A Method, System, Storage Medium and Electronic Device for Managing Athletes' Running Rhythm Cues

By formulating the best running rhythm plan for athletes and monitoring status information in real time, combining the prompt method of smart wearable devices and prompt screens, the problem of rhythm control and information prompts in running training is solved, and accurate real-time rhythm control and improvement of training results are achieved.

CN119925899BActive Publication Date: 2025-06-10HEBEI UNIV OF ENG
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202510422702.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2025-06-10
Estimated Expiration
2045-04-07

AI Technical Summary

Technical Problem

The prior art is difficult to achieve accurate real-time rhythm control during running training, and traditional information prompts will affect athletes' running posture and attention.

Method used

By formulating the best running rhythm plan for athletes, monitoring running status information in real time, determining the running rhythm prompt plan, and prompting through smart wearable devices and prompt screens, reducing the number of times athletes view the equipment.

Benefits of technology

It realizes athletes' precise rhythm control, reduces the risk of impact on running posture and attention, and improves training effect.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119925899B_ABST
    Figure CN119925899B_ABST
Patent Text Reader

Abstract

The present invention provides a method, system, storage medium and electronic device for managing the running rhythm prompt of athletes, which relates to the technical field of running rhythm prompt management. The method includes: formulating an optimal running rhythm plan for the athlete for the next running training; when the athlete conducts the next running training, monitoring the running state information of the athlete; comparing with the optimal running rhythm plan, and determining a timely running rhythm prompt plan in real time according to the running state information; and executing the timely running rhythm prompt plan for the athlete. It realizes assisting the athlete to perform precise real-time rhythm control. Through the cooperation of the intelligent wearable device and the prompt screen during the running process, timely and effective rhythm prompts are provided for the athlete. As much as possible, the running posture, the fluency of the running pace, the efficiency of the upper limb swing, and the attention are avoided from being affected, and the effect of the athlete's running rhythm control training is greatly improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of running rhythm prompt management, and particularly relates to a method, a system, a storage medium and an electronic device for prompting and managing the running rhythm of athletes. Background Art

[0002] With the continuous development of competitive sports, the training methods and management methods of athletes have gradually shown a diversified trend. Especially in endurance events such as running, how to scientifically and effectively manage the running rhythm of athletes has become one of the key factors in improving training efficiency and optimizing competition performance.

[0003] In the traditional training mode, athletes usually rely on personal experience and the oral guidance of coaches to adjust their running rhythm. Although this method can help athletes achieve training goals to a certain extent, it has great limitations and is difficult to achieve precise real-time rhythm control.

[0004] In addition, there are currently two ways to prompt athletes during the running process: one is to display information through a smart sports watch; the other is to provide voice prompts through smart sports headphones. However, the application scenario of this application is to prompt the real-time running rhythm of athletes, and each of these two methods will bring great disadvantages when used alone. When the former is carried out, since the number of real-time running rhythm prompts is relatively frequent and there is a process of prompting the athlete to reach the running rhythm that should be maintained each time, the athlete needs to often raise the arm and slightly lower the head to check the smart sports watch, which seriously affects the running posture, may also cause the pace to be unsmooth, further reduces the efficiency of the upper limb swing, and may also cause distraction. When the latter is carried out, since the training environment is mostly an open and shared venue for multiple people, environmental noise makes it necessary for the athlete to deliberately listen to the prompt voice in the smart sports headphones, resulting in a strong degree of distraction.

[0005] Therefore, a solution is urgently needed. Summary of the Invention

[0006] One of the purposes of the present invention is to provide a running rhythm prompt management method for athletes, formulate the best running rhythm plan for athletes, compare the best running rhythm plan, determine the running rhythm prompt plan in real time according to the running state information of the monitored athletes, and execute the running rhythm prompt plan for athletes, so as to assist athletes in precise real-time rhythm control. In addition, the system determines the best prompt screen and the corresponding large screen prompt area and the cost of viewing when running from the prompt screen distribution map based on the running track trajectory. When the cost of viewing when running exceeds the cost limit, the running rhythm prompt is given to the athlete through the smart wearable device worn by the user, and when the cost of viewing when running does not exceed the cost limit, the athlete can naturally view the large screen prompt area during the running process, and make a rhythm adjustment quickly under its prompt to complete the prompt target, greatly reducing the number of times the athlete raises his arm and slightly lowers his head to check the smart sports watch, and avoiding the running posture, the fluency of the running pace, the efficiency of the upper limb swing arm and the attention as much as possible. It is particularly suitable for the application scenario of the present application that the number of real-time running rhythm prompts will be more frequent and each prompt has a scene feature of prompting the athlete to reach the process of maintaining the running rhythm, which greatly improves the effect of the athlete's running rhythm control training.

[0007] An embodiment of the present invention provides a method for managing an athlete's running rhythm prompt, comprising:

[0008] Develop the best running rhythm plan for athletes during their next running training;

[0009] When the athlete performs the next running training, the athlete's running status information is monitored;

[0010] Compare the best running rhythm plan and determine the running rhythm prompt plan in real time according to the running status information;

[0011] Implement a running cadence prompting program for athletes.

[0012] Optionally, the step of providing the athlete with a timely running rhythm prompt includes:

[0013] Analyze the timely reminder plan for running rhythm, determine the reminder target and the required reminder time;

[0014] Obtain the running track trajectory of the athlete within the time required for prompting in the future;

[0015] Based on the running track trajectory, determine the best prompt screen and the corresponding large screen prompt area and viewing cost while running from the prompt screen distribution map;

[0016] When the viewing cost during running exceeds the cost limit, guide the athlete to view the smart wearable device worn by the athlete through the smart wearable device worn by the athlete, and guide the athlete to complete the prompt target through the smart wearable device worn by the athlete;

[0017] Otherwise, guide the athlete to view the large-screen prompt area through the smart wearable device worn by the athlete and the best prompt screen, and guide the athlete to complete the prompt target through the best prompt screen.

[0018] Optionally, determining the best prompt screen, the corresponding large-screen prompt area, and the viewing cost during running from the prompt screen distribution map based on the running track trajectory includes:

[0019] Predict the viewing field of the athlete at multiple unit times when running along the running track trajectory;

[0020] Statistical the first screening index of each candidate prompt screen in the prompt screen distribution map; wherein, the first screening index includes: the total number of consecutive unit times that the candidate prompt screen appears in the viewing fields at consecutive unit times;

[0021] Take the candidate prompt screen with the largest first screening index as the best prompt screen;

[0022] Determine multiple unit idle areas from the best prompt screen;

[0023] Statistical the second screening index of each unit idle area; wherein, the second screening index includes: the sum of the minimum movement amounts for the viewing fields at each unit time to move and change to completely view the unit idle area;

[0024] Take the unit idle area with the smallest second screening index as the large-screen prompt area;

[0025] Take the second screening index corresponding to the large-screen prompt area as the viewing cost during running.

[0026] Optionally, guiding the athlete to view the smart wearable device worn by the athlete through the smart wearable device worn by the athlete includes:

[0027] Control the smart wearable device worn by the athlete to perform the first vibration;

[0028] Guiding the athlete to complete the prompt target through the smart wearable device worn by the athlete includes:

[0029] Obtain the first template animation and the first configuration information type corresponding to the prompt target;

[0030] Obtain the first target information of the first configuration information type of the athlete;

[0031] Configure the first template animation based on the first target information;

[0032] Control the display of the first template animation after configuring the smart wearable device worn by the athlete.

[0033] Optionally, guiding the athlete to view the large screen prompt area through the smart wearable device worn by the athlete and the best prompt screen includes:

[0034] Control the smart wearable device worn by the athlete to perform a second vibration;

[0035] Control the smart wearable device worn by the athlete to perform a third vibration, and synchronously control the best prompt screen to flash the large screen prompt area; wherein, the vibration modes of the third vibration, the second vibration, and the first vibration are different from each other;

[0036] Obtain the second template animation and the second configuration information type corresponding to the prompt target;

[0037] Obtain the second target information of the second configuration information type of the athlete;

[0038] Configure the second template animation based on the second target information;

[0039] Control the best prompt screen to display the configured second template animation in the large screen prompt area.

[0040] Optionally, the implementation of the running rhythm timely prompt plan for the athlete includes:

[0041] Based on the current time and the current position of the athlete, represent the running rhythm timely prompt plan on the running rhythm prompt space-time diagram to obtain the first space-time body;

[0042] Obtain multiple historical running rhythm timely prompt plans determined in real time in the history when the athlete conducts running training this time, as well as their respective corresponding historical determination times and the positions of the athlete at the time of historical determination;

[0043] Based on the historical determination time and the position of the athlete at the time of historical determination, represent the corresponding historical running rhythm timely prompt plans on the running rhythm prompt space-time diagram to obtain multiple second space-time bodies;

[0044] Based on the running rhythm prompt space-time diagram for obtaining each first space-time body and the second space-time body, determine the prompt execution mode;

[0045] Based on the prompt execution mode, implement the running rhythm timely prompt plan for the athlete.

[0046] Optionally, the determining the prompt execution mode based on the running rhythm prompt space-time diagram for obtaining each first space-time body and the second space-time body includes:

[0047] Determine the second spatio-temporal body within the first standard spatio-temporal region of the first spatio-temporal body from the running rhythm prompt spatio-temporal map obtained for each first spatio-temporal body and the second spatio-temporal body, and use it as the third spatio-temporal body;

[0048] Extract features from the first spatio-temporal body and the third spatio-temporal body to obtain a first feature set;

[0049] When the matching degree between the first feature set and the first standard feature set exceeds the first matching degree threshold, determine that the prompt execution mode is not to execute;

[0050] Otherwise, obtain the second standard spatio-temporal region corresponding to the first feature set;

[0051] Determine the second spatio-temporal body within the second standard spatio-temporal region of the first spatio-temporal body from the running rhythm prompt spatio-temporal map obtained for each first spatio-temporal body and the second spatio-temporal body, and use it as the fourth spatio-temporal body;

[0052] Extract features from the first spatio-temporal body and the fourth spatio-temporal body to obtain a second feature set;

[0053] When the matching degree between the second feature set and the second standard feature set exceeds the second matching degree threshold, determine that the prompt execution mode is to suspend execution;

[0054] Otherwise, determine that the prompt execution mode is to execute immediately.

[0055] An athlete running rhythm prompt management system provided by an embodiment of the present invention includes:

[0056] An optimal running rhythm plan formulation module for formulating an optimal running rhythm plan for an athlete during the next running training;

[0057] A running state information monitoring module for monitoring the running state information of an athlete when the athlete conducts the next running training;

[0058] A running rhythm timely prompt plan determination module for determining a running rhythm timely prompt plan in real time according to the running state information with reference to the optimal running rhythm plan;

[0059] A running rhythm timely prompt plan execution module for executing the running rhythm timely prompt plan for the athlete;

[0060] The running rhythm timely prompt plan execution module executes the running rhythm timely prompt plan for the athlete, including:

[0061] Analyze the running rhythm timely prompt plan to determine the prompt target and the required prompt duration;

[0062] Obtain the running track of the athlete on the running track within the time required for the future prompt;

[0063] Based on the running track trajectory, determine the best prompt screen, the corresponding large-screen prompt area, and the viewing cost during running from the prompt screen distribution map;

[0064] When the viewing cost during running exceeds the cost limit, guide the athlete to view the smart wearable device worn on their own through the smart wearable device worn by the athlete, and guide the athlete to complete the prompt target through the smart wearable device worn by the athlete;

[0065] Otherwise, guide the athlete to view the large-screen prompt area through the smart wearable device worn by the athlete and the best prompt screen, and guide the athlete to complete the prompt target through the best prompt screen.

[0066] A computer-readable storage medium provided by an embodiment of the present invention, on which a computer program is stored, and the processor executes the computer program to implement the method described in any one of the above.

[0067] An electronic device provided by an embodiment of the present invention, the electronic device includes a memory and a processor, a computer program is stored in the memory, and the processor executes the computer program to implement the method described in any one of the above.

[0068] Other features and advantages of the present invention will be described in the following specification, and, in part, will be obvious from the specification, or will be understood by implementing the present invention. The objectives and other advantages of the present invention can be realized and obtained by the structures specifically pointed out in the written specification and the drawings.

[0069] The technical solutions of the present invention will be further described in detail below through the drawings and embodiments. Description of the Drawings

[0070] The drawings are used to provide a further understanding of the present invention, and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation to the present invention. In the drawings:

[0071] Figure 1 It is a schematic diagram of a method for managing the running rhythm prompt of an athlete in an embodiment of the present invention;

[0072] Figure 2 It is a schematic diagram of a system for managing the running rhythm prompt of an athlete in an embodiment of the present invention. Detailed Embodiments

[0073] The following describes the preferred embodiments of the present invention with reference to the drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present invention and are not used to limit the present invention.

[0074] An embodiment of the present invention provides a method for managing the running rhythm prompt of an athlete, asFigure 1 As shown, it includes:

[0075] S1. Formulate the best running rhythm plan for the athlete during the next running training;

[0076] S2. When the athlete conducts the next running training, monitor the running state information of the athlete;

[0077] S3. Compare with the best running rhythm plan, and determine the running rhythm timely prompt plan in real time according to the running state information;

[0078] S4. Execute the running rhythm timely prompt plan for the athlete;

[0079] Among them, the execution of the running rhythm timely prompt plan for the athlete includes:

[0080] Analyze the running rhythm timely prompt plan, and determine the prompt target and the required duration of the prompt;

[0081] Obtain the running track of the athlete within the time of the required duration of the future prompt;

[0082] Based on the running track, determine the best prompt screen, the corresponding large screen prompt area, and the viewing cost during running from the prompt screen distribution map;

[0083] When the viewing cost during running exceeds the cost limit, guide the athlete to view the smart wearable device worn by the athlete through the smart wearable device worn by the athlete, and guide the athlete to complete the prompt target through the smart wearable device worn by the athlete;

[0084] Otherwise, guide the athlete to view the large screen prompt area through the smart wearable device worn by the athlete and the best prompt screen, and guide the athlete to complete the prompt target through the best prompt screen.

[0085] When formulating the best running rhythm plan, obtain the multi-modal formulation basis of the athlete, including at least: the current physical fitness state, the training target of the next running training, the environmental factors of the training venue, the historical performance during the previous running training, etc.; pre-set a plan library storing the best running rhythm plans corresponding to different multi-modal formulation bases, and query the plan library based on the obtained multi-modal formulation basis to obtain the best running rhythm plan to complete the formulation; when setting up the plan library, it can be jointly set by multiple running training experts according to experience.

[0086] When monitoring the running state information, it can be realized through the smart wearable device worn by the athlete. The smart wearable device at least includes: a smart sports watch, etc.; the monitored running state information at least includes: the current heart rate, stride, cadence, training progress, remaining training distance, etc. of the athlete.

[0087] The optimal running rhythm plan indicates the running rhythm that athletes should maintain in different running states. Therefore, according to the optimal running rhythm plan and the running state information, the running rhythm timely prompting plan can be determined in real time. The running rhythm timely prompting plan is the plan that is currently suitable for prompting athletes about their running rhythm, and it is used to prompt athletes to maintain the running rhythm they should keep in the current running state.

[0088] Finally, execute the running rhythm timely prompting plan for the athlete. After execution, the athlete will know the running rhythm that should be maintained currently and decide whether to make a change.

[0089] The prompting target is the running rhythm that the user needs to be prompted to achieve, such as the required cadence, stride length, etc.; the required prompting duration is the duration required when executing the running rhythm timely prompting plan.

[0090] When athletes are conducting running training, they will continue along the running track. The running track trajectory is the trajectory of the track that athletes need to run along continuously within the time of the required prompting duration in the future, and it can be predicted based on the athlete's current running speed and the required prompting duration.

[0091] The prompting screen distribution map is the map of the distribution positions of the prompting screens on the training ground where the athlete is located. The optimal prompting screen is the prompting screen that is most suitable for prompting the athlete with information when the athlete runs along the running track trajectory. The large-screen prompting area is the display area in the optimal prompting screen that is most suitable for prompting the athlete with information when the athlete runs along the running track trajectory. The viewing cost during running is the viewing cost of the athlete viewing the large-screen prompting area when running along the running track trajectory; the running track trajectory can reflect the running state of the athlete within the time of the required prompting duration in the future. Therefore, the optimal prompting screen, the corresponding large-screen prompting area, and the viewing cost during running can be determined based on it.

[0092] The cost limit is the limit representing a relatively large viewing cost of the athlete viewing the large-screen prompting area when running along the running track trajectory. When the viewing cost during running exceeds the cost limit, it means that the athlete is not suitable for viewing the large-screen prompting area to receive prompts, and the prompts are given entirely through the smart wearable device worn by the athlete; otherwise, that is, when the viewing cost during running does not exceed the cost limit, it means that the athlete is suitable for viewing the large-screen prompting area to receive prompts. First, the smart wearable device and the optimal prompting screen are linked to guide the athlete to view the large-screen prompting area, and then the optimal prompting screen is used to guide the athlete to complete the prompting target.

[0093] Specifically, when setting up prompting screens in the training ground where the athlete is located, at least one large screen originally used for displaying competition information in the training ground can be docked and used as a prompting screen, or a new large screen can be set up as a prompting screen. Since the visible range of the large screen is very large, there is no need to set up too many.

[0094] The present application formulates the best running rhythm plan for athletes, compares the best running rhythm plan, and determines the running rhythm prompt plan in real time according to the running status information of the monitored athletes, and executes the running rhythm prompt plan for the athletes, so as to assist the athletes in precise real-time rhythm control. In addition, the system determines the best prompt screen and the corresponding large screen prompt area and the cost of viewing when running from the prompt screen distribution map based on the running track trajectory. When the cost of viewing when running exceeds the cost limit, the running rhythm prompt is given to the athlete through the smart wearable device worn by the user, and when the cost of viewing when running does not exceed the cost limit, the athlete can naturally view the large screen prompt area during the running process, and make a quick rhythm adjustment under its prompt to complete the prompt target, which greatly reduces the number of times the athlete raises his arm and slightly lowers his head to check the smart sports watch, and avoids the running posture, the smoothness of the running pace, the efficiency of the upper limb arm swing and the attention as much as possible. It is particularly suitable for the application scenario of the present application, in which the number of real-time running rhythm prompts is relatively frequent and each prompt has a scene feature of prompting the athlete to reach the process of maintaining the running rhythm, which greatly improves the effect of the athlete's running rhythm control training.

[0095] When using the prompt screen to provide information prompts to athletes who are running, two special problems need to be faced: 1. There are often multiple athletes running at the same training venue. How to use the same prompt screen to prompt different athletes who need running rhythm prompts? 2. The position of the prompt screen is mostly fixed. Athletes may need to slightly turn their heads when checking the prompt screen. How to avoid this situation as much as possible.

[0096] Therefore, in order to solve the above problems, in one embodiment, the method of determining the best prompt screen and the corresponding large screen prompt area and the viewing cost during running from the prompt screen distribution map based on the running track trajectory includes:

[0097] Predicting the athlete's field of view at multiple time units while running along a running track trajectory;

[0098] Counting the first screening index of each prompt screen to be selected in the prompt screen distribution diagram; wherein the first screening index includes: the total number of consecutive unit time periods when the prompt screen to be selected appears in the viewing field of view at consecutive unit time periods;

[0099] The candidate prompt screen with the largest first screening index is taken as the best prompt screen;

[0100] Identify multiple unit free areas from the best prompt screen;

[0101] Statistically calculate the second screening index for each unit of idle area; wherein, the second screening index includes: the sum of the minimum movement amounts of the viewing fields at each unit time moving and changing to completely view the unit idle area respectively;

[0102] Take the unit idle area with the smallest second screening index as the large-screen prompt area;

[0103] Take the second screening index corresponding to the large-screen prompt area as the viewing cost during running.

[0104] The shape of the training track where the athlete is located is fixed, and the athlete will maintain a standard body posture at different track positions. On the straight section of the track, the athlete usually maintains a relatively upright posture, with the head straight and the eyes looking straight ahead at the track; while on the curved section, the athlete usually directs the line of sight parallel to the tangent direction of the track, that is, looking at the tangent direction of the curve. Therefore, based on the specific position of the athlete running along the track trajectory at different unit times and the visible range of ordinary people, the viewing field at each unit time can be predicted. The unit time is any moment when the athlete is running along the running track trajectory.

[0105] When statistically calculating the total number of consecutive unit times, for example: the viewing field is divided into viewing field 1 to viewing field 10, and the corresponding unit times are time 1 to time 10 respectively. The candidate prompt screen appears within the viewing field 2 to viewing field 4 at consecutive times 2 to time 4, and also appears within the viewing field 7 to viewing field 9 at consecutive times 7 to time 9. Then the total number of consecutive unit times is the total number 6 of times 2 to time 4 and times 7 to time 9. Take this as the first screening index. The larger the first screening index, the more convenient it is for the athlete to view the corresponding candidate prompt screen when running along the running track trajectory. Therefore, take the candidate prompt screen with the largest first screening index as the best prompt screen.

[0106] The display area of the prompt screen is divided into multiple unit display areas of equal area size. The unit idle area refers to the unit display area that is not currently used for prompting the running rhythm of any athlete. When the viewing field moves and changes to completely view the unit idle area, movement is required, that is, the minimum movement amount is generated. Sum up the movement amounts of the viewing fields at each unit time to obtain the sum of the minimum movement amounts. Take this as the second screening index. The smaller the second screening index, the more convenient it is for the athlete to view the corresponding unit idle area when running along the running track trajectory. Therefore, take the unit idle area with the smallest second screening index as the large-screen prompt area, and at the same time take the second screening index corresponding to the large-screen prompt area as the viewing cost during running.

[0107] In an embodiment of the present invention, the display area of the prompt screen is divided into multiple unit display areas of equal area sizes, which can realize prompting different athletes who need running rhythm prompts by using the same prompt screen; secondly, the introduction of the first screening index and the second screening index ensures that athletes can most conveniently view the best prompt screen and the large-screen prompt area when running along the running track trajectory, and as much as possible avoids the situation where athletes may need to slightly turn their brains when viewing the prompt screen, greatly improving the applicability of the system.

[0108] In one embodiment, guiding the athlete to view the smart wearable device worn by the athlete through the smart wearable device worn by the athlete includes:

[0109] Controlling the smart wearable device worn by the athlete to perform a first vibration;

[0110] Guiding the athlete to complete the prompt target through the smart wearable device worn by the athlete includes:

[0111] Obtaining a first template animation and a first configuration information type corresponding to the prompt target;

[0112] Obtaining first target information of the first configuration information type of the athlete;

[0113] Configuring the first template animation based on the first target information;

[0114] Controlling the smart wearable device worn by the athlete to display the configured first template animation.

[0115] When performing the first vibration, it can vibrate continuously 2 times within 0.5 seconds; it can be explained to the athlete when the system is first used that the first vibration requires the athlete to view the smart wearable device worn by himself.

[0116] The first template animation is an animation that supports the display of the smart wearable device and can be dynamically configured according to the first target information and can give real-time running rhythm prompts to the athlete after configuration; the first configuration information type is the type of the first target information that supports dynamic configuration of the first template animation, and is used to indicate which type of first target information of the athlete the system obtains. Specifically, for example: the prompt target is the target cadence, the first template animation is the cadence target completion progress bar, the end point of the progress bar is the target cadence, the first configuration information type is cadence, obtaining the athlete's real-time cadence as the first target information, after configuring the first template animation based on the first target information, the cadence target completion progress bar will display the progress of the athlete's current cadence adjustment. Controlling the smart wearable device worn by the athlete to display the configured first template animation, and the athlete then completes the prompt target under its prompt.

[0117] In one embodiment, guiding an athlete to view a large-screen prompt area through an intelligent wearable device worn by the athlete and an optimal prompt screen includes:

[0118] Controlling the intelligent wearable device worn by the athlete to perform a second vibration;

[0119] Controlling the intelligent wearable device worn by the athlete to perform a third vibration, and synchronously controlling the optimal prompt screen to flash the large-screen prompt area; wherein, the vibration modes of the third vibration, the second vibration, and the first vibration are different from each other;

[0120] Obtaining a second template animation and a second configuration information type corresponding to a prompt target;

[0121] Obtaining second target information of the second configuration information type of the athlete;

[0122] Configuring the second template animation based on the second target information;

[0123] Controlling the optimal prompt screen to display the configured second template animation in the large-screen prompt area.

[0124] When performing the second vibration, it can vibrate continuously for 1 second; it can be explained to the athlete when they first use the system that the second vibration is to prepare for docking with the large-screen prompt area.

[0125] When performing the third vibration, it can vibrate continuously 3 times within 1 second; when controlling the large-screen prompt area to flash, it can flash continuously 3 times within 1 second; synchronous control means that the intelligent wearable device performs the third vibration and the large-screen prompt area flashes simultaneously start and end, and the vibration and flash frequencies are consistent; in this way, the athlete can quickly perceive that they need to dock with the corresponding large-screen prompt area.

[0126] Correspondingly, the second template animation is an animation that supports the display of the large-screen prompt area and can be dynamically configured according to the second target information and can provide real-time running rhythm prompts to the athlete after configuration; the second configuration information type is the type of the second target information that supports the dynamic configuration of the second template animation, and is used to indicate which type of second target information of the athlete the system obtains; both can be set in advance by technicians according to actual needs. Controlling the optimal prompt screen to display the configured second template animation in the large-screen prompt area, and the athlete then completes the prompt target under its prompt.

[0127] Currently, the original intention of running rhythm prompts is to help athletes better control their running rhythm, cultivate their sensitivity to their own rhythm and physical condition, so as to improve sports performance and endurance.

[0128] However, in actual training, athletes often encounter situations where their rhythm does not match their expectations, and they need to frequently rely on rhythm cues to make adjustments. In the short term, this approach may bring certain results, but in the long term, over-reliance on rhythm cues may bring a serious disadvantage, that is, athletes will gradually lose the ability to adjust their rhythm independently according to their own body reactions.

[0129] When athletes rely too much on rhythm cues, they tend to ignore their intuitive judgment of body sensations and rely on cues to control their running rhythm. This dependence may weaken their keen perception of their physical state, resulting in an inability to flexibly adjust their rhythm according to factors such as physical fitness, environmental changes, and psychological state. Over time, athletes may lose the ability to adjust their rhythm through their own perception, especially in the absence of rhythm cues, and may feel lost or unable to cope with unexpected situations during the game. For example, during a game, athletes may need to adjust their running rhythm due to changes in weather, mentality, or fatigue. At this time, if they rely on rhythm cues, it may limit their judgment and adaptability, and they will not be able to flexibly adapt to changes in the game.

[0130] Therefore, in order to solve the above problems, in one embodiment, the scheme of timely prompting the athlete's running rhythm includes:

[0131] Based on the current time and the current position of the athlete, the running rhythm timely prompting scheme is represented on the running rhythm prompting space-time graph to obtain a first space-time body;

[0132] Obtaining multiple timely prompting schemes of historical running rhythms determined in real time during the athlete's running training and their corresponding historical determination times and the athlete's position at the time of historical determination;

[0133] Based on the historical determination time and the position of the athlete at the time of historical determination, corresponding timely prompt schemes of each historical running rhythm are represented on a running rhythm prompting space-time graph to obtain a plurality of second space-time bodies;

[0134] Determine a prompt execution mode based on the running rhythm prompt spatiotemporal graphs obtained for each first spatiotemporal body and the second spatiotemporal body;

[0135] Based on the prompt execution mode, a timely running rhythm prompt program is implemented for athletes.

[0136] When constructing a running rhythm prompt space-time diagram, the running status information of the athlete at different historical moments during the running training is marked on the map of the venue where the athlete performs running training, and the corresponding information generation time is marked, and the marked venue map is used as the running rhythm prompt space-time diagram.

[0137] Historically, the system would determine the running rhythm in real time and provide timely prompting solutions, namely, the historical running rhythm timely prompting solution. The historical determination time is the determination time of the historical running rhythm timely prompting solution, and the position of the athlete at the time of historical determination is the position where the athlete was located when the historical running rhythm timely prompting solution was determined.

[0138] When representing the running rhythm timely prompting solution, based on the current position of the athlete, find the corresponding runway position in the running rhythm prompting space-time diagram, mark the running rhythm timely prompting solution beside the runway position, and mark the current time. The marked running rhythm timely prompting solution and the current time form a first space-time body beside the runway position.

[0139] Similarly, when representing the historical running rhythm timely prompting solution, based on the position of the athlete at the time of historical determination, find the corresponding runway position in the running rhythm prompting space-time diagram, mark the historical running rhythm timely prompting solution beside the runway position, and mark the corresponding historical determination time. The marked historical running rhythm timely prompting solution and the corresponding historical determination time form a second space-time body beside the runway position.

[0140] The running rhythm prompting space-time diagram obtained for each first space-time body and second space-time body comprehensively reflects the athlete's exercise performance during the current running training and the situation of the system's running rhythm prompting for the athlete, etc. Therefore, the prompting execution mode can be determined based on it. The prompting execution mode is divided into not executing, delaying execution, and immediately executing. If it is not executing, it means that if executed, it will cause the athlete to be overly dependent on the prompt. If it is delaying execution, it means that the athlete needs to be prompted but immediate prompting will cause the athlete to be overly dependent on the prompt. If it is immediately executing, it means that if executed, it will not cause the athlete to be overly dependent on the prompt. Finally, based on the prompting execution mode, the running rhythm timely prompting solution is executed for the athlete.

[0141] In the embodiment of the present invention, by representing the running rhythm timely prompting solution and each corresponding historical running rhythm timely prompting solution on the running rhythm prompting space-time diagram, and by obtaining the running rhythm prompting space-time diagrams of each first space-time body and second space-time body respectively, determining the prompting execution mode, and based on the prompting execution mode, executing the running rhythm timely prompting solution for the athlete, it accurately determines the appropriate execution mode to avoid causing the athlete to be overly dependent on the running rhythm prompt, and prevents the athlete from being overly dependent on the running rhythm prompt and gradually losing the ability to independently adjust the rhythm according to their own physical reactions.

[0142] In one embodiment, the determining the prompting execution mode based on obtaining the running rhythm prompting space-time diagrams of each first space-time body and second space-time body includes:

[0143] Determine the second space-time body within the first standard space-time region of the first space-time body from the running rhythm prompt space-time diagrams of each first space-time body and the second space-time body, and use it as the third space-time body;

[0144] Extract features from the first space-time body and the third space-time body to obtain a first feature set;

[0145] When the matching degree between the first feature set and the first standard feature set exceeds the first matching degree threshold, determine that the prompt execution mode is not to execute;

[0146] Otherwise, obtain the second standard space-time region corresponding to the first feature set;

[0147] Determine the second space-time body within the second standard space-time region of the first space-time body from the running rhythm prompt space-time diagrams of each first space-time body and the second space-time body, and use it as the fourth space-time body;

[0148] Extract features from the first space-time body and the fourth space-time body to obtain a second feature set;

[0149] When the matching degree between the second feature set and the second standard feature set exceeds the second matching degree threshold, determine that the prompt execution mode is to suspend execution;

[0150] Otherwise, determine that the prompt execution mode is to execute immediately.

[0151] The first standard space-time region is the runway region 100 meters before the runway position where the first space-time body is located and the time period 2 minutes before the current time of the first space-time body; based on the first standard space-time region of the first space-time body, the second space-time body can be determined from the running rhythm prompt space-time diagrams of each first space-time body and the second space-time body and used as the third space-time body.

[0152] The features of the first space-time body and the third space-time body included in the first feature set at least include: the interval distance between the runway position where the first space-time body is located and the runway position of the third space-time body, the correlation between the running rhythm timely prompt scheme of the first space-time body and the historical running rhythm timely prompt scheme of the third space-time body, the correlation between the current time of the first space-time body and the historical determination time of the third space-time body, etc.

[0153] The first standard feature set contains features that jointly represent the first spatio-temporal entity and the third spatio-temporal entity that, if the running rhythm timely prompting scheme is executed, will cause the athlete to overly rely on the prompt. For example: the interval distance between the runway position where the first spatio-temporal entity is located and the runway position of the third spatio-temporal entity is 2 meters, the correlation between the running rhythm timely prompting scheme of the first spatio-temporal entity and the historical running rhythm timely prompting scheme of the third spatio-temporal entity is that the prompting goals are the same, and the correlation between the current time of the first spatio-temporal entity and the historical determined time of the third spatio-temporal entity is that the time difference is 3 seconds. This indicates that the athlete has been prompted with the same prompting goal in a very recent time in history, and the athlete himself knows that he has deviated from the prompting goal again. If the running rhythm timely prompting scheme is executed, it will cause the athlete to overly rely on the prompt.

[0154] Therefore, when the matching degree between the first feature set and the first standard feature set exceeds the first matching degree threshold, it is determined that the prompt execution mode is not to execute. The first matching degree threshold is a threshold representing a relatively large matching degree between the first feature set and the first standard feature set. For example: the first matching degree threshold is 80%.

[0155] Next, it is only necessary to determine whether the prompt execution mode is to suspend execution or execute immediately, which needs to be determined by considering more situations. The first feature set reflects the athlete's recent exercise performance during the current running training and the situation of the system's running rhythm prompting for him. Therefore, a second standard spatio-temporal region containing more situations can be determined based on it. For example: if the first feature set reflects that the athlete's exercise performance is relatively good recently and the system gives fewer running rhythm prompts to him, then more historical time and the situation within a longer historical runway area are required. The corresponding second standard spatio-temporal region is the runway area 800 meters before the runway position where the first spatio-temporal entity is located and the time period 5 minutes before the current time of the first spatio-temporal entity.

[0156] Similarly, based on the second standard spatio-temporal region of the first spatio-temporal entity, the second spatio-temporal entity can be determined from the obtained running rhythm prompt spatio-temporal diagrams of each first spatio-temporal entity and the second spatio-temporal entity, and it is used as the fourth spatio-temporal entity. The second feature sets of the first spatio-temporal entity and the fourth spatio-temporal entity are extracted.

[0157] The second standard feature set contains features that jointly represent the first spatio-temporal entity and the fourth spatio-temporal entity where the athlete needs to be prompted but immediate prompting will cause the athlete to overly rely on the prompt. For example: multiple features where the frequency of prompts of other prompting schemes that jointly reflect the prompting types of the running rhythm timely prompting scheme in history is the median in the frequency set of running rhythm timely prompting schemes with different prompting types in history, indicating that the prompting frequency of the prompting type of the running rhythm timely prompting scheme in history belongs to the medium level, and there is no need to not execute, nor to execute immediately, so it is suspended.

[0158] Therefore, when the matching degree between the second feature set and the second standard feature set exceeds the second matching degree threshold, it is determined that the prompt execution mode is deferred execution; otherwise, it is determined that the prompt execution mode is immediate execution. The second matching degree threshold is a threshold representing a relatively large matching degree between the second feature set and the second standard feature set. For example, the second matching degree threshold is 70%.

[0159] In the embodiment of the present invention, a third spatio-temporal body is first determined based on the first standard spatio-temporal region of the first spatio-temporal body, the first feature sets of the first spatio-temporal body and the third spatio-temporal body are extracted, and whether the prompt execution mode can be non-execution is determined by matching with the first standard feature set. Then, a fourth spatio-temporal body is determined based on the second standard spatio-temporal region of the first spatio-temporal body, the second feature sets of the first spatio-temporal body and the fourth spatio-temporal body are extracted, and whether the prompt execution mode is deferred execution or immediate execution is determined by matching with the second standard feature set. This greatly improves the accuracy and comprehensiveness of determining the prompt execution mode, further improves the ability to prevent athletes from relying too much on the running rhythm prompt and gradually losing the ability to independently adjust the rhythm according to their own physical reactions. In addition, the determination of the prompt execution mode is carried out step by step, which greatly improves the determination efficiency of the prompt execution mode.

[0160] The embodiment of the present invention provides a management system for prompting the running rhythm of athletes, as Figure 2 shown, including:

[0161] The best running rhythm plan formulation module 1 is used to formulate the best running rhythm plan for the athlete during the next running training;

[0162] The running state information monitoring module 2 is used to monitor the running state information of the athlete when the athlete conducts the next running training;

[0163] The running rhythm timely prompt plan determination module 3 is used to determine the running rhythm timely prompt plan in real time according to the running state information by comparing with the best running rhythm plan;

[0164] The running rhythm timely prompt plan execution module 4 is used to execute the running rhythm timely prompt plan for the athlete;

[0165] When the running rhythm timely prompt plan execution module executes the running rhythm timely prompt plan for the athlete, it includes:

[0166] Analyze the running rhythm timely prompt plan to determine the prompt target and the required prompt duration;

[0167] Obtain the running track of the athlete on the running track within the time required for the future prompt;

[0168] Based on the running track, determine the best prompt screen, the corresponding large screen prompt area and the viewing cost during running from the prompt screen distribution map;

[0169] When the cost of viewing exceeds the cost limit during running, the athlete is guided by the smart wearable device worn by the athlete to view the smart wearable device worn by himself / herself, and the athlete is guided by the smart wearable device worn by the athlete to complete the prompting goal;

[0170] Otherwise, the athlete is guided by the smart wearable device worn by the athlete and the best prompting screen to view the large-screen prompting area, and the athlete is guided by the best prompting screen to complete the prompting goal.

[0171] An embodiment of the present invention provides a computer-readable storage medium, on which a computer program is stored, and the processor executes the computer program to implement the method described in any one of the above.

[0172] An embodiment of the present invention provides an electronic device, which includes a memory and a processor. A computer program is stored in the memory, and the processor executes the computer program to implement the method described in any one of the above.

[0173] Obviously, those skilled in the art can make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, if these modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalent technologies, the present invention also intends to include these changes and modifications.

Claims

1. A method for managing an athlete's running rhythm prompt, characterized in that: include: Develop the best running rhythm plan for athletes during their next running training; When the athlete performs the next running training, the athlete's running status information is monitored; Compare the best running rhythm plan and determine the running rhythm prompt plan in real time according to the running status information; Implement a running cadence prompting program for athletes; The method of providing timely reminders of the running rhythm to athletes includes: Analyze the timely reminder plan for running rhythm, determine the reminder target and the required reminder time; Obtain the running track trajectory of the athlete within the time required for prompting in the future; Based on the running track trajectory, determine the best prompt screen and the corresponding large screen prompt area and viewing cost while running from the prompt screen distribution map; When the cost of running exceeds the cost limit, the athlete is guided to check the smart wearable device he is wearing through the smart wearable device worn by the athlete, and the athlete is guided to complete the prompt target through the smart wearable device worn by the athlete; Otherwise, the athlete is guided to view the large screen prompt area through the smart wearable device worn by the athlete and the best prompt screen, and the athlete is guided to complete the prompt target through the best prompt screen.

2. The athlete running rhythm prompt management method according to claim 1, characterized in that: The method of determining the best prompt screen and the corresponding large screen prompt area and the viewing cost during running from the prompt screen distribution map based on the running track trajectory includes: Predicting the athlete's field of view at multiple time units while running along a running track trajectory; Counting the first screening index of each prompt screen to be selected in the prompt screen distribution diagram; wherein the first screening index includes: the total number of consecutive unit time periods when the prompt screen to be selected appears in the viewing field of view at consecutive unit time periods; The candidate prompt screen with the largest first screening index is taken as the best prompt screen; Identify multiple unit free areas from the best prompt screen; Counting the second screening index of each unit free area; wherein the second screening index includes: the sum of the minimum movement amounts of the viewing field of view at each unit time to completely view the unit free area; The unit free area with the smallest second screening index is used as the large screen prompt area; Use the second filter indicator corresponding to the large screen prompt area as the cost to view while running.

3. The athlete running rhythm prompt management method according to claim 1, characterized in that: The step of guiding the athlete to view the smart wearable device worn by the athlete through the smart wearable device worn by the athlete includes: Controlling the smart wearable device worn by the athlete to perform a first vibration; The method of guiding the athlete to complete the prompt target through the smart wearable device worn by the athlete includes: Obtain the first template animation and the first configuration information type corresponding to the prompt target; Obtaining first target information of a first configuration information type of the athlete; Based on the first target information, configuring the first template animation; Control the display of the first template animation after the smart wearable device worn by the athlete is configured.

4. The athlete running rhythm prompt management method according to claim 3, characterized in that: The method of guiding the athlete to view the large screen prompt area through the smart wearable device worn by the athlete and the optimal prompt screen includes: Controlling the smart wearable device worn by the athlete to perform a second vibration; Controlling the smart wearable device worn by the athlete to perform a third vibration, and synchronously controlling the best prompt screen to flash the large screen prompt area; wherein the vibration modes of the third vibration, the second vibration and the first vibration are different from each other; Obtain the second template animation and the second configuration information type corresponding to the prompt target; Acquire second target information of a second configuration information type of the athlete; Based on the second target information, configuring the second template animation; Control the display of the second template animation after the best prompt screen configures the large screen prompt area.

5. The athlete running rhythm prompt management method according to claim 1, characterized in that: The method of providing timely reminders of the running rhythm to athletes includes: Based on the current time and the current position of the athlete, the running rhythm timely prompting scheme is represented on the running rhythm prompting space-time graph to obtain a first space-time body; Obtaining multiple timely prompting schemes of historical running rhythms determined in real time during the athlete's running training and their corresponding historical determination times and the athlete's position at the time of historical determination; Based on the historical determination time and the position of the athlete at the time of historical determination, corresponding timely prompt schemes of each historical running rhythm are represented on a running rhythm prompting space-time graph to obtain a plurality of second space-time bodies; Determine a prompt execution mode based on the running rhythm prompt spatiotemporal graphs obtained for each first spatiotemporal body and the second spatiotemporal body; Based on the prompt execution mode, a timely running rhythm prompt program is implemented for athletes.

6. The athlete running rhythm prompt management method according to claim 5, characterized in that: The step of obtaining the running rhythm prompt spatiotemporal graphs of the first spatiotemporal volume and the second spatiotemporal volume and determining the prompt execution mode includes: Determine the second space-time volume in the first standard space-time region of the first space-time volume from the running rhythm prompt space-time map of each first space-time volume and the second space-time volume, and use it as the third space-time volume; Extracting features from the first space-time volume and the third space-time volume to obtain a first feature set; When the matching degree between the first feature set and the first standard feature set exceeds a first matching degree threshold, determining the prompt execution mode to be not executed; Otherwise, obtaining a second standard space-time region corresponding to the first feature set; Determine the second space-time volume in the second standard space-time region of the first space-time volume from the running rhythm prompt space-time map of each first space-time volume and the second space-time volume, and use it as the fourth space-time volume; Extracting features from the first space-time volume and the fourth space-time volume to obtain a second feature set; When the matching degree between the second feature set and the second standard feature set exceeds a second matching degree threshold, determining the prompt execution mode to be suspended execution; Otherwise, the prompt execution mode is determined to be immediate execution.

7. An athlete running rhythm prompt management system, characterized in that: include: An optimal running rhythm program formulation module is used to formulate an optimal running rhythm program for athletes during the next running training; A running status information monitoring module is used to monitor the athlete's running status information when the athlete performs the next running training; A running rhythm prompting scheme determination module is used to compare the best running rhythm scheme and determine the running rhythm prompting scheme in real time according to the running status information; A running rhythm timely prompting program execution module is used to execute the running rhythm timely prompting program for athletes; The running rhythm timely prompting scheme execution module executes the running rhythm timely prompting scheme for the athlete, including: Analyze the timely reminder plan for running rhythm, determine the reminder target and the required reminder time; Obtain the running track trajectory of the athlete within the time required for prompting in the future; Based on the running track trajectory, determine the best prompt screen and the corresponding large screen prompt area and viewing cost while running from the prompt screen distribution map; When the cost of running exceeds the cost limit, the athlete is guided to check the smart wearable device he is wearing through the smart wearable device worn by the athlete, and the athlete is guided to complete the prompt target through the smart wearable device worn by the athlete; Otherwise, the athlete is guided to view the large screen prompt area through the smart wearable device worn by the athlete and the best prompt screen, and the athlete is guided to complete the prompt target through the best prompt screen.

8. A computer-readable storage medium, characterized in that: The computer-readable storage medium stores a computer program, and the processor executes the computer program to implement the method according to any one of claims 1 to 6.

9. An electronic device, characterized in that: The electronic device comprises a memory and a processor, wherein the memory stores a computer program, and the processor executes the computer program to implement the method according to any one of claims 1 to 6.

Citation Information

Patent Citations

  • Method and mobile terminal for assisting in exercise speed matching

    CN105963952A

  • Lap counter system for multiple runners

    US20060217232A1