Wearable backward motion rearview device
By designing wearable inverted sports rearview devices and using smart gimbals and cameras to provide rearview functions, the problem that inverted sportsmen cannot observe the road conditions behind them is solved, and the safety and convenience of sports are improved.
Patent Information
- Application Number
- CN202510075740.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-11
- Publication Date
- 2025-05-23
AI Technical Summary
The road conditions behind you cannot be observed, making it difficult to ensure safety, and there are risks of falling and stumble.
A wearable inverted motion rearview device is designed, including a wearable bracket, smart gimbal, camera, main controller and display. The rear video signal is collected through the camera. After processing by the main controller, real-time visual images are displayed on the display to provide rearview function.
This allows the inverted exercisers to observe the road conditions behind them in real time, avoid physical injuries caused by visual limitations, and improve exercise safety. At the same time, due to the ease and freedom of design, the convenience of exercise is increased.
Smart Images

Figure CN120022577A_ABST
Abstract
Description
[0001] Technical field: The present invention relates to the field of sports equipment, and specifically to a wearable reverse rear-view device.
[0002] Background technology: Walking backwards is a beneficial fitness method. When walking backwards, the body is upright, the chest is raised, and the knees are slightly bent, which can stimulate muscles that are not often active, promote blood circulation, balance the human body, and exercise the spine and back muscles that cannot be fully exercised when walking forward, thereby adjusting the motor function of the spine and limbs and promoting blood circulation. Since walking backwards is an unnatural way of activity, it can also exercise the cerebellum's judgment of direction and coordination function of the human body. However, the most prominent problem faced by walking backwards is that the road conditions behind cannot be observed, so the safety of walking backwards cannot be guaranteed.
[0003] Invention content: The purpose of the present invention is to provide a wearable rear-view device for reverse motion, so that people can observe the road conditions behind through the device when performing reverse motion, thereby avoiding physical injuries caused by visual limitations and solving the problems in the background technology.
[0004] A wearable rear-view device for reverse motion includes: a wearable bracket, an intelligent pan-tilt platform, a camera, a main controller, and a display. The camera is installed on the back of the head or the back of the neck of the wearable bracket through the intelligent pan-tilt platform, the display is installed on the front of the head or the front of the chest of the wearable bracket, and the main controller is installed on the wearable bracket and electrically connected to the camera, the intelligent pan-tilt platform, and the display; the camera collects video signals of the road behind the reverse motion person and converts them into electronic data, and the electronic data is processed by the main controller to present a real-time visual image on the display, providing visual guidance for the reverse motion person;
[0005] Further: wearable brackets are divided into head-mounted and / or body-mounted types;
[0006] Further: the intelligent gimbal is used to connect the wearable bracket and the camera, and the intelligent gimbal receives the signal from the main controller to operate and locate;
[0007] Furthermore: a matching communication protocol is preset between the camera and the main controller, the camera obtains precise viewing angle control through the intelligent pan / tilt, collects clear and stable video signals, and converts the video signals into electronic data for processing by the main controller;
[0008] Furthermore: a matching communication protocol is preset between the main controller and the display, and the electronic data is processed by the main controller to present a real-time visual image on the display.
[0009] Furthermore: the display includes but is not limited to any one of an LCD display, an LED display, an OLED display, and a projector.
[0010] Furthermore: the device can integrate any one or a combination of functions including low-light night vision, wireless mobile communication, GPS positioning, video recording, and emergency call.
[0011] The beneficial effects of the present invention are:
[0012] 1. When walking backwards, people can see the road conditions behind them and avoid falling, stumbling and getting injured;
[0013] 2. Wearable design makes athletes feel relatively relaxed and free;
[0014] 3. The diversified functions provide athletes with multi-faceted protection; Description of the drawings:
[0015] In order to more clearly illustrate the technical solution of this embodiment, the following is a brief introduction to the drawings required for use in this embodiment. It should be understood that the drawings used only illustrate certain embodiments of the present application and should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without creative work.
[0016] Figure 1 It is a schematic diagram of the structure of the head-mounted backward motion rear-view device of the present invention.
[0017] Figure 2 It is a structural schematic diagram of the body-hung reverse motion rear-view device of the present invention.
[0018] Figure numerals: 11 camera; 12 smart gimbal; 13 main controller; 14 wearable bracket; 15 projector; 16 projection screen; 17 display. Specific implementation method:
[0019] Example 1:
[0020] like Figure 1 : This solution is a head-mounted reverse motion rear-view device, including: 11 cameras, 12 intelligent gimbals, 13 main controllers, 14 wearable brackets, 15 projectors, and 16 projection screens.
[0021] It can be understood that the wearable support is head-mounted, and in order to reduce the imbalance of head weight, the display uses a projector, so a projector 15 and a projection screen 16 are shown;
[0022] In this solution, the camera 11 is connected to the smart pan-tilt 12. To balance the front and rear weights, the smart pan-tilt 12 is installed at the back of the head of the wearable bracket 14 through the main controller 13, the projector 15 is installed at the front of the head of the wearable bracket 14, and the projection screen 16 is installed at the front of the wearable bracket 14. The main controller 13 is electrically connected to the camera 11, the smart pan-tilt 12, and the projector 15;
[0023] Further: a matching communication protocol is preset between the camera 11 and the main controller 13, the camera 11 obtains precise viewing angle control through the intelligent pan / tilt 12, collects clear and stable video signals, and converts the video signals into electronic data for processing by the main controller 13;
[0024] Furthermore, the main controller 13 and the projector 15 are preset with matching communication protocols, and the electronic data is processed by the main controller 13 to form a video signal, which is amplified by the projector 15 and presents a real-time visual image on the projection screen 16.
[0025] Preferably: the device integrates a low-light night vision function, so that athletes can exercise outdoors at night.
[0026] Example 2:
[0027] like Figure 2 :This scheme is a body-mounted reverse motion rear-view device, including: 11 cameras, 12 intelligent gimbals, 13 main controllers, 14 wearable brackets, 17 displays;
[0028] In this solution, the camera 11 is installed on the back of the neck of the wearable bracket 1 through the intelligent pan-tilt 12, the display 17 is installed on the chest of the human body, and the main controller 13 is installed on the wearable bracket 14 and is electrically connected to the camera 11, the intelligent pan-tilt 12, and the display 17;
[0029] Further: a matching communication protocol is preset between the camera 11 and the main controller 13, the camera 11 obtains precise viewing angle control through the intelligent pan / tilt 12, collects clear and stable video signals, and converts the video signals into electronic data for processing by the main controller 13;
[0030] Furthermore: the main controller 13 and the display 17 are preset with matching communication protocols, and the electronic data is processed by the main controller 13 to present a real-time visual image on the display.
[0031] Preferably, the device integrates a GPS positioning function so that the family members of the athlete can also know his position when he is exercising.
[0032] It should be pointed out that the technologies listed in the above embodiments are mature technologies and will not be described in detail here.
[0033] Those skilled in the art may combine, modify or make equivalent substitutions for the present invention according to the embodiments, and all technical solutions and improvements thereof that do not depart from the spirit and scope of the present invention should be included in the scope of the claims of the present invention.
Claims
1. A wearable backward motion rear-view device, comprising: A wearable bracket, an intelligent gimbal, a camera, a main controller, and a display, characterized in that: the camera is installed on the back of the head or the back of the neck of the wearable bracket through the intelligent gimbal, the display is installed on the front of the head or the chest of the wearable bracket, the main controller is installed on the wearable bracket, and the main controller is electrically connected to the camera, the intelligent gimbal, and the display; the camera collects and converts the video signal of the road behind the person walking backwards into electronic data, and the electronic data is processed by the main controller to present a real-time visual image on the display, providing visual guidance for the person walking backwards.
2. A wearable backward motion rear-view device as claimed in claim 1, characterized in that: The wearable bracket is divided into a head-mounted type and / or a body-mounted type.
3. A wearable backward motion rear-view device as claimed in claim 1, characterized in that: The smart gimbal is used for connecting the wearable bracket and the camera, and the smart gimbal receives the signal from the main controller to operate and position.
4. A wearable backward motion rear-view device as claimed in claim 1, characterized in that: A matching communication protocol is preset between the camera and the main controller. The camera obtains precise viewing angle control through the intelligent pan-tilt head, collects clear and stable video signals, and converts the video signals into electronic data for processing by the main controller.
5. A wearable backward motion rear-view device as claimed in claim 1, characterized in that: A matching communication protocol is preset between the main controller and the display, and the electronic data is processed by the main controller to present the real-time visual image on the display.
6. A wearable backward motion rear-view device as claimed in claim 1, characterized in that: The display includes but is not limited to any one of an LCD display, an LED display, an OLED display, and a projector.
7. A wearable backward motion rear-view device as claimed in claim 1, characterized in that: This device can integrate any one or a combination of functions including low-light night vision, wireless mobile communication, GPS positioning, Beidou satellite positioning, video recording, and emergency call.