CN116933138B - Intelligent racing product-based athletic control system - Google Patents

Intelligent racing product-based athletic control system Download PDF

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CN116933138B
CN116933138B CN202310928520.8A CN202310928520A CN116933138B CN 116933138 B CN116933138 B CN 116933138B CN 202310928520 A CN202310928520 A CN 202310928520A CN 116933138 B CN116933138 B CN 116933138B
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江淦源
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Guangzhou Ganyuan Intelligent Technology Co Ltd
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Abstract

The invention relates to the technical field of network interaction, in particular to an intelligent racing product-based racing control system. Comprising the following steps: the device comprises a device layer, a front platform layer, a middle platform layer, a storage layer, a control layer and a control layer. The control layer is respectively connected with the middle layer and the storage layer and is used for comparing the characteristics in the communication information of the storage layer with a preset standard so as to convey the communication information into a corresponding database in the storage layer, adjust the definition of the communication information or further determine the type of the racing product to which the communication information belongs according to the deflection communication information recorded from different angles. The invention has the advantages that the judging and classifying processes are simplified through the data interaction among the arranged multi-layer structures, and the accuracy of classifying and storing the communication information is improved; meanwhile, the corresponding processing mode is rapidly determined by calculating the corresponding feature similarity and comparing the feature similarity with a preset standard, so that the classified storage efficiency of the communication information is further improved.

Description

Intelligent racing product-based athletic control system
Technical Field
The invention relates to the technical field of network interaction, in particular to an intelligent racing product-based racing control system.
Background
Chinese patent publication No.: 201711405957.4 discloses a college electronic competition information management platform, which comprises: cloud data storage system, intelligent management system, user interaction module, release system. Wherein, cloud data storage system includes: the database is used for storing data related to electronic sports; the management module is used for managing the data through cluster application and a distributed file system function; the intelligent management system is used for providing a graphical operation interface and providing searching, inquiring electronic competition information and event registration for users; the user interaction module is used for enabling the electronic contests to perform session connection, voice connection and message board; the issuing system is used for issuing the electronic athletic information. From this, it can be seen that the college electronic athletic information management platform has the following problems: the contests of multiple racing products cannot be classified and stored at the same time.
Disclosure of Invention
Therefore, the invention provides an intelligent racing product-based competition control system, which is used for solving the problem that the competition of various racing products cannot be classified and stored simultaneously in the prior art.
In order to achieve the above purpose, the invention provides an intelligent racing product-based racing control system. Comprising the following steps:
The equipment layer is used for recording the process of using the racing product by the user from a plurality of angles in real time and generating corresponding communication information;
the foreground layer is connected with the equipment layer and comprises a plurality of application software matched with the corresponding type of racing products for packaging communication information of the same racing product generated by the equipment layer;
the middle stage layer is connected with the front stage layer and used for carrying out data interaction with each application software, wherein the data interaction comprises user information in each application data and the communication information uploaded to the application software by each user;
the storage layer is connected with the middle platform layer and used for receiving and storing the communication information output by the middle platform layer;
the control layer is respectively connected with the middle layer and the storage layer and is used for determining whether the communication information has the racing product meeting the standard according to the characteristics in the communication information received by the storage layer, transmitting the communication information into a corresponding database in the storage layer according to the type of the racing product when the corresponding racing product is judged to be present, and adjusting the definition of the communication information according to the similarity between the characteristics in the communication information and the corresponding preset characteristics when the corresponding racing product is judged to be absent in the communication information, or further determining the type of the racing product to which the communication information belongs by combining the deflection communication information recorded by the equipment layer from different angles.
Further, the control layer collects profile features in the communication information under a first preset condition and determines a classification mode of whether a racing product meeting a standard exists in the communication information according to the first-level similarity of the profile features and a first-level preset profile set in the storage layer, wherein:
the first classification mode is that the control layer primarily judges that the communication information contains the racing product meeting the standard, and secondarily judges the type of the product to which the communication information belongs according to the secondary characteristic which is arranged in the storage layer and used for determining the type of the racing product; the first classification mode satisfies that the first-level similarity is larger than a second preset first-level similarity set in the storage layer;
the second classification mode is that the control layer preliminarily judges that no standard racing product exists in the communication information, and adjusts the definition of the communication information to a corresponding value according to a second preset first-level similarity and a first-level similarity difference value; the second classification mode meets the requirements that the first-level similarity is smaller than or equal to a second preset first-level similarity and larger than or equal to a first preset first-level similarity arranged in the storage layer, and the second preset first-level similarity is larger than the first preset first-level similarity;
The third classification mode is that the control layer preliminarily judges that no standard racing product exists in the communication information and further determines the type of the racing product to which the communication information belongs by combining deflection communication information recorded by the equipment layer from different angles; the third classification mode satisfies that the first-level similarity is smaller than the first preset first-level similarity;
the first preset condition is that the equipment layer records the process of using the racing products by each user and generates corresponding communication information, and then the communication information is uploaded to the storage layer.
Further, under the first classification mode, the control layer initially completes the second determination of the product type to which the communication information belongs by calculating the second similarity when the racing product meeting the standard exists in the communication information, wherein:
the first secondary classification mode is that the control layer judges the product type to which the communication information belongs and transmits the video to a corresponding database in the storage layer according to the product type information to which the communication information belongs; the first secondary classification mode meets the condition that the secondary similarity is larger than a secondary preset similarity preset in the storage layer;
The second secondary classification mode is that the control layer judges that the communication information does not have a corresponding racing product type, and the saturation of the communication information is adjusted to a corresponding value according to the calculated difference value between the second-level preset similarity and the second-level similarity; the second secondary classification mode meets the condition that the secondary similarity is smaller than or equal to the secondary preset similarity.
Further, the control layer marks the difference between the second-level preset similarity and the second-level similarity as a second-level similarity difference in a second-level classification mode, and adjusts the saturation to a corresponding value according to the second-level similarity difference, wherein:
the first saturation adjustment mode is that the control layer adjusts the video saturation to the first saturation by using a first saturation adjustment coefficient; the first saturation adjustment mode meets the condition that the secondary similarity difference value is smaller than a first preset secondary similarity difference value preset in the storage layer;
the second saturation adjustment mode is that the control layer adjusts the video saturation to the second saturation by using a second saturation adjustment coefficient; the second saturation adjustment mode meets the condition that the second-level similarity difference value is larger than or equal to the first preset second-level similarity difference value and smaller than or equal to a second preset second-level similarity difference value preset in the storage layer, and the second preset second-level similarity difference value is larger than the first preset second-level similarity difference value;
The third saturation adjustment mode is that the control layer adjusts the video saturation to third saturation by using a third saturation adjustment coefficient; the third saturation adjustment mode meets the condition that the second-level similarity difference value is larger than the second preset second-level similarity difference value.
Further, the control layer compares the newly acquired second-level similarity with a preset second-level similarity under a second preset condition to determine a processing mode for the communication information, wherein:
the first processing mode is that the control layer stores the communication information to a corresponding folder according to the specific type of the racing product; the first processing mode meets the condition that the new secondary similarity is larger than the secondary preset similarity after saturation adjustment;
the second processing mode is that the control layer reclassifies the types of racing products according to the communication information of other angle cameras; the second processing mode meets the condition that the new secondary similarity is smaller than or equal to the secondary preset similarity;
the second preset condition is that the control layer adjusts the saturation to a corresponding value according to a preset standard in a second secondary classification mode.
Further, the control layer calculates a second preset first-level similarity and a difference value of the first-level similarity in the second classification mode to determine an adjustment mode for video definition, and marks the difference value as a first-level similarity difference value, wherein:
The first definition adjusting mode is that the control layer adjusts the definition to the first definition by using a first definition adjusting coefficient; the first definition adjusting mode meets the condition that the first-level similarity difference value is smaller than a first-level preset similarity difference value preset in the storage layer;
the second definition adjusting mode is that the control layer adjusts the definition to the second definition by using a second definition adjusting coefficient; the second definition adjusting mode meets the requirements that the first-level similarity difference value is larger than or equal to the first-level preset similarity difference value and smaller than or equal to a second-level preset similarity difference value preset in the storage layer, and the second-level preset similarity difference value is larger than the first-level preset similarity difference value;
the third definition adjusting mode is that the control layer adjusts the definition to a third definition by using a third definition adjusting coefficient; the first definition adjusting mode meets the condition that the first-level similarity difference value is larger than the second-level preset similarity difference value.
Further, the control layer calculates the adjusted profile similarity to determine a secondary classification mode for the communication information under a third preset condition, wherein:
the first secondary classification mode is that the control layer preliminarily judges whether the communication information contains the racing product meeting the standard or not and judges the type of the communication information according to the secondary characteristics which are arranged in the storage layer and used for determining the type of the racing product; the first secondary classification mode meets the condition that the profile similarity after adjustment is larger than the secondary preset similarity;
The second classification mode is that the control layer corrects the outline so as to judge the type of the racing product; the second secondary classification mode satisfies that the profile similarity after adjustment is greater than or equal to the first-level preset similarity and less than or equal to the second-level preset similarity;
the third secondary classification mode is that the control layer judges the types of the racing products according to the competition records of other angles; the third secondary classification mode meets the condition that the profile similarity after adjustment is smaller than the first-level preset similarity;
the third preset condition is that the control layer completes the adjustment of the definition after calculating the contour similarity of the racing product and determining the adjustment mode for the video definition according to the contour similarity.
Further, the control layer extends the profile characteristics which are shielded by hands through curves and straight lines of the profiles which are not shielded by hands in a second classification mode, presumes the profiles of the parts which are shielded by the hands, and determines a classification mode aiming at whether the communication information has the racing products which meet the standard according to the first-level similarity between the profile characteristics and the first-level preset profiles arranged in the storage layer.
Further, the control layer adjusts an included angle between the video acquisition devices according to a difference value between the second-level preset similarity and the first-level similarity under a fourth preset condition, and marks the difference value between the second-level preset similarity and the first-level similarity as an adjustment difference value, wherein:
the first included angle adjusting mode is that the control layer uses a first adjusting angle to select a corresponding number of video acquisition devices to further determine the type of racing products to which the communication information belongs; the first included angle adjusting mode meets the condition that the adjusting difference is smaller than a first-level preset adjusting difference value set in the storage layer;
the second included angle adjusting mode is that the control layer uses a second adjusting angle to select a corresponding number of video acquisition devices to further determine the type of the racing product to which the communication information belongs; the second included angle adjusting mode meets the requirements that the adjusting difference is larger than or equal to the first-level preset adjusting difference value and smaller than or equal to a second-level preset adjusting difference value arranged in the storage layer, and the second-level preset adjusting difference value is larger than the first-level preset adjusting difference value;
the third included angle adjusting mode is that the control layer uses a third adjusting angle to select a corresponding number of video acquisition devices to further determine the type of the racing product to which the communication information belongs; the third included angle adjusting mode meets the condition that the adjusting difference is larger than a second-level preset adjusting difference value arranged in the storage layer;
And the fourth preset condition meets the requirement that the control layer further determines the type of the racing product to which the communication information belongs by combining the deflection communication information recorded by the equipment layer from different angles in a third classification mode.
Further, the control layer determines a determination mode for the number of video acquisition devices according to the adjustment difference value, wherein:
the first quantity determining mode is that the control layer uses a first preset quantity of equipment and selects corresponding video acquisition equipment according to the included angle among the video acquisition equipment; the first quantity determining mode meets the condition that the adjustment difference is smaller than a first-level preset adjustment difference value set in the storage layer;
the second number determining mode is that the control layer uses a second preset device number to select corresponding video acquisition devices according to the included angle among the video acquisition devices; the second number determining mode meets the condition that the adjustment difference is larger than or equal to the first-level preset adjustment difference value and smaller than or equal to the second-level preset adjustment difference value arranged in the storage layer;
the third number determining mode is that the control layer uses a third preset device number to select corresponding video acquisition devices according to the included angle among the video acquisition devices; the third quantity determining mode meets the condition that the adjustment difference is larger than a second-level preset adjustment difference value set in the storage layer.
Compared with the prior art, the method has the beneficial effects that the multi-layer structure of the equipment layer, the front stage layer, the middle stage layer, the storage layer and the control layer is arranged, and the judging and classifying processes are simplified through data interaction among the multi-layer structure, so that the accuracy of classifying and storing the communication information is improved; meanwhile, when judging that the racing product meeting the standard does not exist in the communication information, the corresponding processing mode is rapidly determined by calculating the corresponding feature similarity and comparing the feature similarity with the preset standard, so that the communication information is rapidly processed to further identify the racing product, and the classification storage efficiency of the communication information is further improved.
Further, the method and the device for classifying the racing products determine the primary classification mode of the racing products by calculating the first-level similarity and comparing the first-level similarity with the preset standard, and rapidly further judge according to different classification modes, so that the judging period is shortened, and the efficiency of classifying and storing the communication information is further improved.
Further, the invention carries out secondary judgment on the communication information meeting the second preset primary similarity by calculating the secondary similarity, thereby directly storing the communication information meeting the preset standard in the communication information and further processing the communication information which does not meet the preset standard, thereby reducing the judgment quantity of the communication information, shortening the judgment period and further improving the classified storage efficiency of the communication information.
Furthermore, the method and the device for adjusting the saturation of the wireless communication network determine the mode of adjusting the saturation by calculating the secondary similarity difference value, digitize the saturation adjusting process, and avoid the too long adjusting process time caused by excessive adjustment of the control layer when the control layer adjusts the saturation on the premise that the control layer can classify the communication information, thereby further improving the classifying and storing efficiency of the communication information.
Further, the method calculates the new secondary similarity after the saturation adjustment, and compares the new secondary similarity with the preset secondary similarity again to determine the processing mode of the communication information after the saturation adjustment, so that the adjusted video is rapidly processed, the quantity of the communication information to be judged is reduced, and the classified storage efficiency of the communication information is further improved.
Further, the method and the device determine the adjustment mode aiming at the definition by calculating the first-level similarity difference, so that different definition adjustment coefficients are adopted according to different communication information, excessive adjustment or unclear adjustment caused by the fact that the same adjustment coefficient is adopted for different communication information is avoided, average adjustment time length in the video definition adjustment process is shortened, and the efficiency of classified storage of the communication information is further improved.
Further, the secondary classification mode of the communication information is determined by calculating the profile similarity after the definition adjustment is completed, so that the communication information after the adjustment is re-judged, and the classification storage efficiency of the communication information is further improved.
Furthermore, the method eliminates the influence of hand shielding on the contour features by restoring the shielded contour, and classifies the food information according to the restored contour features, thereby improving the accuracy of the control system and further improving the efficiency of classifying and storing the communication information.
Furthermore, the invention selects video acquisition equipment with different angles according to different adjustment difference values, and accurately judges the type of the racing product in the communication information by comprehensively analyzing the videos with different angles, thereby further improving the accuracy of a control system and further improving the classified storage efficiency of the communication information.
Further, the invention determines the determination mode aiming at the number of the video acquisition devices by calculating the adjustment difference value, and rapidly selects the corresponding acquisition device from a plurality of video acquisition devices so as to rapidly further analyze the outline characteristics of the racing product in the communication information, thereby further improving the classified storage efficiency of the communication information.
Drawings
FIG. 1 is a schematic diagram of an intelligent racing product-based athletic control system according to the present invention;
FIG. 2 is a flow chart of a classification method of racing products according to the present invention;
FIG. 3 is a schematic diagram of a saturation adjustment flow of communication information according to the present invention;
fig. 4 is a schematic diagram of a secondary classification flow according to the present invention.
Detailed Description
In order that the objects and advantages of the invention will become more apparent, the invention will be further described with reference to the following examples; it should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the invention.
Preferred embodiments of the present invention are described below with reference to the accompanying drawings. It should be understood by those skilled in the art that these embodiments are merely for explaining the technical principles of the present invention, and are not intended to limit the scope of the present invention.
It should be noted that, in the description of the present invention, terms such as "upper," "lower," "left," "right," "inner," "outer," and the like indicate directions or positional relationships based on the directions or positional relationships shown in the drawings, which are merely for convenience of description, and do not indicate or imply that the apparatus or elements must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as limiting the present invention.
Furthermore, it should be noted that, in the description of the present invention, unless explicitly specified and limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be either fixedly connected, detachably connected, or integrally connected, for example; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium, and can be communication between two elements. The specific meaning of the above terms in the present invention can be understood by those skilled in the art according to the specific circumstances.
Referring to fig. 1, a schematic structural diagram of an intelligent racing control system according to the present invention includes:
the equipment layer is used for recording the process of using the racing product by the user from a plurality of angles in real time and generating corresponding communication information;
the foreground layer is connected with the equipment layer and comprises a plurality of application software which is directly used by users matched with the racing products of the corresponding types, and the software can package the communication information of the same racing product generated by the equipment layer. The software structure comprises: gateway, access suit, equipment suit, user suit, matching suit, chat suit, game suit, broadcast suit, list suit, teaching suit, wherein:
Gateway: the gateway is used as an entrance of each piece of software and is responsible for processing the requests of equipment and users, and can realize the functions of load balancing, security authentication, authority control and request routing; the gateway distributes the request to the corresponding back-end service by identifying the equipment information and the user information in the request; accessing the clothing: the access service is mainly responsible for processing the connection request of the user and providing stable and efficient connection service for the user; the access service connects the user to a proper back-end service by analyzing information in the user request; meanwhile, the access suit is also responsible for managing user connection establishment, maintenance and disconnection; equipment suit: the device service is responsible for handling device-related business logic such as device registration, binding, and status queries; the equipment suit realizes the management and storage of equipment information by receiving and processing the request sent by the equipment; user clothes: the user clothing is responsible for managing user information, including user registration, login and personal information modification; the user service stores user information through the database and interacts with other services through the API interface, so that sharing of the user information is realized; matching clothes: the matching clothes match proper opponents for the user according to the skill level, the geographic position and other information of the user so as to realize a fair competition environment; the matching algorithm may employ a hierarchical level or other suitable algorithm; chat service: the chat service is responsible for realizing the real-time communication function between the devices; the chat service can provide chat functions such as group chat, private chat and the like for users based on WebSocket or other real-time communication protocols; match clothes: the game clothes process game related logic such as game creation, start, end and result publication, and the game clothes realize the management and data recording of the game through interaction with other services such as equipment clothes, user clothes and the like; broadcasting clothes: the broadcasting clothes are responsible for pushing real-time information such as game dynamics, system notification and the like to the equipment; list of items is taken: the list service manages the ranking list data and provides various ranking list inquiry services; the list service provides real-time ranking information for the user by periodically calculating and updating the ranking list data; teaching clothes: the teaching suit provides teaching resources to assist the user in improving the athletic level; the game play system can provide contents such as game play, courses, online courses and the like, and helps users to quickly enter the game play system and improve skills.
The middle stage layer is connected with the front stage layer and used for carrying out data interaction with each application software, wherein the data interaction comprises user information in each application data and the communication information uploaded to the application software by each user;
the storage layer is connected with the middle platform layer and used for receiving and storing the communication information output by the middle platform layer;
the control layer is respectively connected with the middle layer and the storage layer and is used for determining whether the communication information has the racing product meeting the standard according to the characteristics in the communication information received by the storage layer, transmitting the communication information into a corresponding database in the storage layer according to the type of the racing product when the corresponding racing product is judged to be present, and adjusting the definition of the communication information according to the similarity between the characteristics in the communication information and the corresponding preset characteristics when the corresponding racing product is judged to be absent in the communication information, or further determining the type of the racing product to which the communication information belongs by combining the deflection communication information recorded by the equipment layer from different angles.
Fig. 2 is a schematic flow chart of a classification method of a racing product according to the present invention, wherein the control layer collects profile features in the communication information under a first preset condition and determines whether a classification method of a racing product meeting a standard exists in the communication information according to a first-level similarity between the profile features and a first-level preset profile set in the storage layer, wherein:
The first classification mode is that the control layer primarily judges that the communication information contains the racing product meeting the standard, and secondarily judges the type of the product to which the communication information belongs according to the secondary characteristic which is arranged in the storage layer and used for determining the type of the racing product; the first classification mode satisfies that the first-level similarity is greater than a second preset first-level similarity which is set in the storage layer by 85%;
the second classification mode is that the control layer preliminarily judges that no standard racing product exists in the communication information, and adjusts the definition of the communication information to a corresponding value according to a second preset first-level similarity and a first-level similarity difference value; the second classification mode meets the conditions that the first-level similarity is smaller than or equal to a second preset first-level similarity and larger than or equal to a first preset first-level similarity 60% set in the storage layer;
the third classification mode is that the control layer preliminarily judges that no standard racing product exists in the communication information and further determines the type of the racing product to which the communication information belongs by combining deflection communication information recorded by the equipment layer from different angles; the third classification mode satisfies that the first-level similarity is smaller than the first preset first-level similarity;
The first preset condition is that the equipment layer records the process of using the racing products by each user and generates corresponding communication information, and then the communication information is uploaded to the storage layer.
Specifically, the control layer initially completes the existence of standard racing products in the communication information and performs secondary judgment on the product types to which the communication information belongs by calculating secondary similarity in the first classification mode, wherein:
the first secondary classification mode is that the control layer judges the product type to which the communication information belongs and transmits the video to a corresponding database in the storage layer according to the product type information to which the communication information belongs; the first secondary classification mode meets the condition that the secondary similarity is greater than a secondary preset similarity preset in the storage layer by 85%;
the second secondary classification mode is that the control layer judges that the communication information does not have a corresponding racing product type, and the saturation of the communication information is adjusted to a corresponding value according to the calculated difference value between the second-level preset similarity and the second-level similarity; the second secondary classification mode meets the condition that the secondary similarity is smaller than or equal to the secondary preset similarity.
Referring to fig. 3, which is a schematic diagram of a saturation adjustment flow of the communication information according to the present invention, the control layer marks a difference between the second preset similarity and the second similarity as a second similarity difference and adjusts the saturation to a corresponding value according to the second similarity difference in a second classification mode, wherein:
The first saturation adjustment mode is that the control layer adjusts the video saturation to the first saturation by using a first saturation adjustment coefficient; the first saturation adjustment mode meets the condition that the secondary similarity difference value is smaller than a first preset secondary similarity difference value preset in the storage layer by 15%;
the second saturation adjustment mode is that the control layer adjusts the video saturation to the second saturation by using a second saturation adjustment coefficient; the second saturation adjustment mode meets the condition that the second-level similarity difference value is larger than or equal to the first preset second-level similarity difference value and smaller than or equal to 30% of a second preset second-level similarity difference value preset in the storage layer;
the third saturation adjustment mode is that the control layer adjusts the video saturation to third saturation by using a third saturation adjustment coefficient; the third saturation adjustment mode meets the condition that the second-level similarity difference value is larger than the second preset second-level similarity difference value.
Specifically, the control layer compares the newly acquired second-level similarity with a preset second-level similarity under a second preset condition to determine a processing mode for the communication information, wherein:
the first processing mode is that the control layer stores the communication information to a corresponding folder according to the specific type of the racing product; the first processing mode meets the condition that the new secondary similarity is larger than the secondary preset similarity after saturation adjustment;
The second processing mode is that the control layer reclassifies the types of racing products according to the communication information of other angle cameras; the second processing mode meets the condition that the new secondary similarity is smaller than or equal to the secondary preset similarity;
the second preset condition is that the control layer adjusts the saturation to a corresponding value according to a preset standard in a second secondary classification mode.
Specifically, the control layer calculates a second preset first-level similarity and a difference value of the first-level similarity in the second classification mode to determine an adjustment mode for video definition, and marks the difference value as a first-level similarity difference value, wherein:
the first definition adjusting mode is that the control layer adjusts the definition to the first definition by using a first definition adjusting coefficient of 1.25; the first definition adjusting mode meets the condition that the first-level similarity difference value is smaller than a first-level preset similarity difference value preset in the storage layer by 20%;
the second definition adjusting mode is that the control layer adjusts the definition to the second definition by using a second definition adjusting coefficient of 1.40; the second definition adjusting mode meets the condition that the first-level similarity difference value is larger than or equal to the first-level preset similarity difference value and smaller than or equal to 40% of a second-level preset similarity difference value preset in the storage layer;
The third definition adjusting mode is that the control layer adjusts the definition to the third definition by using a third definition adjusting coefficient of 1.60; the first definition adjusting mode meets the condition that the first-level similarity difference value is larger than the second-level preset similarity difference value.
Please refer to fig. 4, which is a schematic diagram of a secondary classification flow chart according to the present invention, wherein the control layer calculates the adjusted profile similarity to determine a secondary classification mode for the communication information under a third preset condition, wherein:
the first secondary classification mode is that the control layer preliminarily judges whether the communication information contains the racing product meeting the standard or not and judges the type of the communication information according to the secondary characteristics which are arranged in the storage layer and used for determining the type of the racing product; the first secondary classification mode meets the condition that the profile similarity after adjustment is larger than the secondary preset similarity;
the second classification mode is that the control layer corrects the outline so as to judge the type of the racing product; the second secondary classification mode satisfies that the profile similarity after adjustment is greater than or equal to the first-level preset similarity and less than or equal to the second-level preset similarity;
The third secondary classification mode is that the control layer judges the types of the racing products according to the competition records of other angles; the third secondary classification mode meets the condition that the profile similarity after adjustment is smaller than the first-level preset similarity;
the third preset condition is that the control layer completes the adjustment of the definition after calculating the contour similarity of the racing product and determining the adjustment mode for the video definition according to the contour similarity.
Specifically, the control layer extends the profile characteristics which are shielded by hands through curves and straight lines of the profiles which are not shielded by the hands in a second secondary classification mode, presumes the profile of the part which is shielded by the hands, and determines a classification mode aiming at whether the communication information has a racing product which accords with the standard according to the first-level similarity of the profile characteristics and the first-level preset profile which is arranged in the storage layer.
Specifically, the control layer adjusts an included angle between video acquisition devices according to a difference value between the second-level preset similarity and the first-level similarity under a fourth preset condition, and marks the difference value between the second-level preset similarity and the first-level similarity as an adjustment difference value, wherein:
the first included angle adjusting mode is that the control layer uses a first adjusting angle of 60 degrees to select a corresponding number of video acquisition devices to further determine the type of racing products to which the communication information belongs; the first included angle adjusting mode meets the condition that the adjusting difference is smaller than a first-level preset adjusting difference value 10% set in the storage layer;
The second included angle adjusting mode is that the control layer uses video acquisition equipment with a corresponding number selected by a second adjusting angle of 120 degrees to further determine the type of racing products to which the communication information belongs; the second included angle adjusting mode meets the condition that the adjusting difference is more than or equal to the first-level preset adjusting difference value and less than or equal to 20% of a second-level preset adjusting difference value arranged in the storage layer;
the third included angle adjusting mode is that the control layer uses a third adjusting angle of 180 degrees to select a corresponding number of video acquisition devices to further determine the type of the racing product to which the communication information belongs; the third included angle adjusting mode meets the condition that the adjusting difference is larger than a second-level preset adjusting difference value arranged in the storage layer;
and the fourth preset condition meets the requirement that the control layer further determines the type of the racing product to which the communication information belongs by combining the deflection communication information recorded by the equipment layer from different angles in a third classification mode.
Specifically, the control layer determines a determination manner for the number of video capture devices according to the adjustment difference, wherein:
the first number determining mode is that the control layer uses 2 first preset equipment numbers and selects corresponding video acquisition equipment according to the included angle among the video acquisition equipment; the first quantity determining mode meets the condition that the adjustment difference is smaller than a first-level preset adjustment difference value set in the storage layer;
The second number determining mode is that the control layer uses 3 second preset devices to select corresponding video acquisition devices according to the included angle among the video acquisition devices; the second number determining mode meets the condition that the adjustment difference is larger than or equal to the first-level preset adjustment difference value and smaller than or equal to the second-level preset adjustment difference value arranged in the storage layer;
the third number determining mode is that the control layer uses a third preset device number of 4 to select corresponding video acquisition devices according to the included angle among the video acquisition devices; the third quantity determining mode meets the condition that the adjustment difference is larger than a second-level preset adjustment difference value set in the storage layer.
Thus far, the technical solution of the present invention has been described in connection with the preferred embodiments shown in the drawings, but it is easily understood by those skilled in the art that the scope of protection of the present invention is not limited to these specific embodiments. Equivalent modifications and substitutions for related technical features may be made by those skilled in the art without departing from the principles of the present invention, and such modifications and substitutions will be within the scope of the present invention.
The foregoing description is only of the preferred embodiments of the invention and is not intended to limit the invention; various modifications and variations of the present invention will be apparent to those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (9)

1. An athletic control system based on intelligent racing products is characterized by comprising:
the equipment layer is used for recording the process of using the racing product by the user from a plurality of angles in real time and generating corresponding communication information;
the foreground layer is connected with the equipment layer and comprises a plurality of application software matched with the corresponding type of racing products for packaging communication information of the same racing product generated by the equipment layer;
the middle stage layer is connected with the front stage layer and used for carrying out data interaction with each application software, wherein the data interaction comprises user information in each application data and the communication information uploaded to the application software by each user;
the storage layer is connected with the middle platform layer and used for receiving and storing the communication information output by the middle platform layer;
the control layer is respectively connected with the middle layer and the storage layer and is used for determining whether a standard-compliant racing product exists in the communication information according to the characteristics in the communication information received by the storage layer, transmitting the communication information into a corresponding database in the storage layer according to the types of the racing products when the corresponding racing products are judged to exist, and adjusting the definition of the communication information according to the similarity between the characteristics in the communication information and the corresponding preset characteristics when the standard-compliant racing products are judged to not exist in the communication information, or further determining the types of the racing products to which the communication information belongs by combining the deflection communication information recorded by the equipment layer from different angles;
The control layer collects outline features in the communication information under a first preset condition and determines whether a classification mode of a racing product meeting a standard exists in the communication information according to the first-level similarity of the outline features and a first-level preset outline set in the storage layer, wherein:
the first classification mode is that the control layer primarily judges that the communication information contains the racing product meeting the standard, and secondarily judges the type of the product to which the communication information belongs according to the secondary characteristic which is arranged in the storage layer and used for determining the type of the racing product; the first classification mode satisfies that the first-level similarity is larger than a second preset first-level similarity set in the storage layer;
the second classification mode is that the control layer preliminarily judges that no standard racing product exists in the communication information, and adjusts the definition of the communication information to a corresponding value according to a second preset first-level similarity and a first-level similarity difference value; the second classification mode meets the requirements that the first-level similarity is smaller than or equal to a second preset first-level similarity and larger than or equal to a first preset first-level similarity arranged in the storage layer, and the second preset first-level similarity is larger than the first preset first-level similarity;
The third classification mode is that the control layer preliminarily judges that no standard racing product exists in the communication information and further determines the type of the racing product to which the communication information belongs by combining deflection communication information recorded by the equipment layer from different angles; the third classification mode satisfies that the first-level similarity is smaller than the first preset first-level similarity;
the first preset condition is that the equipment layer records the process of using the racing products by each user and generates corresponding communication information, and then the communication information is uploaded to the storage layer.
2. The intelligent racing product-based athletic control system of claim 1, wherein the control layer, in the first classification mode, initially completes the existence of standard racing products in the communication information and makes a secondary determination on the product type to which the communication information belongs by calculating a secondary similarity, wherein:
the first secondary classification mode is that the control layer judges the product type to which the communication information belongs and transmits the video to a corresponding database in the storage layer according to the product type information to which the communication information belongs; the first secondary classification mode meets the condition that the secondary similarity is larger than a secondary preset similarity preset in the storage layer;
The second secondary classification mode is that the control layer judges that the communication information does not have a corresponding racing product type, and the saturation of the communication information is adjusted to a corresponding value according to the calculated difference value between the second-level preset similarity and the second-level similarity; the second secondary classification mode meets the condition that the secondary similarity is smaller than or equal to the secondary preset similarity.
3. The intelligent racing product-based athletic control system of claim 2, wherein the control layer marks a difference between the secondary preset similarity and the secondary similarity as a secondary similarity difference in a second classification mode, and adjusts the saturation to a corresponding value according to the secondary similarity difference, wherein:
the first saturation adjustment mode is that the control layer adjusts the video saturation to the first saturation by using a first saturation adjustment coefficient; the first saturation adjustment mode meets the condition that the secondary similarity difference value is smaller than a first preset secondary similarity difference value preset in the storage layer;
the second saturation adjustment mode is that the control layer adjusts the video saturation to the second saturation by using a second saturation adjustment coefficient; the second saturation adjustment mode meets the condition that the second-level similarity difference value is larger than or equal to the first preset second-level similarity difference value and smaller than or equal to a second preset second-level similarity difference value preset in the storage layer, and the second preset second-level similarity difference value is larger than the first preset second-level similarity difference value;
The third saturation adjustment mode is that the control layer adjusts the video saturation to third saturation by using a third saturation adjustment coefficient; the third saturation adjustment mode meets the condition that the second-level similarity difference value is larger than the second preset second-level similarity difference value.
4. The intelligent racing product-based athletic control system of claim 3, wherein the control layer compares the newly acquired second-level similarity with a preset second-level similarity under a second preset condition to determine a processing manner for the communication information, wherein:
the first processing mode is that the control layer stores the communication information to a corresponding folder according to the specific type of the racing product; the first processing mode meets the condition that the new secondary similarity is larger than the secondary preset similarity after saturation adjustment;
the second processing mode is that the control layer reclassifies the types of racing products according to the communication information of other angle cameras; the second processing mode meets the condition that the new secondary similarity is smaller than or equal to the secondary preset similarity;
the second preset condition is that the control layer adjusts the saturation to a corresponding value according to a preset standard in a second secondary classification mode.
5. The intelligent racing product-based athletic control system of claim 1, wherein the control layer calculates a second preset first level similarity and a first level similarity difference in the second classification mode to determine an adjustment mode for video sharpness, and marks the difference as a first level similarity difference, wherein:
the first definition adjusting mode is that the control layer adjusts the definition to the first definition by using a first definition adjusting coefficient; the first definition adjusting mode meets the condition that the first-level similarity difference value is smaller than a first-level preset similarity difference value preset in the storage layer;
the second definition adjusting mode is that the control layer adjusts the definition to the second definition by using a second definition adjusting coefficient; the second definition adjusting mode meets the requirements that the first-level similarity difference value is larger than or equal to the first-level preset similarity difference value and smaller than or equal to a second-level preset similarity difference value preset in the storage layer, and the second-level preset similarity difference value is larger than the first-level preset similarity difference value;
the third definition adjusting mode is that the control layer adjusts the definition to a third definition by using a third definition adjusting coefficient; the first definition adjusting mode meets the condition that the first-level similarity difference value is larger than the second-level preset similarity difference value.
6. The intelligent racing product-based athletic control system of claim 5, wherein the control layer calculates the adjusted profile similarity to determine a secondary classification for the communication information under a third preset condition, wherein:
the first secondary classification mode is that the control layer preliminarily judges whether the communication information contains the racing product meeting the standard or not and judges the type of the communication information according to the secondary characteristics which are arranged in the storage layer and used for determining the type of the racing product; the first secondary classification mode meets the condition that the profile similarity after adjustment is larger than a secondary preset similarity;
the second classification mode is that the control layer corrects the outline so as to judge the type of the racing product; the second secondary classification mode satisfies that the profile similarity after adjustment is greater than or equal to the first-level preset similarity and less than or equal to the second-level preset similarity;
the third secondary classification mode is that the control layer judges the types of the racing products according to the competition records of other angles; the third secondary classification mode meets the condition that the profile similarity after adjustment is smaller than the first-level preset similarity;
The third preset condition is that the control layer completes the adjustment of the definition after calculating the contour similarity of the racing product and determining the adjustment mode for the video definition according to the contour similarity.
7. The intelligent racing product-based athletic control system of claim 6, wherein the control layer extends a curve and a straight line of a contour which is not shielded by a hand in the shielded contour feature in a second classification mode, estimates a contour of a portion shielded by the hand, and determines whether a classification mode of a racing product meeting a standard exists in the communication information according to a first-level similarity of the contour feature and a first-level preset contour set in the storage layer.
8. The intelligent racing product-based athletic control system of claim 1, wherein the control layer adjusts an included angle between the video capturing devices according to a difference between the second-level preset similarity and the first-level similarity under a fourth preset condition, and marks the difference between the second-level preset similarity and the first-level similarity as an adjustment difference, wherein:
the first included angle adjusting mode is that the control layer uses a first adjusting angle to select a corresponding number of video acquisition devices to further determine the type of racing products to which the communication information belongs; the first included angle adjusting mode meets the condition that the adjusting difference is smaller than a first-level preset adjusting difference value set in the storage layer;
The second included angle adjusting mode is that the control layer uses a second adjusting angle to select a corresponding number of video acquisition devices to further determine the type of the racing product to which the communication information belongs; the second included angle adjusting mode meets the requirements that the adjusting difference is larger than or equal to the first-level preset adjusting difference value and smaller than or equal to a second-level preset adjusting difference value arranged in the storage layer, and the second-level preset adjusting difference value is larger than the first-level preset adjusting difference value;
the third included angle adjusting mode is that the control layer uses a third adjusting angle to select a corresponding number of video acquisition devices to further determine the type of the racing product to which the communication information belongs; the third included angle adjusting mode meets the condition that the adjusting difference is larger than a second-level preset adjusting difference value arranged in the storage layer;
and the fourth preset condition meets the requirement that the control layer further determines the type of the racing product to which the communication information belongs by combining the deflection communication information recorded by the equipment layer from different angles in a third classification mode.
9. The intelligent racing product-based athletic control system of claim 1, wherein the control layer determines a determination of the number of video capture devices based on the adjustment difference, wherein:
The first quantity determining mode is that the control layer uses a first preset quantity of equipment and selects corresponding video acquisition equipment according to the included angle among the video acquisition equipment; the first quantity determining mode meets the condition that the adjustment difference is smaller than a first-level preset adjustment difference value set in the storage layer;
the second number determining mode is that the control layer uses a second preset device number to select corresponding video acquisition devices according to the included angle among the video acquisition devices; the second number determining mode meets the condition that the adjustment difference is larger than or equal to the first-level preset adjustment difference value and smaller than or equal to the second-level preset adjustment difference value arranged in the storage layer;
the third number determining mode is that the control layer uses a third preset device number to select corresponding video acquisition devices according to the included angle among the video acquisition devices; the third quantity determining mode meets the condition that the adjustment difference is larger than a second-level preset adjustment difference value set in the storage layer.
CN202310928520.8A 2023-07-26 2023-07-26 Intelligent racing product-based athletic control system Active CN116933138B (en)

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