Laser aiming trajectory tracking training instrument in digital unstable state

By using a digital laser aiming trajectory tracking training instrument under unstable conditions, the athlete's gun movement trajectory and posture can be monitored and fed back in real time. This solves the problem that existing equipment is difficult to effectively monitor under unstable conditions, and improves the quality of shooting training and the athlete's ability to cope with complex environments.

CN120926819APending Publication Date: 2025-11-11CHINA INST OF SPORT SCI
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Patent Information

Application Number
CN202510998280.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-21
Publication Date
2025-11-11

AI Technical Summary

Technical Problem

Existing sports training equipment struggles to effectively monitor and provide real-time feedback on athletes' movement trajectories and postures in unstable conditions, especially in shooting sports. This makes it difficult to guarantee training quality, and the training environment lacks sufficient dynamic balance control, affecting athletes' performance in competitions.

Method used

The training instrument employs a digital, unstable laser aiming trajectory tracking system, which includes a training platform, a simulated firearm, a timer, a wireless transmitter, a laser aiming module, a high-definition camera module, a data processing module, and a wireless data transmission module. It collects the athlete's gun movement trajectory and posture information in real time through an unstable base and a high-definition camera, generates real-time feedback data, and manages and guides the data through a remote server.

Benefits of technology

It enables precise monitoring and real-time feedback of athletes in unstable states, improves training effectiveness, enhances athletes' ability to cope with complex environments and core stability, provides an efficient and safe training environment, and adapts to the specificity and effectiveness of different training needs.

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Abstract

The invention discloses a laser aiming trajectory tracking training instrument in a digital unstable state, which belongs to the technical field of physical training equipment and comprises a training platform, a simulation gun, a timer, a wireless transmitter, a laser aiming module, a high-definition camera module, a data processing module and a wireless data transmission module. The training platform adopts an unstable base with a dynamic adjustment mechanism, an unstable state is provided in the form of a balance ball or a swing structure, and a laser is mounted at the top end of the simulation gun; according to the system equipment, an efficient and safe training environment can be provided for athletes, training data can be monitored in real time, and the training effect can be improved through a refined feedback mechanism. A trainee can complete high-precision shooting training in a dynamic and unstable training environment, so that the shooting skill and the capability of coping with a complex environment are effectively improved.
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Description

Technical Field

[0001] This invention belongs to the field of sports training equipment technology, and in particular relates to a training instrument for tracking laser aiming trajectory under digital unstable conditions. Background Technology

[0002] Existing sports training equipment often lacks dynamic trajectory tracking capabilities during training, especially for monitoring athletes' movements in unstable states, where effective solutions are scarce. Traditional sports trajectory training equipment largely relies on mechanical paths or visual feedback, making it difficult for athletes to track their performance in real time and accurately, and lacking refined data support and incentive mechanisms. Therefore, problems such as difficulty in quantifying training effects and delayed feedback exist.

[0003] In shooting sports, athletes need to train for precise aiming and shooting under unstable conditions. Existing training methods struggle to effectively monitor and provide feedback on the athlete's posture, rifle trajectory, and target position at the moment of firing, making it difficult to guarantee training quality. Furthermore, because the training environment lacks sufficient dynamic balance control, athletes struggle to respond quickly to various uncertainties during competition, thus affecting their performance.

[0004] With the development of smart technology and the Internet of Things in recent years, modern sports training systems have gradually moved towards intelligence and data-driven approaches. The need for real-time monitoring and feedback of training data has become increasingly urgent. Many training devices are beginning to combine sensor technology, machine vision, and artificial intelligence algorithms to accurately analyze athletes' movements. However, current shooting training equipment still lacks effective real-time tracking of athletes' trajectories and postures in unstable states. Existing intelligent training devices can typically record basic motion data, but they struggle to achieve accurate monitoring and real-time feedback in rapidly changing dynamic environments. To address this issue, a digital laser aiming trajectory tracking training instrument for unstable states is urgently needed. Summary of the Invention

[0005] The purpose of this invention is to address the lack of effective real-time tracking of athletes' movement trajectories and postures in unstable states in current shooting training equipment. Existing intelligent training devices can typically record basic motion data, but they struggle to achieve accurate monitoring and real-time feedback in rapidly changing dynamic environments. Therefore, this invention proposes a digital laser aiming trajectory tracking training instrument and method for unstable states.

[0006] To achieve the above objectives, the present invention adopts the following technical solution: a digital laser aiming trajectory tracking training instrument under unstable conditions, comprising a training platform, a simulated firearm, a timer, a wireless transmitter, a laser aiming module, a high-definition camera module, a data processing module, and a wireless data transmission module. The training platform adopts an unstable base with a dynamic adjustment mechanism, providing an unstable state in the form of a balance ball or a swinging structure. A laser is installed at the top of the simulated firearm to generate a standard aiming trajectory. A high-definition camera module is installed at the lower end of the simulated firearm to collect the athlete's gun movement trajectory and posture information in real time during training. The data processing module consists of a central processing unit and a data storage unit. The central controller is connected to a height sensor and a laser displacement sensor respectively through a microprocessor input port. A shock-absorbing spring is installed inside the scale tube of the training platform.

[0007] As a further description of the above technical solution: The training platform, with its adjustable spring mechanism installed beneath the base, allows for a degree of swaying that can be adjusted to suit the athlete's skill level, thus providing varying levels of difficulty during training. Trainees performing standing exercises on the platform need to constantly adjust their center of gravity to maintain balance, thereby improving their ability to cope with complex environments and enhancing their core stability.

[0008] As a further description of the above technical solution: The laser can project a visual trajectory for trainees to practice aiming. The simulated gun design matches the real shooting experience. The high-definition camera module is a Shot Kam barrel camera, and the laser point projection enables real-time acquisition of the athlete's gun movement trajectory.

[0009] As a further description of the above technical solution: The data collected by the high-definition camera is transmitted to the processor module via a wireless data transmission module for further analysis.

[0010] As a further description of the above technical solution: The data processing module can process the motion trajectory data collected by the high-definition camera and generate a motion analysis report. Through the display screen, the trainee can see the comparison between the motion trajectory and the standard trajectory, and thus adjust their movements in real time.

[0011] As a further description of the above technical solution: The wireless data transmission module is used to transmit the collected motion data to a remote server in real time. Coaches and researchers can remotely monitor and guide the training process through mobile devices, thereby achieving efficient data management and utilization. The mobile devices are mobile phones or computers.

[0012] As a further description of the above technical solution: The height sensor and laser displacement sensor are used to acquire the trainee's movement trajectory data during training. The timer is used to record the athlete's air time, aiming time, take-off distance, landing distance and other kinematic parameters, and store the data for subsequent analysis. Through the wireless transmitter, the data can be transmitted to mobile devices in real time, which is convenient for coaches and researchers to conduct remote data monitoring and guidance.

[0013] As a further description of the above technical solution: The shock-absorbing springs prevent trainees from damaging the equipment and themselves when they make mistakes.

[0014] As a further description of the above technical solution: The training platform is equipped with counterweights at both ends to reduce the risk of tipping over and improve overall stability.

[0015] This invention also discloses a training method for laser aiming trajectory tracking under digitally unstable conditions, comprising the following steps: S1. The trainee holds a simulated firearm equipped with a laser and a barrel camera, stands on an unstable training platform, and the system generates a standard aiming trajectory through the laser aiming module. S2, a high-definition camera tracks the athlete's gun trajectory and posture in real time, collecting information on deviation during movement and the target position at the moment of firing. S3, the processor module processes and analyzes the collected data, and displays the differences between the athlete's gun-driving trajectory, aiming posture and the standard trajectory through the display device; S4. Based on the analysis results, athletes can adjust their shooting posture and aiming accuracy in real time to gradually meet the standard requirements.

[0016] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are: In this invention, the system includes a real-time monitoring and feedback module. Through laser trajectory tracking and a high-definition camera, it identifies the athlete's rifle movement trajectory and posture information in real time, enabling precise monitoring of the athlete's aiming actions and generating real-time feedback data to help the athlete quickly adjust aiming accuracy. The system also incorporates an unstable training platform, requiring trainees to practice aiming in an unstable state, effectively improving core strength and body stability, thus better coping with the complex environment of competition. Furthermore, the system includes a refined data analysis module, capable of collecting and analyzing kinematic data such as the athlete's rifle movement trajectory, aiming posture, and trajectory characteristics at the moment of firing, providing scientific and technical analysis support to assist coaches and researchers. The system allows for remote guidance from instructors, adapting to varying training needs. The difficulty level of the training platform can be adjusted according to the athlete's skill level, and the laser aiming trajectory can be dynamically adjusted as needed to meet the training requirements at different stages, enhancing the relevance and effectiveness of training. The system also includes a remote data transmission and management module. Through a wireless data transmission module, training data can be transmitted in real-time to a remote server, facilitating data analysis and remote guidance for coaches and researchers. This solves the problem of researchers being unable to conduct on-site observation. In summary, this system provides athletes with an efficient and safe training environment, not only monitoring training data in real-time but also improving training effectiveness through a refined feedback mechanism. Trainees can complete high-precision shooting training in dynamic and unstable training environments, thereby effectively improving their shooting skills and ability to cope with complex environments. Attached Figure Description

[0017] Figure 1 This is a flowchart of a laser aiming trajectory tracking training method under digital unstable conditions. Detailed Implementation

[0018] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0019] Example 1 This invention provides a technical solution: a digital laser aiming trajectory tracking training instrument under unstable conditions, comprising a training platform, a simulated firearm, a timer, a wireless transmitter, a laser aiming module, a high-definition camera module, a data processing module, and a wireless data transmission module. The training platform adopts an unstable base with a dynamic adjustment mechanism, providing an unstable state in the form of a balance ball or a swinging structure. A laser is installed at the top of the simulated firearm to generate a standard aiming trajectory. A high-definition camera module is installed at the lower end of the simulated firearm to collect the athlete's gun movement trajectory and posture information in real time during training. The data processing module consists of a central processing unit and a data storage unit. The central controller is connected to a height sensor and a laser displacement sensor respectively through a microprocessor input port. A shock-absorbing spring is installed inside the scale tube of the training platform.

[0020] The training platform, with its adjustable spring mechanism installed beneath the base, allows for a degree of swaying that can be adjusted to suit the athlete's skill level, thus providing varying levels of difficulty during training. Trainees performing standing exercises on the platform need to constantly adjust their center of gravity to maintain balance, thereby improving their ability to cope with complex environments and enhancing their core stability.

[0021] The laser can project a visual trajectory for trainees to practice aiming. The simulated gun design matches the real shooting experience. The high-definition camera module is a Shot Kam barrel camera, and the laser point projection enables real-time acquisition of the athlete's gun movement trajectory.

[0022] The data collected by the high-definition camera is transmitted to the processor module via a wireless data transmission module for further analysis.

[0023] The data processing module can process the motion trajectory data collected by the high-definition camera and generate a motion analysis report. Through the display screen, the trainee can see the comparison between the motion trajectory and the standard trajectory, and thus adjust their movements in real time.

[0024] The wireless data transmission module is used to transmit the collected motion data to a remote server in real time. Coaches and researchers can remotely monitor and guide the training process through mobile devices, thereby achieving efficient management and utilization of data. The mobile device is a computer.

[0025] The height sensor and laser displacement sensor are used to acquire the trainee's movement trajectory data during training. The timer is used to record the athlete's airtime, aiming time, take-off distance, landing distance, and other kinematic parameters, and stores the data for subsequent analysis. The data can be transmitted to mobile devices in real time via a wireless transmitter, facilitating remote data monitoring and guidance by coaches and researchers. The shock-absorbing springs prevent trainees from damaging the equipment and themselves in case of errors. The training platform is equipped with counterweights at both ends to reduce the risk of tipping over and improve overall stability.

[0026] Please see Figure 1 The present invention also discloses a training method for laser aiming trajectory tracking under digital unstable conditions, comprising the following steps: S1. The trainee holds a simulated firearm equipped with a laser and a barrel camera, stands on an unstable training platform, and the system generates a standard aiming trajectory through the laser aiming module. S2, a high-definition camera tracks the athlete's gun trajectory and posture in real time, collecting information on deviation during movement and the target position at the moment of firing. S3, the processor module processes and analyzes the collected data, and displays the differences between the athlete's gun-driving trajectory, aiming posture and the standard trajectory through the display device; S4. Based on the analysis results, athletes can adjust their shooting posture and aiming accuracy in real time to gradually meet the standard requirements.

[0027] In this embodiment, the system includes a real-time monitoring and feedback module. Through laser trajectory tracking and a high-definition camera, it identifies the athlete's rifle movement trajectory and posture information in real time, enabling precise monitoring of the athlete's aiming actions and generating real-time feedback data to help the athlete quickly adjust aiming accuracy. The system incorporates an unstable training platform, requiring trainees to practice aiming in an unstable state, effectively improving core strength and body stability, thus better coping with the complex environment of competition. A refined data analysis module collects and analyzes kinematic data such as the athlete's rifle movement trajectory, aiming posture, and trajectory characteristics at the moment of firing, providing scientific and technical analysis support to help coaches and researchers provide remote guidance and adapt to different training needs. The difficulty of the training platform can be adjusted according to the athlete's level, and the laser aiming trajectory can also be dynamically adjusted as needed to adapt to different training stages, improving the relevance and effectiveness of training. The system also includes a remote data transmission and management module. Through a wireless data transmission module, training data can be transmitted in real time to a remote server, facilitating data analysis and remote guidance for coaches and researchers, solving the problem of researchers being unable to observe on-site.

[0028] Example 2 This invention provides a technical solution: a digital laser aiming trajectory tracking training instrument under unstable conditions, comprising a training platform, a simulated firearm, a timer, a wireless transmitter, a laser aiming module, a high-definition camera module, a data processing module, and a wireless data transmission module. The training platform adopts an unstable base with a dynamic adjustment mechanism, providing an unstable state in the form of a balance ball or a swinging structure. A laser is installed at the top of the simulated firearm to generate a standard aiming trajectory. A high-definition camera module is installed at the lower end of the simulated firearm to collect the athlete's gun movement trajectory and posture information in real time during training. The data processing module consists of a central processing unit and a data storage unit. The central controller is connected to a height sensor and a laser displacement sensor respectively through a microprocessor input port. A shock-absorbing spring is installed inside the scale tube of the training platform.

[0029] The training platform, with its adjustable spring mechanism installed beneath the base, allows for a degree of swaying that can be adjusted to suit the athlete's skill level, thus providing varying levels of difficulty during training. Trainees performing standing exercises on the platform need to constantly adjust their center of gravity to maintain balance, thereby improving their ability to cope with complex environments and enhancing their core stability.

[0030] The laser can project a visual trajectory for trainees to practice aiming. The simulated gun design matches the real shooting experience. The high-definition camera module is a Shot Kam barrel camera, and the laser point projection enables real-time acquisition of the athlete's gun movement trajectory.

[0031] The data collected by the high-definition camera is transmitted to the processor module via a wireless data transmission module for further analysis.

[0032] The data processing module can process the motion trajectory data collected by the high-definition camera and generate a motion analysis report. Through the display screen, the trainee can see the comparison between the motion trajectory and the standard trajectory, and thus adjust their movements in real time.

[0033] The wireless data transmission module is used to transmit the collected motion data to a remote server in real time. Coaches and researchers can remotely monitor and guide the training process through mobile devices, thereby achieving efficient data management and utilization. The mobile device is a mobile phone.

[0034] The height sensor and laser displacement sensor are used to acquire the trainee's movement trajectory data during training. The timer is used to record the athlete's airtime, aiming time, take-off distance, landing distance, and other kinematic parameters, and stores the data for subsequent analysis. The data can be transmitted to mobile devices in real time via a wireless transmitter, facilitating remote data monitoring and guidance by coaches and researchers. The shock-absorbing springs prevent trainees from damaging the equipment and themselves in case of errors. The training platform is equipped with counterweights at both ends to reduce the risk of tipping over and improve overall stability.

[0035] Please see Figure 1 The present invention also discloses a training method for laser aiming trajectory tracking under digital unstable conditions, comprising the following steps: S1. The trainee holds a simulated firearm equipped with a laser and a barrel camera, stands on an unstable training platform, and the system generates a standard aiming trajectory through the laser aiming module. S2, a high-definition camera tracks the athlete's gun trajectory and posture in real time, collecting information on deviation during movement and the target position at the moment of firing. S3, the processor module processes and analyzes the collected data, and displays the differences between the athlete's gun-driving trajectory, aiming posture and the standard trajectory through the display device; S4. Based on the analysis results, athletes can adjust their shooting posture and aiming accuracy in real time to gradually meet the standard requirements.

[0036] In this embodiment, the system provides athletes with an efficient and safe training environment. It not only monitors training data in real time but also enhances training effectiveness through a refined feedback mechanism. Trainees can complete high-precision shooting training in a dynamic and unstable environment, thereby effectively improving their shooting skills and ability to cope with complex situations.

[0037] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A training instrument for tracking laser aiming trajectory under digital unstable conditions, comprising a training platform, a simulated firearm, a timer, a wireless transmitter, a laser aiming module, a high-definition camera module, a data processing module, and a wireless data transmission module, characterized in that: The training platform employs an unstable base with a dynamic adjustment mechanism, providing an unstable state in the form of a balance ball or a swinging structure. A laser is installed at the top of the simulated gun to generate a standard aiming trajectory. A high-definition camera module is installed at the bottom of the simulated gun to collect the athlete's gun handling trajectory and posture information in real time during training. The data processing module consists of a central processing unit and a data storage unit. The central controller is connected to a height sensor and a laser displacement sensor through a microprocessor input port. Shock-absorbing springs are installed inside the scale tube of the training platform.

2. The training instrument for laser aiming trajectory tracking under digital unstable conditions according to claim 1, characterized in that, The training platform, with its adjustable spring mechanism installed beneath the base, allows for a degree of swaying that can be adjusted to suit the athlete's skill level, thus providing varying levels of difficulty during training. Trainees performing standing exercises on the platform need to constantly adjust their center of gravity to maintain balance, thereby improving their ability to cope with complex environments and enhancing their core stability.

3. The training instrument for laser aiming trajectory tracking under digital unstable conditions according to claim 2, characterized in that, The laser can project a visual trajectory for trainees to practice aiming. The simulated gun design matches the real shooting experience. The high-definition camera module is a Shot Kam barrel camera, and the laser point projection enables real-time acquisition of the athlete's gun movement trajectory.

4. The training instrument for laser aiming trajectory tracking under digital unstable conditions according to claim 3, characterized in that, The data collected by the high-definition camera is transmitted to the processor module via a wireless data transmission module for further analysis.

5. A training instrument for tracking laser aiming trajectory in a digitally unstable state according to claim 4, characterized in that, The data processing module can process the motion trajectory data collected by the high-definition camera and generate a motion analysis report. Through the display screen, the trainee can see the comparison between the motion trajectory and the standard trajectory, and thus adjust their movements in real time.

6. The training instrument for laser aiming trajectory tracking in a digitally unstable state according to claim 5, characterized in that, The wireless data transmission module is used to transmit the collected motion data to a remote server in real time. Coaches and researchers can remotely monitor and guide the training process through mobile devices, thereby achieving efficient data management and utilization. The mobile devices are mobile phones or computers.

7. The training instrument for laser aiming trajectory tracking in a digitally unstable state according to claim 6, characterized in that, The height sensor and laser displacement sensor are used to acquire the trainee's movement trajectory data during training. The timer is used to record the athlete's air time, aiming time, take-off distance, landing distance and other kinematic parameters, and store the data for subsequent analysis. Through the wireless transmitter, the data can be transmitted to mobile devices in real time, which is convenient for coaches and researchers to conduct remote data monitoring and guidance.

8. A training instrument for tracking laser aiming trajectory in a digitally unstable state according to claim 7, characterized in that, The shock-absorbing springs prevent trainees from damaging the equipment and themselves when they make mistakes.

9. A training instrument for tracking laser aiming trajectory in a digitally unstable state according to claim 8, characterized in that, The training platform is equipped with counterweights at both ends to reduce the risk of tipping over and improve overall stability.

10. A training method for laser aiming trajectory tracking under digitally unstable conditions, characterized in that, Includes the following steps: S1. The trainee holds a simulated firearm equipped with a laser and a barrel camera, stands on an unstable training platform, and the system generates a standard aiming trajectory through the laser aiming module. S2, a high-definition camera tracks the athlete's gun trajectory and posture in real time, collecting information on deviation during movement and the target position at the moment of firing. S3, the processor module processes and analyzes the collected data, and displays the differences between the athlete's gun-driving trajectory, aiming posture and the standard trajectory through the display device; S4. Based on the analysis results, athletes can adjust their shooting posture and aiming accuracy in real time to gradually meet the standard requirements.