Gait vision driving module device in simulated image target shooting system

By introducing a folding handle, a firing switch, a raised standing plate, and a turning pedal into a simulated target shooting system, the problems of limited interaction and unclear boundary perception in traditional systems have been solved. This has resulted in greater portability and operational stability, and improved the realism and smoothness of the user experience.

CN224262354UActive Publication Date: 2026-05-19XIAN SHANGDAO ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
XIAN SHANGDAO ELECTRONIC TECH CO LTD
Filing Date
2025-08-05
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Traditional simulated target shooting systems have limited user interaction methods, lack immersion and realism, and complex gait movement operations with unclear boundary perception, which negatively impacts the user experience.

Method used

Design a gait vision-driven module device for a simulated image target shooting system. It features a portable folding handle, four direct-fire switches for intuitive direction control, a raised standing plate for sensing boundaries, hinged left and right turn pedals, and a return spring to assist in turning operations.

Benefits of technology

It improves the smoothness and realism of simulated shooting, lowers the barrier to entry, enhances portability and operational stability, and strengthens user engagement and experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a gait vision driving module device in a simulated image target shooting system, which comprises a shell and a standing plate arranged on the shell, and is characterized in that the standing plate is sequentially provided with a left-turn foot-treading trigger switch and a right-turn foot-treading trigger switch. The folding handle on the side surface of the shell is convenient for a user to carry the mobile device at will; the four correlation switches at the four corners of the top of the shell are intuitively designed, so that a user can simply and easily control the advancing direction through foot shielding; the standing plate is embedded in the shell, and the periphery of the standing plate protrudes, so that a user can clearly perceive the boundary of the device during shooting movement; the left turn-around pedal and the right turn-around pedal are installed through a hinge, the left turn-around foot-stepping trigger switch and the right turn-around foot-stepping trigger switch are conveniently stepped to achieve turn-around, reset springs on the two sides of the left turn-around pedal and the right turn-around pedal can assist the pedals to reset rapidly, it is guaranteed that turn-around operation is stable and reliable, and the smoothness and the reality sense of simulated shooting are improved.
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Description

Technical Field

[0001] This utility model relates to the field of simulated image target shooting technology, and in particular to a gait vision driving module device in a simulated image target shooting system. Background Technology

[0002] In traditional simulated target shooting systems, the interaction between users and the virtual shooting scene is relatively simple and limited. Early common interaction methods mainly relied on devices such as mice, keyboards, or simple game controllers. Although these methods enabled users to control the shooting direction and some movements to a certain extent, they could not realistically simulate the user's actual gait and body posture changes during the shooting process, resulting in a lack of immersion and realism when users experience simulated shooting.

[0003] With the continuous advancement of technology, in order to enhance the realism and fun of simulated shooting, some systems have begun to incorporate motion-sensing devices, such as motion controllers based on cameras or accelerometers. However, these devices have some significant shortcomings. For example, camera-based motion-sensing devices are highly dependent on ambient light and shooting angles, and are easily affected by external factors, leading to inaccurate motion recognition; while accelerometer-based motion-sensing devices may experience sensor drift after prolonged use, affecting the accuracy of motion capture.

[0004] Furthermore, existing simulated target shooting systems lack intuitive and convenient operation methods in their user gait interaction design. Users often need to use complex button combinations or specific gestures to perform actions such as moving forward, backward, left, right, and turning, which not only increases the learning curve but also reduces the smoothness of the shooting experience. Moreover, most systems do not provide clear boundary awareness for users; when focused on shooting, users may inadvertently move beyond the device's effective operating range due to body movement, affecting the user experience. Utility Model Content

[0005] The purpose of this invention is to provide a gait vision-driven module device in a simulated image target shooting system. The folding handle on the side of the shell allows users to easily carry and move the device. The four shooting switches at the four corners of the top of the shell are intuitively designed, allowing users to easily control the direction of movement by covering their feet. The standing plate is embedded in the shell and protrudes around its edges, allowing users to clearly perceive the boundaries of the device when moving during shooting. The left and right turn pedals are installed via hinges, making it easy to turn by stepping on the left and right turn foot trigger switches. The return springs on both sides of the pedals can help the pedals quickly return to their original position, ensuring stable and reliable turning operations and improving the smoothness and realism of simulated shooting.

[0006] To achieve the above objectives, the main technical solutions adopted by this utility model include:

[0007] A gait vision-driven module device in a simulated image target shooting system includes:

[0008] The outer casing and the standing plate disposed on the outer casing are characterized in that the standing plate is provided with a left-turn foot-trigger switch and a right-turn foot-trigger switch in sequence, and a through-beam switch is provided at each of the four corners of the outer casing.

[0009] The gait vision-driven module device in the above-mentioned simulated image target shooting system has a folding handle on the side of the outer shell.

[0010] In the gait vision-driven module device of the above-mentioned simulated image target shooting system, the bottom of the outer shell is provided with rubber bricks.

[0011] The gait vision drive module device in the above-mentioned simulated image target shooting system includes a control panel on the outer shell that is electrically connected to the left turn foot trigger switch, the right turn foot trigger switch, and the firing switch. The inner shell contains a circuit board that is electrically connected to the control panel, and the circuit board is powered by a battery.

[0012] In the gait vision-driven module device of the above-mentioned simulated image target shooting system, a footprint sticker is provided at the center of the standing plate, and a direction sticker is provided at the edge of the standing plate.

[0013] In the gait vision-driven module device of the above-mentioned simulated image target shooting system, a left-turn pedal is rotatably mounted on the standing plate at the position corresponding to the left-turn foot trigger switch via a hinge, and a right-turn pedal is rotatably mounted on the standing plate at the position corresponding to the right-turn foot trigger switch via a hinge.

[0014] In the gait vision drive module device of the above-mentioned simulated image target shooting system, a return spring is provided on the standing plate at the position corresponding to the left turn pedal and the right turn pedal.

[0015] In the gait vision-driven module device of the above-mentioned simulated image target shooting system, a protective shell for protecting the through-beam switch is provided on the outer shell at the position corresponding to the through-beam switch.

[0016] This utility model has at least the following beneficial effects:

[0017] 1. This utility model realizes a gait vision drive module device in a simulated image target shooting system. The folding handle on the side of the shell makes it easy for users to carry and move the device. The four shooting switches at the four corners of the top of the shell are designed intuitively, allowing users to easily control the forward direction by blocking with their feet. The standing plate is embedded in the shell and protrudes around the edges, allowing users to clearly perceive the boundaries of the device when moving during shooting. The left and right turn pedals are installed by hinges, which facilitates turning by stepping on the left and right turn foot trigger switches. The reset springs on both sides of the pedals can help the pedals to quickly reset, ensuring stable and reliable turning operation and improving the smoothness and realism of simulated shooting.

[0018] 2. Enhanced Portability: This invention provides a novel gait vision-driven module. By providing a folding handle on the side of the casing, users can easily carry and move the module. Whether switching between different indoor locations or taking it outdoors for simulated shooting activities, this is easily achieved, greatly improving the device's flexibility and convenience, and meeting users' needs for using simulated image target shooting systems in different scenarios.

[0019] 3. Simple and easy to operate: This module uses four photoelectric switches located at the four corners of the top of the casing to determine the direction of movement. This design is very intuitive. Users simply need to block the corresponding photoelectric switch with their feet, and the computer will receive the signal and display the corresponding movement effect. No complicated operating procedures or specific instructions need to be learned. Even users who are new to simulated target shooting systems can quickly get started and easily experience the fun of simulated shooting, lowering the barrier to entry and increasing user participation.

[0020] 4. Clear Boundary Perception: The standing plate is embedded in the outer shell, with raised edges around its perimeter. When the user is looking straight ahead to fire, their feet will unconsciously move. In traditional devices, the user may stray outside the effective operating range due to the lack of boundary indicators. However, the raised design of this invention allows the user to clearly perceive the boundaries of the device as their feet move, preventing them from exceeding the range and affecting the shooting experience, thus ensuring the stability and continuity of the user's operation during simulated shooting.

[0021] 5. Convenient and Stable Turning Operation: Both the left and right turn pedals are hinged, making it easier and more natural for users to perform the turning action by pressing the left and right foot trigger switches. Additionally, return springs are installed on both sides of the left and right turn pedals. After the user completes the turning operation, the pedals quickly return to their initial positions under the action of the return springs, preparing for the next operation. This ensures the stability and reliability of the turning operation, enhancing the smoothness and realism of the entire simulated shooting process. Attached Figure Description

[0022] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:

[0023] Figure 1 This is a schematic diagram of the gait vision drive module device in the simulated image target shooting system of this utility model.

[0024] Figure 2 This is a three-dimensional structural diagram of the gait vision-driven module device in the simulated image target shooting system of this utility model.

[0025] Figure 3 This is a structural schematic diagram of the gait vision-driven module device in the simulated image target shooting system of this utility model from another perspective.

[0026] Figure 4 This is a side view of the gait vision drive module device in the simulated image target shooting system of this utility model.

[0027] Figure 5 This is a schematic diagram of the rear structure of the gait vision drive module device in the simulated image target shooting system of this utility model.

[0028] Explanation of icon numbers:

[0029] 1. Outer casing; 2. Standing plate; 3. Left turn foot-operated trigger switch; 4. Right turn foot-operated trigger switch; 5. Through-beam switch;

[0030] 101. Folding handle;

[0031] 102. Control panel; 1021. Circuit board; 1022. Battery;

[0032] 103. Rubber bricks;

[0033] 201. Footprint stickers; 202. Directional stickers;

[0034] 301. Left turn pedal; 401. Right turn pedal;

[0035] 3011, return spring; 501, through-beam protective housing. Detailed Implementation

[0036] The following will describe in detail the implementation of this application with reference to the accompanying drawings and embodiments, so that the implementation process of how this application uses technical means to solve technical problems and achieve technical effects can be fully understood and implemented accordingly.

[0037] Please refer to Figures 1 to 5 As shown, an embodiment of the present invention provides a gait vision driving module device in a simulated image target shooting system, comprising: a housing 1 and a standing plate 2 disposed on the housing 1, wherein a left turn foot trigger switch 3 and a right turn foot trigger switch 4 are disposed sequentially on the standing plate 2, and a shooting switch 5 is disposed at each of the four corners of the housing 1.

[0038] By adopting the above technical solutions, the folding handle 101 on the side of the outer shell 1 allows users to easily carry and move the device; the four shooting switches 5 at the four corners of the top of the outer shell 1 are designed intuitively, allowing users to easily control the direction of movement by covering their feet; the standing plate 2 is embedded in the outer shell 1 and protrudes around its edges, allowing users to clearly perceive the boundaries of the device when shooting and moving; the left turn pedal 301 and the right turn pedal 401 are installed by hinges, making it convenient to step on the left turn foot trigger switch 3 and the right turn foot trigger switch 4 to turn, and the return springs 3011 on both sides of the pedals can help the pedals to quickly return to their original positions, ensuring stable and reliable turning operation and improving the smoothness and realism of simulated shooting.

[0039] To facilitate easy portability and movement of the entire module device by users, in this embodiment, a folding handle 101 is provided on the side of the outer casing 1. The folding handle 101 can be folded up when not in use, without taking up extra space, and can be unfolded for easy lifting of the device when in use, greatly improving the portability of the device.

[0040] To enhance the stability of the device during placement and reduce the impact of vibration and sliding, in this embodiment, a rubber brick 103 is provided at the bottom of the outer casing 1. The rubber brick 103 has good anti-slip and shock absorption properties, which can effectively prevent the device from moving or shaking due to external forces during use, ensuring the stable operation of the device.

[0041] To achieve centralized control and management of the left-turn foot-operated trigger switch 3, the right-turn foot-operated trigger switch 4, and the through-beam switch 5, in this embodiment: a control panel 102 electrically connected to the left-turn foot-operated trigger switch 3, the right-turn foot-operated trigger switch 4, and the through-beam switch 5 is also provided on the outer casing 1. A circuit board 1021 electrically connected to the control panel 102 is provided inside the outer casing 1, and the circuit board 1021 is powered by a storage battery 1022. As the core control component, the control panel 102 receives signals from each switch and converts them into corresponding control commands. The circuit board 1021 processes these commands and implements the corresponding functions. The storage battery 1022 provides stable power support for the entire system, enabling the device to operate normally without an external power source, thus improving the device's flexibility.

[0042] To provide users with clear standing position guidance and help them quickly and accurately find a suitable standing point for simulated shooting operations, in this embodiment: a footprint sticker 201 is provided at the center of the standing board 2, and directional stickers 202 are provided at the edges of the standing board 2. The footprint sticker 201 allows users to intuitively know where their feet should be placed, while the directional stickers 202 clearly indicate various directions, making it easier for users to accurately judge directions when performing operations such as moving forward, backward, left, and right, thus improving the accuracy and convenience of operation.

[0043] To facilitate users triggering the left and right turn functions via foot pedaling, in this embodiment: a left turn pedal 301 is hingedly mounted on the standing plate 2 at the position corresponding to the left turn foot trigger switch 3, and a right turn pedal 401 is hingedly mounted on the standing plate 2 at the position corresponding to the right turn foot trigger switch 4. The hinged mounting allows the pedals to rotate freely; users only need to lightly press the pedal with their foot to trigger the corresponding turn switch, achieving a more natural and smooth operation.

[0044] To ensure that the left turn pedal 301 and right turn pedal 401 can quickly return to their initial positions after being pressed for the next operation, in this embodiment, a return spring 3011 is provided on the standing plate 2 at the positions corresponding to the left turn pedal 301 and right turn pedal 401. The return spring 3011 elastically deforms when the pedal is pressed, and when the user releases their foot, the spring force will automatically reset the pedal, ensuring the continuity and stability of the turning operation.

[0045] To protect the photoelectric switch 5 from impacts and damage from external objects and extend its service life, in this embodiment, a photoelectric protective shell 501 is provided on the outer casing 1 at the position corresponding to the photoelectric switch 5 to protect the photoelectric switch 5. The photoelectric protective shell 501 can effectively prevent dust, water droplets and other impurities from entering the inside of the photoelectric switch 5, and at the same time prevent the user from accidentally touching the photoelectric switch 5 during use, causing damage to the switch or malfunction, thus improving the reliability and stability of the device.

[0046] The working principle of this utility model is as follows: The user stands on the footprint sticker 201 at the center of the standing board 2, and the directions are indicated by the direction stickers 202 at the edge of the standing board 2. When the user wants to move forward, they extend their feet to block the photoelectric switch 5 at the top of the outer casing 1 corresponding to the front position. After receiving the signal, the photoelectric switch 5 transmits it to the control panel 102. The control panel 102 transmits the signal to the circuit board 1021. After processing, the circuit board 1021 sends an instruction to the computer. After receiving the instruction, the computer makes the internal screen show the effect of moving forward, and projects it onto the screen through a projector. Similarly, when the user moves to the left, right, or backward, they only need to block the photoelectric switch 5 in the corresponding direction to achieve the movement effect in that direction. If the user needs to turn around, they step on the left turn pedal 301 or the right turn pedal 401, triggering the left turn foot trigger switch 3 or the right turn foot trigger switch 4. After the signal is processed by the control panel 102 and the circuit board 1021, the computer controls the screen to achieve the turning effect. When the user releases the left turn pedal 301 or the right turn pedal 401, the return spring 3011 will automatically reset the pedal for the next operation. Throughout the process, the through-beam protective housing 501 protects the through-beam switch 5 from damage, the rubber brick 103 ensures the device is placed stably, and the battery 1022 provides power to components such as the circuit board 1021, ensuring the normal operation of the device.

[0047] The foregoing description illustrates and describes several preferred embodiments of the present invention. However, as previously stated, it should be understood that the present invention is not limited to the forms disclosed herein and should not be construed as excluding other embodiments. It can be used in various other combinations, modifications, and environments, and can be altered within the scope of the inventive concept described herein through the foregoing teachings or techniques or knowledge in related fields. Any modifications and variations made by those skilled in the art that do not depart from the spirit and scope of the present invention should be within the protection scope of the appended claims.

Claims

1. A gait vision-driven module device in a simulated image target shooting system, comprising a housing (1) and a standing plate (2) disposed on the housing (1), characterized in that, The standing plate (2) is provided with a left turn foot trigger switch (3) and a right turn foot trigger switch (4) in sequence, and a photoelectric switch (5) is provided at each of the four corners of the outer shell (1).

2. The gait vision-driven module device in the simulated image target shooting system according to claim 1, characterized in that: The outer casing (1) is provided with a folding handle (101) on its side.

3. The gait vision-driven module device in the simulated image target shooting system according to claim 2, characterized in that: The bottom of the outer shell (1) is provided with rubber bricks (103).

4. The gait vision-driven module device in the simulated image target shooting system according to claim 3, characterized in that: The outer casing (1) is also provided with a control panel (102) electrically connected to the left turn foot trigger switch (3), the right turn foot trigger switch (4), and the through-beam switch (5). The interior of the outer casing (1) is provided with a circuit board (1021) electrically connected to the control panel (102), and the circuit board (1021) is powered by a battery (1022).

5. The gait vision-driven module device in the simulated image target shooting system according to claim 4, characterized in that: A footprint sticker (201) is provided at the center of the standing board (2), and a direction sticker (202) is provided at the edge of the standing board (2).

6. The gait vision-driven module device in the simulated image target shooting system according to claim 5, characterized in that: A left-turn pedal (301) is mounted on the standing plate (2) at the position corresponding to the left-turn foot trigger switch (3) via a hinge, and a right-turn pedal (401) is mounted on the standing plate (2) at the position corresponding to the right-turn foot trigger switch (4) via a hinge.

7. The gait vision-driven module device in the simulated image target shooting system according to claim 6, characterized in that: A return spring (3011) is provided on the standing plate (2) at the position corresponding to the left turning pedal (301) and the right turning pedal (401).

8. The gait vision-driven module device in the simulated image target shooting system according to claim 7, characterized in that: A protective shell (501) for protecting the photoelectric switch (5) is provided on the outer casing (1) at the position corresponding to the photoelectric switch (5).