pluggable imaging system 1 and the control module in the mirror body 210 of suspended imaging system 2 use an SSC30KQ main control chip, an IMX335 CMOS light sensor, a DA215S gyro sensor, and a W25Q128JVPIQ memory. The sealing radiator end block 104 of pluggable imaging system 1 uses copper materials and a sealing structure with thermally conductive adhesive, ensuring tight protection and cooling of the main control system. The protective tube 103 is used to prevent vibration and collision and is made of PTFE materials, which can prevent hard collisions in the piping of the mounted equipment.The resistance O-ring 102 is mounted on the equipment's piping to prevent sliding. The lower drive shaft 101 can precisely combine the protective tube 103 and the resistance O-ring 102 and also has the function of magnifying the change data.
[0021] In the suspended imaging system 2, the connecting plate 203 is held in place by the rivet 202 and can rotate the pipe wrench 201 around the rivet 202 as a pivot point. When the hand nut 207 is rotated, it moves in a straight line on the screw 209 and rotates the connecting plate 203 around the rivet 202 as a pivot point to change the angle between the mirror body 210 and the pipe wrench 201, enabling physical target correction for sport air pistols or rifles. The cross brace at the lower end of the screw 209 rests in the gimbal of the mirror body 210 and can move relatively to ensure that the hand nut 207 does not jam. The battery holder I 109 of the plug-in image system 1 together with the battery container cover I 112 fixes the battery I 110, and the battery holder II 205 of the suspended image system 2 together with the battery container cover II 213 fixes the battery II 211.The battery compartment lids I 112 and II 213 are made of metal and supply the batteries via the metal hoses I 111 and II 212. During operation of the plug-in and suspended imaging systems, the main control board and control software can receive valid external collision information. The collision information activates the battery supply system, and the main control circuit starts the following functions according to the set parameters: data encoding of the laser being emitted to transmit data to the target; and control of the laser emission duration. The main control circuit activates the laser according to the command and completes the transmission.
[0022] It should be noted that in this text, relationship terms such as first, second, etc., are used merely to distinguish one entity or operation from another, without requiring or implying any actual relationship or sequence between those entities or operations. Furthermore, the terms "including," "comprising," or their other variants are not intended to imply exclusive inclusion. Therefore, a process, method, product, or device that includes a number of elements includes not only those elements but also other elements not explicitly listed or elements that are intrinsic to that process, method, product, or device. It should also be noted that the phrase "including a..." does not exclude the possibility that other similar elements may exist in a process, method, product, or device that includes the named element.
[0023] Although the embodiments of the present practical innovation have been illustrated and described, it will be understood by one skilled in the art that these examples may be altered, modified, substituted, and varied in various ways while maintaining the principle and spirit of the present practical innovation. The scope of the present practical innovation is defined by the appended claims and their equivalents.
Claims
[1] A sports competition and entertainment shooting training intelligent image system comprising a plug-in image system (1) and a suspended image system (2), wherein the plug-in image system (1) comprises a lower drive shaft (101), the end of which is connected to a protective tube (103), the end of which is connected to a sealing cooler end piece (104), the end of which is connected to a base (106), the end of which is connected to an adjustable lens (107), the base (106) having a main control module (105) inside it, and the suspended image system (2) comprises a pipe wrench (201), the lower part of which is connected to a connecting plate (203), in one end of which a hole is connected with a rivet (202), wherein under the connecting plate (203) there is a mirror body (210), the upper part of which is connected to a gimbal with a screw (209), the outside of which is connected to a spring (208),whose upper screw connection is connected with a hand nut (207). [2] The sports competition and entertainment shooting training intelligent image system according to claim 1, wherein the outer surfaces of the lower drive shaft (101) and the sealing radiator end piece (104) are both provided with a resistance O-ring (102), and the base (106) has a battery container I (108) at the lower end, the inner chamber of which has a battery holder I (109) in the gimbal. [3] The sports competition and entertainment shooting training intelligent image system according to claim 2, wherein the inner chamber of the battery container I (108) has a metal tube I (111), the inner chamber of which has a battery I (110), one end of which is connected to a battery container lid I (112), and the battery holder I (109) is located at the other end of the battery I (110) remote from the battery container lid I (112). [4] The sports competition and entertainment shooting training intelligent image system according to claim 1, wherein the outer side of the screw (209) passes through the hole at the other end of the connecting plate (203) remote from the rivet (202), the hand nut (207) is located above the connecting plate (203), the rivet (202) and the screw (209) are located on both sides of the pipe wrench (201), and the end of the mirror body (210) is connected to an end cap (204). [5] The sports competition and entertainment shooting training intelligent image system according to claim 1, wherein the lower part of the mirror body (210) is connected to a battery container II (206) whose inner chamber has a battery holder II (205) in the gimbal, whose inner chamber has a metal tube II (212). [6] The sports competition and entertainment shooting training intelligent image system according to claim 5, wherein the inner chamber of the metal tube II (212) has a battery II (211) whose one end is connected to a battery container lid II (213), and the battery holder II (205) is located at the other end of the battery II (211) remote from the battery container lid II (213).