CN117858312A - Smart court control method, smart court control system and readable storage medium - Google Patents

Smart court control method, smart court control system and readable storage medium Download PDF

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Publication number
CN117858312A
CN117858312A CN202410059146.7A CN202410059146A CN117858312A CN 117858312 A CN117858312 A CN 117858312A CN 202410059146 A CN202410059146 A CN 202410059146A CN 117858312 A CN117858312 A CN 117858312A
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China
Prior art keywords
information
court
target
adjacent
light
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王一霖
杨春明
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Southwest University Of Science And Technology Sichuan Tianfu New Area Innovation Research Institute
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Southwest University Of Science And Technology Sichuan Tianfu New Area Innovation Research Institute
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Priority to CN202410059146.7A priority Critical patent/CN117858312A/en
Publication of CN117858312A publication Critical patent/CN117858312A/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/40Control techniques providing energy savings, e.g. smart controller or presence detection

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Abstract

The invention provides a control method, a system and a readable storage medium of a smart court, wherein the method comprises the following steps: obtaining court information of a target court and adjacent courts; acquiring light irradiation information based on the court information; and controlling the light module to irradiate the target court and the adjacent court based on the light information. Through the mode, different light irradiation information can be generated through different court information, so that the light module can be adapted to different court information to irradiate a target court and an adjacent court.

Description

Smart court control method, smart court control system and readable storage medium
Technical Field
The invention relates to the technical field of intelligent courts, in particular to a control method and system of an intelligent court and a readable storage medium.
Background
In the prior art, for large cities with fewer movable places, the prior sports field is difficult to meet the requirements of multiple ball games of users.
There is a new court, which can be used for different sports such as basketball, volleyball, badminton, table tennis, etc. in different time periods by using the same court, and different sports fields are built by rapidly moving different facilities.
In the prior art, the light irradiation is the same regardless of the kind of the sports ground, and the fixed light irradiation affects the user for different sports.
Disclosure of Invention
One of the objectives of the present invention is to provide a method, a system and a readable storage medium for controlling a smart court, which are used for solving the above-mentioned technical problems.
Embodiments of the invention may be implemented as follows: in a first aspect, there is provided a control method for a smart pitch, the method comprising:
obtaining court information of a target court and adjacent courts;
acquiring light irradiation information based on the court information;
and controlling the light module to irradiate the target court and the adjacent court based on the light information.
In an alternative embodiment, the acquiring the course information of the target course and the adjacent courses includes:
acquiring the motion information of the target court and the adjacent court;
acquiring the information of the number of people in the target court and the adjacent court;
the course information is generated based on the sports information and the population information.
In an alternative embodiment, the generating the course information based on the sports information and the population information includes:
respectively determining the sports condition of the target court and the sports condition of the adjacent court based on the information of the number of people of the target court and the adjacent court and the corresponding sports information;
and taking the sports condition of the target court and the sports condition of the adjacent court as the court information.
In an alternative embodiment, the sport information includes a ball situation, and the determining the sport situation of the target course and the sport situation of the adjacent course based on the information of the number of people of the target course and the adjacent course and the corresponding sport information includes:
determining target ranges of the target court and the adjacent court respectively based on respective ball conditions of the target court and the adjacent court;
determining the number of people in each target range of the target court and the adjacent court based on the number of people information and the target range;
and determining respective movement conditions of the target court and the adjacent court based on the number of people and the ball conditions.
In an optional embodiment, the obtaining light irradiation information based on the court information includes:
inputting the court information into a preset irradiation model;
and outputting the lamplight irradiation information through the preset irradiation model.
In an optional embodiment, the preset illumination model includes light module information, the light module information includes brightness information, range information and light uniformity information of each lamp of the light module, and outputting the light illumination information through the preset illumination model includes:
acquiring a plurality of groups of candidate lamplight irradiation information;
determining an illumination score based on the candidate light illumination information, light module information and court information;
taking the group with the largest corresponding illumination score in the plurality of groups of candidate light illumination information as the light illumination information;
the illumination score is an average value of the illumination scores of the corresponding sub-fields of the target court and the adjacent court, the illumination score of the target court is a weighted value of the brightness information, the range information and the light uniformity information under the corresponding weight score of the court information corresponding to the target court, and the illumination score of the adjacent court is a weighted value of the brightness information, the range information and the light uniformity information under the corresponding weight score of the court information corresponding to the adjacent court.
In an alternative embodiment, before the obtaining the course information of the target course and the adjacent courses, the method further includes:
acquiring the latest approach information;
and taking the court corresponding to the latest approach information as the target court.
In an alternative embodiment, the acquiring the information of the number of people in the target court and the adjacent court includes:
acquiring video information of the target court and adjacent courts, wherein the video information comprises continuous image frames;
and determining the number information of the target court and the adjacent court based on the continuous image frames.
In a second aspect, the present invention provides a control system for a smart court, where the control system includes a main control module and a light module;
the main control module is used for acquiring the court information of the target court and the adjacent court;
the main control module is used for acquiring light irradiation information based on the court information;
the main control module is used for controlling the light module to irradiate the target court and the adjacent court based on the light information.
In a third aspect, the present invention provides a control system for a smart pitch, comprising a processor and a memory, the memory storing a computer program executable by the processor, the processor being executable by the computer program to implement the control method for a smart pitch of the first aspect.
In a fourth aspect, the present invention provides a readable storage medium having stored thereon a computer program, characterized in that the computer program, when executed by a processor, implements the method for controlling a smart pitch according to the first aspect.
The intelligent court control method, the intelligent court control system and the readable storage medium provided by the invention are used for acquiring the court information of a target court and an adjacent court; acquiring light irradiation information based on the court information; and controlling the light module to irradiate the target court and the adjacent court based on the light information. Thereby can be based on court information and generate corresponding light irradiation information to control light module based on light irradiation information, thereby throw target court and adjacent court, so that light module can carry out different irradiations and not fixed irradiations, thereby be adapted to different court information, thereby improve user's experience sense, and its court information is relevant with different sports, consequently can provide different light irradiation information to different sports, and control light module carries out different irradiations.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings that are needed in the embodiments will be briefly described below, it being understood that the following drawings only illustrate some embodiments of the present invention and therefore should not be considered as limiting the scope, and other related drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic flow chart of an embodiment of a control method for a smart pitch provided by an embodiment of the present invention;
FIG. 2 is a flow chart illustrating the substeps of step S11 of FIG. 1;
FIG. 3 is a flow chart illustrating the substep of step S113 of FIG. 2;
FIG. 4 is a flow chart illustrating the substeps of step S1131 of FIG. 3;
FIG. 5 is a flow chart of the substeps of "outputting the lamp light irradiation information through the preset irradiation model" in step S12 of FIG. 1;
fig. 6 is a schematic block diagram of an embodiment of a control system for a smart pitch according to an embodiment of the present invention.
Fig. 7 is a block diagram of another embodiment of a control system for a smart pitch according to an embodiment of the present invention.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present invention more apparent, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is apparent that the described embodiments are some embodiments of the present invention, but not all embodiments of the present invention. The components of the embodiments of the present invention generally described and illustrated in the figures herein may be arranged and designed in a wide variety of different configurations.
Thus, the following detailed description of the embodiments of the invention, as presented in the figures, is not intended to limit the scope of the invention, as claimed, but is merely representative of selected embodiments of the invention. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
It should be noted that: like reference numerals and letters denote like items in the following figures, and thus once an item is defined in one figure, no further definition or explanation thereof is necessary in the following figures.
In the description of the present invention, it should be noted that, if the terms "upper", "lower", "inner", "outer", and the like indicate an azimuth or a positional relationship based on the azimuth or the positional relationship shown in the drawings, or the azimuth or the positional relationship in which the inventive product is conventionally put in use, it is merely for convenience of describing the present invention and simplifying the description, and it is not indicated or implied that the apparatus or element referred to must have a specific azimuth, be configured and operated in a specific azimuth, and thus it should not be construed as limiting the present invention.
Furthermore, the terms "first," "second," and the like, if any, are used merely for distinguishing between descriptions and not for indicating or implying a relative importance.
It should be noted that the features of the embodiments of the present invention may be combined with each other without conflict.
As shown in fig. 1, an embodiment of the present invention provides a control method for a smart pitch, which is particularly applicable to a control system for a smart pitch.
S11, obtaining the court information of the target court and the adjacent court.
And obtaining the court information of the target court and the adjacent courts.
In an alternative scenario, when playing a ball, the light of the court can be affected, and the light of the court can be further affected, particularly when playing a badminton, the court light is generally inclined, so that the court with the partition wall can be affected.
Therefore, when the light module needs to be adjusted, a plurality of courts need to be combined for adjustment instead of adjusting a single court, so that court information of a target court and adjacent courts needs to be acquired.
In an alternative embodiment, adjacent courses refer specifically to other courses having an adjacent or common boundary with the area in which the target course is located.
Referring to fig. 2, fig. 2 is a schematic flow chart of the substeps of step S11 in fig. 1, which specifically includes the following steps:
and S111, acquiring the motion information of the target court and the adjacent court.
First, the sports information of the target course and the adjacent courses is acquired.
Alternatively, the athletic information may include ball conditions such as shuttlecocks, basketball, volleyball, table tennis, etc., without limitation.
In an alternative embodiment, the sports information of the target court and the adjacent court can be determined by order information, wherein the order information comprises the sports information of different time periods of each court.
In an alternative embodiment, the sports information of the target course and the adjacent courses thereof may also be determined by acquiring the video information of the target course and the adjacent courses.
Optionally, the current sports information of the target court and the adjacent court is determined by identifying the video information of the target court and the adjacent court and matching with the sports equipment, sports lineup and the like corresponding to each sports pre-stored in the database.
S112, acquiring the information of the number of people in the target court and the adjacent courts.
Subsequently, information on the number of persons on the target course and the adjacent courses can be acquired.
Alternatively, the information on the number of persons in the target course and the adjacent courses may be determined by acquiring video information of the target course and the adjacent courses.
In an alternative embodiment, video information of the target course and the adjacent courses may be acquired using respective monitoring devices installed at the smart course.
In an alternative embodiment, the video information comprises successive image frames in an alternative embodiment.
The information on the number of persons on the target course and the adjacent courses is then determined based on the continuous image frames.
Optionally, taking the target court as an example, if there are continuous first preset number frames, and in the continuous first preset number frames, there are continuous second preset number frames, and the people in each frame can be matched with the people in any other frame, the number of the continuous first preset number frames or the continuous second preset number frames and the positions of the corresponding people are used as the number information of the target court.
Similarly, the adjacent court corresponding to the target court is the same calculation method, if continuous first preset number frames exist, the same number of people exist, continuous second preset number frames exist in the continuous first preset number frames, people in each frame can be matched with people in any other frame, and the number of people in the continuous first preset number frames or the continuous second preset number frames and the positions of the corresponding people are used as the number information of the adjacent court.
Optionally, the second preset number of frames is less than or equal to the first preset number of frames, which is not limited herein.
S113, generating the court information based on the sport information and the number of people information.
After the sports information and the number of people information of the target course and the adjacent courses are determined, the course information can be generated based on the sports information and the number of people information.
Referring to fig. 3, fig. 3 is a schematic flow chart of the substeps of step S113 in fig. 2, which specifically includes the following substeps:
s1131, determining the movement condition of the target court and the movement condition of the adjacent court respectively based on the number information of people of the target court and the adjacent court and the corresponding movement information.
Alternatively, the play situation of the target course and the play situation of the adjacent course may be determined based on the information of the number of people of the target course and the adjacent course and the corresponding play information, respectively.
Namely, the playing condition of the target court is determined based on the number information of the target court and the playing information, and the playing condition of the adjacent court is determined based on the number information of the adjacent court and the corresponding playing information.
As shown in fig. 4, fig. 4 is a schematic flow chart of the substeps of step S1131 in fig. 3, which specifically includes the steps of:
s11311, respectively determining target ranges of the target court and the adjacent court based on respective ball situations of the target court and the adjacent court.
And respectively determining the target ranges of the target court and the adjacent court based on the respective ball conditions of the target court and the adjacent court.
Alternatively, the target course may actually be a relatively large playing area, and the portion actually playing sports may only occupy a part, so that the target range of the first target course is required based on the ball situation corresponding to the target course.
Similarly, for adjacent courses, the target range is also determined based on the ball condition corresponding to the adjacent course.
As an alternative, if the ball situation of the target course represents a shuttlecock, it is necessary to determine a target range corresponding to the shuttlecock based on the target course.
Specifically, if the ball condition of the target court is a badminton, identifying video information of the target court, determining an intermediate net, adapting the intermediate net with a preset badminton boundary frame, projecting the badminton boundary frame into the video information to match with a boundary line of the video information, determining a boundary line corresponding to the video information, and taking a range enclosed by the boundary line as a target range of the target court.
As an alternative, if the ball situation of the adjacent course indicates a table tennis ball, a target range corresponding to the table tennis ball needs to be determined based on the table tennis ball.
Specifically, if the ball condition of the adjacent court is a table tennis, identifying video information of the adjacent court, determining the position of a table tennis table, adapting the table tennis table with a preset table tennis boundary frame based on the position of the table tennis table, and projecting the table tennis boundary frame into the video information to determine a corresponding target range in the video information.
Optionally, the target range of the target court is smaller than or equal to the whole range of the target court.
Optionally, the target range of the adjacent court is less than or equal to the whole range of the adjacent court.
And S11312, determining the number of people in the target range of the target court and the adjacent court based on the number of people information and the target range.
The number of people in each target range can then be determined based on the information of the number of people corresponding to each target course and the adjacent courses and the respective target ranges.
Optionally, taking the target court as an example, the number of people falling in the target range is determined based on the corresponding number of people information, so as to determine the number of people in the target range in the target court.
Alternatively, taking an adjacent course as an example, the number of people falling within the target range is determined based on the corresponding number of people information, so as to determine the number of people within the target range in the target course.
S11313, determining respective movement conditions of the target court and the adjacent court based on the number of people and the ball condition.
Then, the playing condition of the target course may be determined based on the ball condition corresponding to the target course and the corresponding number of people in the target range, and the playing condition of the adjacent course may be determined based on the ball condition corresponding to the adjacent course and the number of people in the target range.
Optionally, taking the target court as an example, after determining the ball situation and after determining the number of people in the target range, if the ball situation is a badminton and the number of people in the target range is 4, the game situation can be determined to be a double play of the badminton, and if the number of people in the target range is 2, the game situation can be determined to be a single play of the badminton.
Alternatively, taking an adjacent course as an example, after determining the ball situation and after determining the number of people in the target range, if the ball situation is table tennis and the number of people in the target range is 4, it can be determined that the sports situation is double play of table tennis and the number of people in the target range is 2, and it can be determined that the sports situation is single play of table tennis.
Optionally, for sports, the lighting requirements for different ball games are different, in particular, the lighting requirements for different game forms are different due to different stations, so that the sports situation not only comprises specific ball situations, but also further comprises the situation of people.
And S1132, taking the playing condition of the target court and the playing condition of the adjacent court as the court information.
After the play condition of the target court is determined, the play condition of the adjacent court is taken as court information.
S12, acquiring light irradiation information based on the court information.
Then, light irradiation information is acquired based on the course information.
Alternatively, the court information may be input into a preset irradiation model, and the light irradiation information may be input through the preset irradiation model.
In an alternative embodiment, the preset illumination model includes light module information, and the light module information includes brightness information, range information and light uniformity information of each lamp of the light module.
Referring to fig. 5, fig. 5 is a schematic flow chart of the substep of "outputting the lamplight irradiation information through the preset irradiation model" in step S12 of fig. 1, which specifically includes:
s121, multiple groups of candidate lamplight irradiation information are acquired.
Optionally, multiple sets of candidate light irradiation information are acquired first, where the multiple sets of candidate light irradiation information may be different combinations of pre-stored different control information for different courses (such as a target course or an adjacent course). The control information for a single course may include a plurality of kinds of brightness information, range information, light uniformity information, and light irradiation angles, etc. for different gear positions, combined into different control information.
And then combining a plurality of different control information of a plurality of courts to form a plurality of groups of candidate lamplight irradiation information.
S122, determining the illumination score based on the candidate light illumination information, the light module information and the court information.
And determining the illumination score based on the candidate light illumination information, the light module information and the court information.
Specifically, through the simulation of a preset irradiation model, irradiation conditions are formed based on candidate lamplight irradiation information and lamplight module information, and then the illumination score is determined based on court information and the irradiation conditions.
Optionally, the illumination score is an average value of respective corresponding sub-illumination scores of the target course and the adjacent courses, that is, the illumination score is obtained as an average value of sub-illumination scores of each of a plurality of courses (including the target course and the adjacent courses).
Optionally, the sub-illumination score of each course is specifically a weighted value of the brightness information, the range information and the light uniformity information under the corresponding weight score of the corresponding course information.
Taking a target court as an example, the sub-illumination score of the target court is a weighted value of the brightness information, the range information and the light uniformity information under the corresponding weight score of the court information corresponding to the target court.
Specifically, different weighting combinations corresponding to different court information, such as 3/3/4 or 4/2/4, are simulated through a preset illumination model, illumination conditions of the target court are formed based on candidate lamplight illumination information and lamplight module information, so that brightness information, range information and light uniformity information corresponding to the target court are determined, and corresponding weighting combinations are based on the brightness information, the range information and the light uniformity information, so that corresponding weighting value scores are determined.
The adjacent courts are similar, and the sub-illumination scores of the adjacent courts are weighted values of the brightness information, the range information and the light uniformity information under the corresponding weight scores of the court information corresponding to the adjacent courts. And are not described in detail herein.
And S123, taking a group with the largest corresponding illumination score in the plurality of groups of candidate light illumination information as the light illumination information.
And then, the group with the largest illumination score corresponding to the plurality of groups of candidate lamplight illumination information can be used as lamplight illumination information.
S13, controlling the light module to irradiate the target court and the adjacent court based on the light information.
Optionally, the light module can be installed in the top of wisdom court, and it includes the multiunit LED light source that array or interval set up.
Optionally, the light module is controlled to irradiate the target court and the adjacent court based on the light information.
The light module is controlled based on the light information, so that the target court and the adjacent court are irradiated by the light module.
In the above embodiment, a control method for a smart pitch is provided, in which pitch information of a target pitch and pitch information of an adjacent pitch are acquired; acquiring light irradiation information based on the court information; and controlling the light module to irradiate the target court and the adjacent court based on the light information. Thereby can be based on court information and generate corresponding light irradiation information to control light module based on light irradiation information, thereby throw target court and adjacent court, so that light module can carry out different irradiations and not fixed irradiations, thereby be adapted to different court information, thereby improve user's experience sense, and its court information is relevant with different sports, consequently can provide different light irradiation information to different sports, and control light module carries out different irradiations.
The invention also provides a control system of the smart court, as shown in fig. 6, fig. 6 is a block schematic diagram of the control system of the smart court provided by the application, and the control system of the smart court comprises a main control module 400 and a light module 500 connected with the main control module 400.
The main control module 400 is used for acquiring the court information of the target court and the adjacent court.
The main control module 400 is further used for acquiring light irradiation information based on the court information;
the main control module 400 is further configured to control the light module 500 to illuminate the target court and the adjacent court based on the light information.
Optionally, the control system of the smart pitch further comprises a monitoring device 600 connected to the main control module 400, which monitoring device 600 can be used to obtain video information on the target pitch as well as on neighboring pitches.
The invention also provides a control device of the control System of the intelligent court, and each functional module in the control device of the control System of the intelligent court can be stored in a memory in the form of software or Firmware (Firmware) or solidified in Operating equipment (OS) of the control System of the intelligent court and can be executed by a processor in the control System of the intelligent court. Meanwhile, data, codes of programs, and the like required to execute the above-described modules may be stored in the memory.
Therefore, the embodiment of the invention also provides a control system of the smart court, as shown in fig. 7, and fig. 7 is a block schematic diagram of the control system of the smart court provided by the embodiment of the invention. The control system 300 of the smart pitch comprises a communication interface 301, a processor 302 and a memory 303. The processor 302, the memory 303 and the communication interface 301 are electrically connected directly or indirectly to each other to realize data transmission or interaction. For example, the components may be electrically connected to each other via one or more communication buses or signal lines. The memory 303 may be used to store software programs and modules, such as program instructions/modules corresponding to the control method of the smart pitch provided in the embodiments of the present invention, and the processor 302 executes the software programs and modules stored in the memory 303, thereby performing various functional applications and data processing. The communication interface 301 may be used for communication of signaling or data with other node devices. The control system 300 of the smart pitch in the present invention may have a plurality of communication interfaces 301.
The Memory 303 may be, but is not limited to, random access Memory (Random Access Memory, RAM), read Only Memory (ROM), programmable Read Only Memory (Programmable Read-Only Memory, PROM), erasable Read Only Memory (Erasable Programmable Read-Only Memory, EPROM), electrically erasable Read Only Memory (Electric Erasable Programmable Read-Only Memory, EEPROM), etc.
The processor 302 may be an integrated circuit chip with signal processing capabilities. The processor may be a general-purpose processor including a central processing unit (Central Processing Unit, CPU), a network processor (NetworM Processor, NP), etc.; but also digital signal processors (Digital Signal Processing, DSP), application specific integrated circuits (Application Specific Integrated Circuit, ASIC), field programmable gate arrays (Field-Programmable Gate Array, FPGA) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc.
The embodiment of the present invention also provides a readable storage medium having stored thereon a computer program which, when executed by a processor, implements a method of controlling a smart pitch as in any of the preceding embodiments. The computer readable storage medium may be, but is not limited to, a usb disk, a removable hard disk, ROM, RAM, PROM, EPROM, EEPROM, a magnetic disk, or an optical disk, etc. various media capable of storing program codes.
In summary, a method, a system and a readable storage medium for controlling a smart course are provided to obtain course information of a target course and adjacent courses; acquiring light irradiation information based on the court information; and controlling the light module to irradiate the target court and the adjacent court based on the light information. Thereby can be based on court information and generate corresponding light irradiation information to control light module based on light irradiation information, thereby throw target court and adjacent court, so that light module can carry out different irradiations and not fixed irradiations, thereby be adapted to different court information, thereby improve user's experience sense, and its court information is relevant with different sports, consequently can provide different light irradiation information to different sports, and control light module carries out different irradiations.
The present invention is not limited to the above embodiments, and any changes or substitutions that can be easily understood by those skilled in the art within the technical scope of the present invention are intended to be included in the scope of the present invention. Therefore, the protection scope of the invention is subject to the protection scope of the claims.

Claims (11)

1. A method for controlling a smart pitch, the method comprising:
obtaining court information of a target court and adjacent courts;
acquiring light irradiation information based on the court information;
and controlling the light module to irradiate the target court and the adjacent court based on the light information.
2. The control method according to claim 1, wherein the acquiring of the course information of the target course and the adjacent courses includes:
acquiring the motion information of the target court and the adjacent court;
acquiring the information of the number of people in the target court and the adjacent court;
the course information is generated based on the sports information and the population information.
3. The control method according to claim 2, characterized in that the generation of the course information based on the sports information and the number of persons information includes:
respectively determining the sports condition of the target court and the sports condition of the adjacent court based on the information of the number of people of the target court and the adjacent court and the corresponding sports information;
and taking the sports condition of the target court and the sports condition of the adjacent court as the court information.
4. A control method according to claim 3, wherein the play information includes ball situations, and the determining the play situations of the target course and the adjacent course based on the number of people information of the target course and the adjacent course and the corresponding play information, respectively, includes:
determining target ranges of the target court and the adjacent court respectively based on respective ball conditions of the target court and the adjacent court;
determining the number of people in each target range of the target court and the adjacent court based on the number of people information and the target range;
and determining respective movement conditions of the target court and the adjacent court based on the number of people and the ball conditions.
5. The control method according to claim 1, wherein the obtaining light irradiation information based on the course information includes:
inputting the court information into a preset irradiation model;
and outputting the lamplight irradiation information through the preset irradiation model.
6. The control method according to claim 5, wherein the preset illumination model includes light module information including brightness information, range information, and light uniformity information of each lamp of the light module, and the outputting the light illumination information through the preset illumination model includes:
acquiring a plurality of groups of candidate lamplight irradiation information;
determining an illumination score based on the candidate light illumination information, light module information and court information;
taking the group with the largest corresponding illumination score in the plurality of groups of candidate light illumination information as the light illumination information;
the illumination score is an average value of the illumination scores of the corresponding sub-fields of the target court and the adjacent court, the illumination score of the target court is a weighted value of the brightness information, the range information and the light uniformity information under the corresponding weight score of the court information corresponding to the target court, and the illumination score of the adjacent court is a weighted value of the brightness information, the range information and the light uniformity information under the corresponding weight score of the court information corresponding to the adjacent court.
7. The control method according to claim 1, characterized by further comprising, before the obtaining of the course information of the target course and the adjacent courses:
acquiring the latest approach information;
and taking the court corresponding to the latest approach information as the target court.
8. The control method according to claim 2, wherein the acquiring the information on the number of people in the target course and in the adjacent courses includes:
acquiring video information of the target court and adjacent courts, wherein the video information comprises continuous image frames;
and determining the number information of the target court and the adjacent court based on the continuous image frames.
9. The control system of the intelligent court is characterized by comprising a main control module and a light module;
the main control module is used for acquiring the court information of the target court and the adjacent court;
the main control module is used for acquiring light irradiation information based on the court information;
the main control module is used for controlling the light module to irradiate the target court and the adjacent court based on the light information.
10. A control system for a smart pitch, comprising a processor and a memory, the memory storing a computer program executable by the processor, the processor being executable by the computer program to implement the control method for a smart pitch of any one of claims 1 to 8.
11. A readable storage medium, on which a computer program is stored, characterized in that the computer program, when executed by a processor, implements the control method of a smart pitch according to any one of claims 1-8.
CN202410059146.7A 2024-01-15 2024-01-15 Smart court control method, smart court control system and readable storage medium Pending CN117858312A (en)

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