Infrared guidance interactive experience device

The infrared-guided interactive experience device, driven by a specific color-tracking camera and a microwave sensor, solves the problem of accurate tracking of infrared sensing devices in science museums, realizes a realistic simulation of infrared-guided weapons, and enhances the interactive experience.

CN223728370UActive Publication Date: 2025-12-26BEIJING SIDUOER EDUCATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423197487.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-12-26
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

In science museums, infrared sensing devices struggle to accurately track and lock onto predetermined targets in complex infrared environments, making it impossible to effectively demonstrate the true operational status of infrared-guided weapons and impacting the effectiveness of science education.

Method used

The infrared-guided interactive experience device consists of a specific color tracking camera, a microwave sensor, and a servo controller. The microwave sensor activates a specific color illumination lamp, the camera captures data from a red target, and the servo controller drives a two-axis gimbal to move a missile model to track and lock onto the target, achieving precise tracking.

Benefits of technology

Achieving close tracking of the missile model to the target in a complex environment enhances the realism and fun of the interactive experience, while ensuring the accuracy and stability of the display.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an infrared guidance interactive experience device, which comprises a shell, an infrared guidance missile model, a steering engine controller, a power supply and a microwave inductor, the top surface of the shell is an open end, a mounting cavity is arranged in the shell, a two-axis holder is arranged in the mounting cavity, a specific color tracking camera is fixedly arranged on a steering engine of the two-axis holder, and the infrared guidance missile model is arranged in the specific color tracking camera. The shell is provided with a light transmitting part matched with the specific color tracking camera, and the outer surface of the shell is further provided with a microwave sensor and a specific color irradiation lamp; the infrared guided missile model is arranged above the shell and is fixedly connected with a steering engine of the two-axis holder through a connecting rod extending into the shell from the top surface of the shell; the steering engine controller is electrically connected with the specific color tracking camera and the two-axis holder. The infrared guidance interactive experience device can overcome environmental interference, accurately simulate a tracking and locking function of an infrared guidance weapon, and enable audiences to feel the actual working state of an infrared guidance missile through a visual demonstration effect.
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Description

Technical Field

[0001] This utility model relates to the technical field of equipment for science and technology museums and popular science education bases, specifically to an infrared-guided interactive experience device. Background Technology

[0002] In science and technology museums and popular science education bases, defense technology exhibitions are an important part of enhancing the public's scientific literacy and national defense awareness. Among them, the demonstration of the operating principles of infrared-guided weapons has attracted much attention, and its demonstration of tracking and locking onto targets has extremely high educational value for the public to gain a deeper understanding of military technology.

[0003] However, it currently faces severe technical challenges. While infrared sensing technology has matured and is widely used in numerous civilian and industrial fields, it struggles to function effectively in the unique environment of science museums. Science museums experience high visitor traffic and frequent activity, resulting in extremely complex infrared sources, filled with infrared signals emitted by people and various devices. In such a complex infrared environment, traditional infrared sensing-based devices are virtually unable to achieve precise tracking and locking of predetermined targets. Because the influence of interfering infrared sources cannot be effectively eliminated, it is impossible to directly present the actual operational state of infrared-guided weapons tracking and locking targets, severely hindering the intuitive demonstration and educational dissemination of the principles and characteristics of infrared-guided weapons in science museums. Utility Model Content

[0004] In view of this, this utility model proposes an infrared guidance interactive experience device that can overcome environmental interference and accurately simulate the tracking and locking function of infrared guided weapons. Through intuitive demonstration effects, the audience can experience the actual working state of infrared guided missiles and understand the application of modern technology in weaponry through interesting interactive experiences.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] An infrared-guided interactive experience device includes: a housing with an open top surface, a mounting cavity inside the housing, a two-axis gimbal inside the mounting cavity, a specific color tracking camera fixedly mounted on the servo motor of the two-axis gimbal, a light-transmitting portion cooperating with the specific color tracking camera, and a specific color illumination lamp mounted on the outer surface of the housing; an infrared-guided missile model positioned above the housing and fixedly connected to the servo motor of the two-axis gimbal via a connecting rod extending from the top surface of the housing into the housing; a servo motor controller electrically connected to the specific color tracking camera and the two-axis gimbal; a power supply electrically connected to the two-axis gimbal, the specific color tracking camera, and the servo motor controller; and a microwave sensor mounted on the outer surface of the housing and electrically connected to the power supply and the specific color illumination lamp.

[0007] Optionally, the shell comprises a base and a transparent cover, the base is in a frustum structure, the transparent cover is arranged on the top of the base, and the two-axis holder, the power supply and the steering controller are all mounted on the top surface of the base and located in the transparent cover.

[0008] Optionally, the shell further comprises an isolation ring cover arranged on the outside of the base and coaxially arranged with the base.

[0009] Optionally, the microwave sensor is a 220V time-delay light-sensitive adjustable 5.8g microwave intelligent sensor.

[0010] Optionally, the specific color tracking camera is an adjustable distance red tracking camera.

[0011] Optionally, the specific color irradiation lamp is an 18w LED red enhanced spotlight.

[0012] Optionally, the shell further comprises an experience area ground sticker arranged in the irradiation range of the specific color irradiation lamp.

[0013] The present application has the following beneficial effects:

[0014] The infrared guidance interactive experience device of the present application has the following beneficial effects: when the experimenter holds the red target card into the irradiation area of the specific color irradiation lamp, the microwave sensor is connected to the power supply, the specific color irradiation lamp is automatically turned on, at the same time, the specific color tracking camera is started to work synchronously, the color information in the experience area is collected, the color data of the red target card is captured, and the data is transmitted to the steering controller, after receiving the data from the specific color tracking camera, the steering controller sends a control instruction to the two-axis holder, the two-axis holder drives the steering motor to rotate according to the received instruction, and drives the infrared guidance missile model to track and lock the red target card, the whole process is carried out in a specific area, the missile model can always closely follow the target, the tracking error is extremely small, and the authenticity and interestingness of the interactive experience are effectively improved. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 is a perspective view of the infrared guidance interactive experience device of the present application;

[0016] Figure 2 is a side view (without a transparent cover) of Figure 1 ;

[0017] Figure 3 is a top view (without a transparent cover) of Figure 1 ;

[0018] REFERENCE SIGNS:

[0019] Base 10, transparent cover 11, isolation ring cover 12, two-axis holder 20, rudder machine 21, specific color tracking camera 30, microwave sensor 40, specific color irradiation lamp 50, infrared guidance missile model 60, connecting rod 61, rudder machine controller 70, power supply 80, experience area ground paste 90. DETAILED DESCRIPTION

[0020] The technical scheme of the utility model will be described in detail below with reference to the drawings and specific embodiments. Identical parts are denoted by identical reference numerals.

[0021] Please refer to Figures 1 to 3 The utility model discloses an infrared guidance interactive experience device, including shell, two -axis holder 20, specific color tracking camera 30, microwave sensor 40, specific color irradiation lamp 50, infrared guidance missile model 60, rudder machine controller 70 and power supply 80.

[0022] As Figure 1 Indicated, the top surface of shell is open, and the inside of shell is equipped with installation cavity, and two -axis holder 20 is installed in installation cavity, and the side of rudder machine 21 of two -axis holder 20 is fixed with specific color tracking camera 30, and shell has the light transmission part that cooperates with specific color tracking camera 30, and the outer surface of shell is also equipped with microwave sensor 40 and specific color irradiation lamp 50, and infrared guidance missile model 60 is located at the top of shell, and is fixedly connected with the rudder machine 21 of two -axis holder 20 through the connecting rod 61 that enters into the shell from the top surface of shell, and rudder machine controller 70 is electrically connected with specific color tracking camera 30 and two -axis holder 20 respectively, and power supply 80 is arranged in installation cavity, and is electrically connected with two -axis holder 20, rudder machine controller 70 and specific color tracking camera 30 respectively, and microwave sensor 40 is electrically connected with power supply 80 and specific color irradiation lamp 50 respectively

[0023] In the embodiment of the utility model, power supply 80 is 12V charging power supply, and power supply 80 supplies power for two -axis holder 20, rudder machine controller 70 and specific color tracking camera 30.

[0024] In the embodiment of the utility model, infrared guidance missile model 60 is a missile model made of plastic material, and the total mass is within 300g.

[0025] In the embodiment of the utility model, microwave sensor 40 is 220V time-delay light-sensitive adjustable 5.8g microwave intelligent sensor, and microwave sensor 40 is connected with 220V alternating current, and after microwave sensor 40 is connected, specific color irradiation lamp 50 is lighted, and power supply 80 is charged at the same time.

[0026] The specific color tracking camera 30 is a zoomable red color tracking camera, which can flexibly and accurately set a suitable shooting range according to the actual size of the experience area and the distance between the target object and the device.

[0027] In the embodiment of the utility model, two axis holder 20 is two metal rudders and metal support, can realize horizontal rotation, vertical rotation movement, rudder controller 70 is two axis automatic tracking holder controller, rudder controller 70 and two axis holder 20 are all external purchases.

[0028] The utility model discloses a kind of infrared guidance interactive experience devices, and use principle is as follows: when experimenter handholds red target card and enters the irradiation area of specific color irradiation lamp 50, microwave inductor 40 is connected, specific color irradiation lamp 50 is automatically lighted, at the same time, specific color tracking camera 30 is synchronously started work, color information in experience area is collected, red target card color data is captured, and these data are transmitted to rudder controller 70, after receiving the data from specific color tracking camera 30, rudder controller 70 sends control instruction to two axis holder 20, and two axis holder 20 is rotated by driving rudder 21 according to received instruction, drives infrared guidance missile model 60 to track and lock red target card, the whole process is carried out in specific area, missile model can always closely follow target, and tracking error is extremely small, effectively improve the authenticity and interestingness of interactive experience.

[0029] In the embodiment of the utility model, the shell includes base 10 and transparent cover 11, and the base 10 and the transparent cover 11 are both in the structure of a truncated cone, the base 10 is welded from a 1.2mm-thick galvanized steel plate, is sprayed with black fluorocarbon paint, and forms an opaque structure, thereby providing a stable support foundation for the entire device, the transparent cover 11 is arranged on the top of the base 10, is made of 10mm-thick transparent acrylic material, and is externally attached with a single-lens reflex film, the two-axis holder 20, the power supply 80 and the rudder controller 70 are all arranged on the top surface of the base 10 and located in the transparent cover 11, the transparent cover 11 can provide a clear field of view for the specific color tracking camera 30, so that the specific color tracking camera 30 can accurately capture the color information of the red target card, and the single-lens reflex film further optimizes the transmission characteristics of light, effectively reduces the adverse effects of reflected light on camera imaging, and makes it easier for the specific color tracking camera 30 to obtain color information.

[0030] In the embodiment of the utility model, still include isolation ring cover 12, isolation ring cover 12 is located the outside of base 10 and with base 10 coaxial arrangement, isolation ring cover 12 and base 10 are integral structure, also use 1.2mm thick galvanized steel sheet welding processing, outside spray light black fluorocarbon paint, isolation ring cover 12 can effectively prevent visitor accidental approach base 10 and transparent shield 11, avoid because human touch or collision and cause damage to internal device, effectively guarantee the normal operation and long-term stability of device.

[0031] In the embodiment of the utility model, still include experience area ground sticker 90, experience area ground sticker 90 sets up in the irradiation range of specific color irradiation lamp 50, experience area ground sticker 90 explicitly limits the range boundary of experience area, can effectively reduce the interference of outside irrelevant personnel or object into the area to the experience process, avoid because external interference factor is too much and leads to the deviation or unstable situation of device tracking target occurs, to ensure that the experimenter can obtain more accurate, smooth, high-quality interactive experience effect.

[0032] The above, in conjunction with specific embodiments, the technical scheme of the utility model is introduced in detail, the specific embodiments described are used to help understanding the idea of the utility model. The deduction and deformation of the person skilled in the art on the basis of the specific embodiments of the utility model also belong to the protection scope of the utility model.

Claims

1. An infrared guidance interactive experience device, characterized in that, The utility model relates to a two-axis gimbal shooting system, which comprises: a shell, the top surface of the shell is an open end, the shell is internally provided with a mounting cavity, the mounting cavity is internally provided with a two-axis gimbal (20), a specific color tracking camera (30) is fixedly arranged on a rudder machine (21) of the two-axis gimbal (20), the shell has a light transmission part matched with the specific color tracking camera (30), a specific color irradiation lamp (50) is arranged on the outer surface of the shell; an infrared guided missile model (60) is arranged above the shell and is fixedly connected with the rudder machine (21) of the two-axis gimbal (20) through a connecting rod (61) extending into the shell from the top surface of the shell; a rudder machine controller (70) is electrically connected with the specific color tracking camera (30) and the two-axis gimbal (20) respectively; a power supply (80) is electrically connected with the two-axis gimbal (20), the rudder machine controller (70) and the specific color tracking camera (30) respectively; and a microwave inductor (40) is arranged on the outer surface of the shell and is electrically connected with the power supply (80) and the specific color irradiation lamp (50) respectively.

2. The infrared guidance interactive experience device of claim 1, wherein, The shell comprises a base (10) and a transparent cover (11), the base (10) is in a frustum structure, the transparent cover (11) is arranged on the top of the base (10), the two-axis gimbal (20), the power supply (80) and the rudder machine controller (70) are all mounted on the top surface of the base (10) and are located in the transparent cover (11).

3. The infrared guidance interactive experience device of claim 2, wherein, Further comprising an isolation ring cover (12), the isolation ring cover (12) is arranged on the outer side of the base (10) and is coaxially arranged with the base (10).

4. The infrared guidance interactive experience device of claim 1, wherein, The microwave inductor (40) is a 220V time-delay light-sensitive adjustable 5.8g microwave intelligent inductor.

5. The infrared guidance interactive experience device of claim 1, wherein, The specific color tracking camera (30) is an adjustable distance red tracking camera.

6. The infrared guidance interactive experience device of claim 1, wherein, The specific color irradiation lamp (50) is an 18w LED red enhanced spotlight.

7. The infrared guidance interactive experience device of claim 1, wherein, Further comprising an experience area floor sticker (90), the experience area floor sticker (90) is arranged in the irradiation range of the specific color irradiation lamp (50).