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CN104014122B - Based on the sports and competitions back-up system of internet - Google Patents

Based on the sports and competitions back-up system of internet Download PDF

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CN104014122B
CN104014122B CN201410265995.4A CN201410265995A CN104014122B CN 104014122 B CN104014122 B CN 104014122B CN 201410265995 A CN201410265995 A CN 201410265995A CN 104014122 B CN104014122 B CN 104014122B
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athletic
competition
data
support system
subsystem
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CN104014122A (en
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叶一火
叶比特
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Abstract

The present invention relates to a kind of sports and competitions back-up system based on internet, comprise by the interconnective data acquisition subsystem in internet, data process subsystem, Evaluation subsystem and user interaction device; Data acquisition subsystem is for gathering the every related data in motion and contest process; Data process subsystem utilizes the data of data acquisition subsystem collection and other related data to build the sports and competitions model of each participant; Evaluation subsystem goes out evaluation model according to the related data of concrete sports and competitions and the sports and competitions model construction of different participant; User interaction device is used for completing user and sports and competitions back-up system carries out man-machine interaction; In concrete sports and competitions, contest back-up system gathers related data by data acquisition subsystem, and the evaluation model that Utilization assessment subsystem is set up, to life period, place, sports level, motion specification or or even the sports and competitions data of type of sports difference carry out effective evaluation.

Description

Sports competition support system based on internet
Technical Field
The invention relates to the crossing field of athletic competitions and the Internet, in particular to an athletic competition supporting system realized based on the Internet.
Background
Sports and sporting events have become an integral part of more and more people's lives. Especially, the sports competition can arouse the enthusiasm and the sports potential and can bring physiological and psychological benefits to many people. However, in the athletic competition, it is often difficult for people to find proper time and place for people, proper motion modes for people and matched motion levels, thereby affecting the popularity, participation and quality of athletic competition.
Currently, exercise support systems focus on individual exercise, and only provide exercise data records and exercise guidance for individual exercise individuals. Systems for supporting athletic competition, particularly athletic competition between individuals with differences in exercise time, exercise location, and exercise level, are currently at a premium.
Disclosure of Invention
The invention aims to solve the problems and realize the support of the sports competition among individuals with differences in sports time, sports places and sports levels by utilizing the mature internet technology and computer technology.
The invention provides an internet-based athletic competition support system, which comprises a data acquisition subsystem, a data processing subsystem and an evaluation subsystem which are connected with each other through a network; it is characterized in that the preparation method is characterized in that,
the data acquisition subsystem is used for acquiring various related data in the process of sports and competition;
the data processing subsystem constructs a sports competition model of each participant by using the data acquired by the data acquisition subsystem and other related data;
the evaluation subsystem constructs an evaluation model according to the specific relevant data of the athletic competition and the athletic competition models of different participants;
in a specific sports competition, the competition support system collects related data through a data collection subsystem, and utilizes an evaluation model established by the evaluation subsystem to effectively evaluate sports competition data with time, place, sports level, sports specification and even sports type difference.
Preferably, in the athletic competition support system, the data collection subsystem includes a sensor for collecting athletic competition performance data of participants, a sensor for collecting related environmental data, a device for collecting an exercise type and an exercise specification, and a network device for transmitting the collected data to a network.
Preferably, in the athletic competition support system, the data collection subsystem includes a sensor for collecting athletic performance of the participant, a sensor for collecting performance data of the athlete, a sensor for collecting relevant environmental data, a device for collecting type and specification of the athlete, and a network device for transmitting the collected data to a network.
Preferably, in the athletic competition support system, the participant may supplement and modify certain data collected by the data collection sub through an interactive device.
Preferably, in the athletic competition support system, the data processing subsystem may receive and store data collected by the collection subsystem, and may also receive and store data imported by other systems.
Preferably, in the athletic competition support system, the data processing subsystem includes a data storage component, a model building component; wherein,
the data storage component is used for storing the current data and the historical data acquired by the acquisition subsystem;
the model construction component is used for establishing an athletic performance model and an athletic performance model of each participant, wherein,
the sport result model is a relation model between the sport result and the sport type, the sport specification and the environment data which are constructed for each participant according to the stored data;
the athletic performance model is a relational model between the athletic performance and the athletic type, athletic specification, and environmental data constructed for each participant according to the stored data.
Preferably, in the athletic competition support system, the athletic performance model is a linear regression model between the athletic performance data of the participant and the type of exercise, the athletic specification, and the environmental data, which is created using the historical data.
Preferably, in the athletic competition support system, the athletic performance model is a linear regression model between the athletic performance data of the participant and the type of exercise, the athletic specification, and the environmental data, which is created using the historical data.
Preferably, in the athletic competition support system, the evaluation subsystem uses the type, specification and environmental data of the athletic competition to be performed as parameters, and solves the simulated achievement of the participant in the athletic competition through the athletic achievement model of the participant; and the competition evaluation relationship of competition differences can be compensated through the simulated result setting, so that the effective evaluation of competition victory or defeat of each participant at different exercise levels in different places, different exercise environments, even different exercise specifications and different exercise types is realized.
Preferably, in the athletic competition support system, the effective evaluation means that the participant probability of winning or losing is close to 50% under the evaluation.
Preferably, in the athletic competition support system, when the participants of the athletic competition are two persons, the competition evaluation relationship that can compensate for the competition difference is a difference relationship: namely, the performance data of one participant is added with the difference between the model performance data of the participant and the model performance data of the other participant to form a difference point corrected athletic achievement, and then the difference point corrected athletic achievement is effectively evaluated for the competition win and lose.
Preferably, in the athletic competition support system, when the participants of the athletic competition are two teams, the competition evaluation relationship that can compensate for the competition difference is a difference relationship: namely, the average athletic performance of each team is increased by the difference between the average model athletic performance of the team and the average model athletic performance of the other team to form a difference point corrected athletic performance, and then the difference point corrected athletic performance is used for effectively evaluating the competition victory or defeat competition.
Preferably, in the athletic competition support system, the competition evaluation relationship that can compensate for the competition difference is a ratio relationship: the ratio of the athletic achievement of each participant to the model athletic achievement of each participant is obtained to form a ratio correction athletic achievement, and then the ratio correction athletic achievement is used for effectively evaluating the competition win and lose competition.
Preferably, in the sporting event support system, the sporting events are of the following types: two participants compete as two parties; two party contests each having a plurality of participants; a multi-party contest with one participant each; a multi-party contest each having a plurality of participants; and two party races where both parties are the same participant; multiple parties are a multiparty contest of unified participants.
Preferably, in the athletic competition support system, the evaluation subsystem may perform an effective evaluation on the participants, and the effective evaluation result may induce a previously agreed behavior.
Preferably, in the athletic competition support system, the predetermined action elicited by the evaluation subsystem is awarding a participant.
Preferably, in the sporting event support system, the award is a physical or network virtual item.
Preferably, in the athletic competition support system, the evaluation subsystem is provided with a supervision mechanism.
Preferably, in the athletic competition support system, the supervision mechanism is performed by a specific supervisor.
Preferably, in the athletic competition support system, in the evaluation subsystem, the supervisor is also evaluated in the evaluation subsystem, and the fairness of the competition is ensured by binding the evaluation to a certain object.
Preferably, in the athletic competition support system, the specific object to which the evaluation of the supervisor is bound is an opponent of a supervised party in a competition
Preferably, in the athletic competition support system, the system further comprises a sharing and dissemination subsystem that shares and disseminates data of the athletic competition to people not participating in the athletic competition using a network.
Preferably, in the athletic competition support system, the internet is a mobile internet.
Preferably, in the athletic competition support system, the athletic competition support system may interact with an intelligent terminal: the data sub-acquisition system can transmit acquired data to the intelligent terminal for temporary storage; the intelligent terminal can upload the temporarily stored data to the data processing subsystem; the evaluation subsystem can push the evaluation information to the intelligent terminal.
Preferably, in the athletic competition support system, the user interaction device is an intelligent terminal.
Preferably, in the athletic competition support system, the system further includes an athletic competition matching and recommending subsystem that matches out an optimal opponent based on data about the type of athletic activity, the athletic field, the participants, and the user's athletic records, and recommends the optimal opponent to the corresponding user.
Preferably, in the athletic competition support system, the evaluation subsystem may further make a competition result prediction for an athletic competition to be performed, based on an evaluation model established for the athletic competition and an exercise type, an exercise specification, and environmental data.
Preferably, in the athletic competition support system, the evaluation subsystem may predict the athletic performance of the participant and provide an athletic advice to the participant for the athletic competition to be performed, based on the athletic performance model suggested for the participant and the athletic performance model by the athletic type, the athletic specification, and the environmental data.
Drawings
FIG. 1 is a block diagram of the structure of an athletic competition system according to the present invention.
Detailed Description
The present invention will now be described by way of specific examples, but it is to be understood that all such examples are illustrative and are not to be construed as limiting the scope of the invention.
Referring to fig. 1, the internet-based athletic competition support system of the present invention includes a plurality of athletic competition data collection subsystems 2, 2 'interconnected via the internet 1, a data processing subsystem 3 and an evaluation subsystem 4 at a central location, and a plurality of intelligent terminals 5, 5' that can interact with the athletic competition system.
In fig. 1, a user a and a user B are associated with the motion acquisition subsystems 2, 2 'and the intelligent terminals 5, 5', respectively. When the user A and the user B do sports or sports competition, the sports acquisition subsystems 2 and 2' respectively transmit the performance data, the environment data, the sports type, the sports specification and other data of the user A and the user B to the data processing subsystem through the network.
The athletic performance data includes athletic performances, such as height of jump, distance of jump, and related physiological data, such as body temperature, blood pressure, respiratory rate, etc.
The environmental data are, for example: location, temperature, humidity, wind direction, wind speed, etc.
The types of movements are for example: racing, walking, swimming, etc.
The motion specification data is, for example: 1000 meters (run), 2000 meters (run), 5 kilometers (race), 10 kilometers (race), etc.
In this embodiment, the data collected by each sensor may also be transmitted to the intelligent terminal first, and then uploaded to the data processing subsystem by the intelligent terminal 5, 5'.
Meanwhile, the user can interact with the data processing subsystem through the intelligent terminal, for example, the type and the place of the movement can be set, or other related data can be supplemented and modified.
Furthermore, the user's athletic data may be imported into the present data processing subsystem from other systems.
In one embodiment, user a and user B are fond of running, user a is located in beijing, running sports often in olympic parks; user B is located in the shanghai, often running in a purdong gym. When the user performs running exercise, the user can acquire relevant data through the data acquisition subsystem and transmit the relevant data to the data processing subsystem.
The data processing subsystem completes the storage of the data on one hand, and on the other hand, more importantly, the data processing subsystem needs to establish two models, namely an athletic performance model and an athletic performance model of the user by using the data.
The sport result model is a relation model between the sport result and the sport type, the sport specification and the environment data which are constructed for each participant according to the stored data;
the athletic performance model is a relational model between the athletic performance and the athletic type, athletic specification, and environmental data constructed for each participant according to the stored data.
The model may be established using a variety of well-established methods, such as linear regression, least squares fit, and the like.
In one embodiment, the data processing subsystem performs linear regression on the data related to the user a and the user B to obtain a running exercise performance model and an exercise performance model of the user a and the user B, respectively.
After the model is established, the evaluation subsystem can utilize the model to realize the difference closure among the participants of the athletic competition, thereby enabling the individuals with various differences of time, place, exercise level and the like to develop the athletic competition.
In one embodiment, the user a and the user B agree that the user a is in the olympic park of beijing in the morning and the user B is in the sports stadium of pureast in the morning in the afternoon in the morning, and the exercise support system of the present invention is used to perform a running game of 1000 meters once, and the information is input to the exercise support system of the present invention through the intelligent terminals 5, 5', respectively.
After receiving the competition information, the evaluation subsystem needs to establish an evaluation model for the athletic competition to be performed, and the specific process is as follows:
first, using the running performance models of the user a and the user B, it is calculated that the time spent by the user a running 1000 meters under the above conditions is 4 minutes and 30 seconds. User B spends 4 minutes and 7 seconds running 1000 meters under the above conditions. Obviously, according to the general competition evaluation rule, the probability that the user a wins out is small, and therefore, the two parties can hardly play the competition. In order to effectively evaluate the running competition of the user A and the user B, the probability of win or loss is close to 50%. The evaluation subsystem needs to establish a competition evaluation relationship which can make up the competition difference between the user A and the user B, for example, 23 seconds is added to the athletic performance of the user B to form a poor athletic performance, and then the poor athletic performance is used for carrying out the athletic evaluation of the competition.
In the following athletic competition, if user a runs 1000 meters in the agreed-upon olympic park of beijing on a certain day at noon for 4 minutes 29 seconds, and user B runs 1000 meters in the agreed-upon mart of purdong in the morning of a certain day at 4 minutes 10 seconds, the evaluation subsystem calculates that the difference athletic performance should be: 4 min 10 sec +23 sec is 4 min 33 sec, and it is determined that the user a wins.
In another embodiment, in order to establish a system that can compensate for the difference between the competition of the user a and the competition of the user B, the evaluation subsystem uses the ratio athletic performance to make the athletic evaluation, that is, the ratio of the actual athletic performance to the model athletic performance is used as the basis for the outcome evaluation, specifically, the ratio athletic performance of the user a is: 4 min 29 sec/4 min 30 sec; the ratio athletic performance for user B is: 4 min 10 sec/4 min 7 sec; and thus can also decide that user a wins.
To increase the interest of the athletic competition, participants may be awarded certain patterns based on the performance of the competition. The reward may be physical or virtual. For example, two parties may agree that the winner will get a pair of sports shoes that have the opposite party paid for. As electronic commerce has matured now, the above convention is easily implemented. The virtual items may be points, user ratings, etc.
Since the sporting contests described above occur at different locations, it may be necessary to supervise the contest in order to ensure the authenticity of the contest.
In one embodiment, this supervision is done by others, and further guarantees the authenticity of the competition by binding the supervisor's rewards and penalties to the opponents. Specifically, user C supervises user a, user D supervises user B, user C may be rewarded if user B wins, and user D is rewarded if user a wins.
The system may also support competition between teams, e.g., user a and user C may constitute one team, competing against a team with only one user B. The difference is that the team achievements need to be processed, for example, the average value of the team achievements is used as the judgment basis.
In one embodiment, the average of the athletic performances of user A and user C plus the difference between the average of the model athletic performances of user A and user C and the model athletic performance of user B is taken as the handicap athletic performance of the team.
The system may also support multi-party contests, for example, user C, who is located in Guangzhou in the contest described above, may also participate in the contest in a process similar to that described for user A and user B.
Obviously, before the above-mentioned athletic competition is performed, the system can predict the outcome of the competition and give the user appropriate advice based on the established model.
Moreover, because the user expression model is established, the expression of the user can be predicted, and further deeper suggestions can be given to the user.
In another embodiment, the system recommends the competition information to the relevant people, and the relevant users can pay attention to the competition through the system, namely 'watching around'.
Meanwhile, the system can also recommend a proper match opponent to the user according to the exercise level and the exercise preference of the user.
The present invention has been described in terms of specific embodiments, but the scope of the present invention is defined by the appended claims, and all changes, modifications, combinations, and equivalents which are obvious to those skilled in the art, are intended to be embraced therein.

Claims (27)

1. An internet-based athletic competition support system comprises a data acquisition subsystem, a data processing subsystem, an evaluation subsystem and user interaction equipment which are mutually connected through the internet; it is characterized in that the preparation method is characterized in that,
the data acquisition subsystem is used for acquiring various related data in the process of sports and competition;
the data processing subsystem constructs a sports competition model of each participant by using the data acquired by the data acquisition subsystem and other related data;
the evaluation subsystem constructs an evaluation model according to the specific relevant data of the athletic competition and the athletic competition models of different participants;
the user interaction equipment is used for completing the man-machine interaction between the user and the athletic competition support system;
in a specific sports competition, the competition support system collects related data through a data collection subsystem, and utilizes an evaluation model established by the evaluation subsystem to effectively evaluate the sports competition data with time, place, sports level, sports specification or even sports type difference.
2. The athletic competition support system of claim 1, wherein the data collection subsystem includes sensors for collecting athletic performance of the participant, sensors for collecting performance data of the athlete, sensors for collecting environmental data associated therewith, and equipment for collecting athletic type and athletic specifications, and network equipment for transmitting the collected data to the network.
3. The athletic competition support system of claim 2, wherein participants may supplement and modify certain data collected by the data collection subsystem via an interactive device.
4. The athletic competition support system of claim 1, wherein the data processing subsystem may receive and store data collected by the collection subsystem and may also receive and store data imported by other systems.
5. The athletic competition support system of claim 1, wherein the data processing subsystem includes a data storage component, a model building component; wherein,
the data storage component is used for storing the current data and the historical data acquired by the acquisition subsystem;
the model construction component is used for establishing an athletic performance model and an athletic performance model of each participant, wherein,
the sport result model is a relation model between the sport result and the sport type, the sport specification and the environment data which are constructed for each participant according to the stored data;
the athletic performance model is a relational model between the athletic performance and the athletic type, athletic specification, and environmental data constructed for each participant according to the stored data.
6. The athletic competition support system of claim 5, wherein the athletic performance model is a linear regression model between the athletic performance data of the participant and the athletic type, athletic specification, and environmental data established using historical data.
7. The athletic competition support system of claim 5, wherein the athletic performance model is a linear regression model between the athletic performance data and the athletic type, athletic specification, and environmental data for the participant established using the historical data.
8. The athletic competition support system of claim 1, wherein the evaluation subsystem uses the type of athletic competition to be played, the athletic specifications, and the environmental data as parameters to solve the simulated performance of the athletic competition by the participant's athletic performance model; and the competition evaluation relationship of competition differences can be compensated through the simulated result setting, so that the effective evaluation of competition victory or defeat of each participant at different exercise levels in different places, different exercise environments, even different exercise specifications and different exercise types is realized.
9. The athletic competition support system of claim 1, wherein the effective evaluation is an evaluation at which a participant probability of winning or losing approaches 50%.
10. The athletic competition support system of claim 8, wherein when the participants of the athletic competition are two persons, the competition evaluation relationship that compensates for the competition differences is a difference relationship: namely, the performance data of one participant is added with the difference between the model performance data of the participant and the model performance data of the other participant to form a difference point corrected athletic performance, and then the difference point corrected athletic performance is used for effectively evaluating the competition success or failure.
11. The athletic competition support system of claim 8, wherein when the athletic competition participants are two teams, the competition evaluation relationship that compensates for the competition differences is a difference relationship: namely, the average athletic performance of each team is increased by the difference between the average model athletic performance of the team and the average model athletic performance of the other team to form a difference point corrected athletic performance, and then the difference point corrected athletic performance is used for effectively evaluating the competition success and failure.
12. The athletic competition support system of claim 8 wherein the competition valuation relationship that compensates for the competition differences is a ratio relationship: the ratio of the athletic achievement of each participant to the model athletic achievement of the participant is obtained to form a ratio correction athletic achievement, and then the ratio correction athletic achievement is used for effectively evaluating the competition success and failure.
13. The athletic competition support system of claim 1, wherein the athletic competition is of the following type: two participants compete as two parties; two party contests each having a plurality of participants; a multi-party contest with one participant each; a multi-party contest each having a plurality of participants; and two party races where both parties are the same participant; a multi-party contest in which multiple parties are all the same participants.
14. The athletic competition support system of claim 1 wherein the evaluation subsystem is operative to evaluate participants and the results of the operative evaluation trigger a predetermined action.
15. The athletic competition support system of claim 14, wherein the initiated pre-agreed performance is an award to the participant.
16. The athletic competition support system of claim 15, wherein the reward is a physical or network virtual item.
17. The athletic competition support system of claim 14 wherein the evaluation subsystem is provided with a supervision mechanism.
18. The athletic competition support system of claim 17, wherein the supervision mechanism is performed by a particular supervisor.
19. An athletic competition support system according to claim 18, wherein the evaluation subsystem further evaluates the supervisor and ensures fairness of the competition by binding the evaluation to a particular object.
20. The athletic competition support system of claim 18, wherein the particular object to which the supervisor's evaluations are bound is an opponent of a supervised party in the competition.
21. The athletic competition support system of claim 1, wherein the system further comprises a sharing and dissemination subsystem that utilizes a network to share and disseminate the data of the athletic competition to the groups of people not participating in the athletic competition.
22. The athletic competition support system of claim 1, wherein the internet is a mobile internet.
23. The athletic competition support system of claim 1, wherein the athletic competition support system may interact with a smart terminal: the data sub-acquisition system can transmit acquired data to the intelligent terminal for temporary storage; the intelligent terminal can upload the temporarily stored data to the data processing subsystem; the evaluation subsystem can push the evaluation information to the intelligent terminal.
24. The athletic competition support system of claim 1, wherein the user interaction device is an intelligent terminal.
25. The athletic competition support system of claim 1, wherein the system further comprises an athletic competition matching and recommendation subsystem that matches out and recommends to the respective users the best opponents based on data relating to the type of athletic activity, the field of athletic activity, the participants, and the user's athletic records.
26. The athletic competition support system of claim 1, wherein the evaluation subsystem is further capable of making a competition result prediction for the athletic competition to be conducted based on an evaluation model established for the athletic competition and based on the type of athletic activity, athletic specifications, and environmental data.
27. The athletic competition support system of claim 5, wherein the evaluation subsystem system predicts the athletic performance of the participant and provides an athletic recommendation to the participant for the athletic competition to be conducted based on an athletic performance model suggested for the participant and the athletic performance model by the type of exercise, the athletic specifications, and the environmental data.
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