CN109785198A - Discipline restriction method, apparatus, medium and electronic equipment based on data analysis - Google Patents
Discipline restriction method, apparatus, medium and electronic equipment based on data analysis Download PDFInfo
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Abstract
The present invention relates to big data technical fields, disclose a kind of discipline restriction method, apparatus, medium and electronic equipment based on data analysis.This method comprises: obtaining the current geographic position and current time of first terminal, the first terminal is the terminal of the first user, and the first terminal is stored with the e-courses table generated according to the data of local terminal;Target classroom geographical location is obtained based on current time and the e-courses table;When the current geographic position is located within the scope of the predetermined geographic locality determined according to target classroom geographical location, generates checking card for first user and information and send the information of checking card to second terminal.Under the method, the information recorded on e-courses table is utilized, allowing user using the record for carrying out attendance by way of checking card, so that teacher does not have to individually take time to check student's class attendance situation, the function of enriching e-courses table improves the utilization rate of time in classroom.
Description
Technical Field
The invention relates to the technical field of big data, in particular to a discipline constraint method, a discipline constraint device, a discipline constraint medium and electronic equipment based on data analysis.
Background
With the progress of society and the development of technology, mankind has entered the digital age. The digitalized wave has increasingly penetrated into all walks of life and permeates into social production life, which brings great influence to the production life style of the traditional form, and the requirements for digitalization and informatization are increasingly prominent in the transformation and upgrading process of all walks of life, and the education industry is probably beyond the best.
In the education industry, a digital revolution is currently underway, and a curriculum schedule is used as an essential tool for students to go to school and plays a great role in helping the students to learn and plan curriculum. However, in the current teaching process, the curriculum schedule still adopts a paper form, students usually record curriculum information by taking photos or copying through mobile devices, even though the curriculum schedule in an electronic form appears, the curriculum schedule only has a display function, has a limited effect on the students, and meanwhile, in many universities, teachers need to roll over to investigate the attendance conditions of the students in a manual mode, and if the number of students participating in the curriculum is large, a lot of time is wasted.
The defects of the prior art are that the function of the electronic curriculum schedule is single, the electronic curriculum schedule has no effect with the traditional paper curriculum schedule, the advantages of the electronic curriculum schedule are not fully utilized, meanwhile, teachers supervise the attendance and discipline of students in a manual mode, and the utilization rate of classroom time is reduced.
Disclosure of Invention
In the technical field of big data, the invention provides a discipline constraint method, a discipline constraint device, a discipline constraint medium and electronic equipment based on data analysis, and aims to solve the technical problem of low classroom time utilization rate in the related art.
According to an aspect of the present application, there is provided a discipline constraint method based on data analysis, the method including:
acquiring a current geographic position and current time of a first terminal, wherein the first terminal is a terminal of a first user, and an electronic curriculum schedule is stored in the first terminal;
acquiring a target classroom geographical position based on the current time and the electronic curriculum schedule;
and when the current geographic position is within a preset geographic position range determined according to the target classroom geographic position, generating the card punching information of the first user and sending the card punching information to a second terminal.
According to another aspect of the present application, there is provided a discipline constraint device based on data analysis, the device comprising:
the system comprises a first acquisition module, a second acquisition module and a third acquisition module, wherein the first acquisition module is configured to acquire the current geographic position and the current time of a first terminal, the first terminal is a terminal of a first user, and an electronic curriculum schedule is stored in the first terminal;
a second obtaining module configured to obtain a target classroom geographic location based on a current time and the electronic curriculum schedule;
and the card punching module is configured to generate card punching information of the first user and send the card punching information to a second terminal when the current geographic position is within a preset geographic position range determined according to the target classroom geographic position.
According to another aspect of the present application, there is provided a computer readable program medium storing computer program instructions which, when executed by a computer, cause the computer to perform the method as previously described.
According to another aspect of the present application, there is provided an electronic device including:
a processor;
a memory having computer readable instructions stored thereon which, when executed by the processor, implement the method as previously described.
The technical scheme provided by the embodiment of the invention can have the following beneficial effects:
the discipline constraint method based on data analysis provided by the invention comprises the following steps: acquiring a current geographic position and current time of a first terminal, wherein the first terminal is a terminal of a first user, and an electronic curriculum schedule is stored in the first terminal; acquiring a target classroom geographical position based on the current time and the electronic curriculum schedule; and when the current geographic position is within a preset geographic position range determined according to the target classroom geographic position, generating the card punching information of the first user and sending the card punching information to a second terminal.
Under this method, utilized the information of record on the electronic curriculum schedule, carried out the record of the circumstances of attendance through the mode that lets the user adopt to punch the card for the mr need not take time alone to check the student's circumstances of attendance in classroom, has richened the function of electronic curriculum schedule, has improved the utilization ratio of classroom time.
It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the invention, as claimed.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the invention and together with the description, serve to explain the principles of the invention.
FIG. 1 is a diagram illustrating an application scenario of a discipline constraint method based on data analysis in accordance with an exemplary embodiment;
FIG. 2 is a flow diagram illustrating a data analysis-based discipline constraint method in accordance with an exemplary embodiment;
FIG. 3 is a flow diagram illustrating a manner in which an electronic curriculum schedule is established, according to an exemplary embodiment;
FIG. 4 is a flowchart illustrating details of step 220 according to one embodiment illustrated in a corresponding embodiment of FIG. 2;
FIG. 5 is a flowchart illustrating steps subsequent to step 230 of one embodiment in accordance with the corresponding embodiment shown in FIG. 4;
FIG. 6 is a flow diagram illustrating predetermined conditions according to one embodiment illustrated in the corresponding embodiment of FIG. 5;
FIG. 7 is a block diagram illustrating a discipline constraint mechanism based on data analysis in accordance with an exemplary embodiment;
FIG. 8 is a block diagram illustrating an example of an electronic device implementing the data analysis-based discipline constraint approach described above, in accordance with an example embodiment;
FIG. 9 illustrates a computer-readable storage medium that implements the above-described data analysis-based discipline constraint methodology, according to an exemplary embodiment.
Detailed Description
Reference will now be made in detail to the exemplary embodiments, examples of which are illustrated in the accompanying drawings. When the following description refers to the accompanying drawings, like numbers in different drawings represent the same or similar elements unless otherwise indicated. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present invention. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the invention, as detailed in the appended claims.
Furthermore, the drawings are merely schematic illustrations of the present disclosure and are not necessarily drawn to scale. The same reference numerals in the drawings denote the same or similar parts, and thus their repetitive description will be omitted. Some of the block diagrams shown in the figures are functional entities and do not necessarily correspond to physically or logically separate entities.
The present disclosure first provides a discipline constraint method based on data analysis. The implementation terminal of the invention can be a portable mobile device, such as a smart phone, a tablet computer, a notebook computer, etc., or a fixed device, such as a computer device, a field terminal, a desktop computer, a server, a workstation, etc. The implementation terminal of the invention can communicate with various mobile terminals such as a smart phone, a tablet Personal computer, an iPad, a PDA (Personal Digital Assistant) and the like in a wireless mode, and the implementation of the method of the invention can be realized by hardware, software, firmware or a combination of the hardware, the software and the firmware.
Fig. 1 is a schematic diagram illustrating an application scenario of a discipline constraint method based on data analysis according to an exemplary embodiment. An electronic curriculum schedule can be displayed on the interface of the terminal shown in fig. 1. An electronic curriculum schedule is form information in electronic form, recorded with information relating to a curriculum, including: the name of the course and the start time of the course. As shown in fig. 1, a mobile terminal such as a smart phone, iPad, PDA, etc. can communicate with the implementation terminal of the present invention, which in the embodiment shown in fig. 1 is a server to which a fixed terminal is used to enter information related to a course in an electronic curriculum schedule. When a user uses a mobile terminal to log in a server through a network, the user inputs registration information to verify the identity of the user, compares the registration information with information which is input into the server in advance, and sends course information which is consistent with the identity information registered by the user to the mobile terminal of the user after the comparison is successful so as to realize the sending of the course schedule information. The transmitted schedule information is presented on the user's terminal in the form of Web, APP (Application), Html5, or the like. When the current time is close to the time of the courses recorded in the course schedule and the distance between the position of the mobile terminal of the user and the teaching place of the courses recorded in the course schedule is within a preset range, the card punching information of the user is automatically recorded and is sent to the terminal of the teacher giving the lessons, so that the teacher giving the lessons can judge the attendance of students.
FIG. 2 is a flow diagram illustrating a data analysis-based discipline constraint method in accordance with an exemplary embodiment. As shown in fig. 2, the method comprises the following steps:
step 210, obtaining the current geographic position and the current time of the first terminal.
The first terminal is a terminal of a first user, and the electronic curriculum schedule generated according to the data of the local terminal is stored in the first terminal.
The first terminal is a name given for distinguishing a terminal implemented by the present invention from other terminals, and does not represent a terminal of a specific type or a specific model, and the first terminal may be any mobile terminal having a storage function and a positioning function, including but not limited to various mobile terminals such as iPad, smart phone, tablet computer, smart watch, smart bracelet, PDA, and the like. The first terminal generates an electronic curriculum schedule on the terminal according to the curriculum data provided by the implementing terminal of the invention in advance, the curriculum data can be stored in the implementing terminal of the invention or any other storage device with a memory function and is transmitted to the mobile terminal needing to obtain the electronic curriculum schedule through the implementing terminal of the invention, and the source of the curriculum data is not limited by the invention.
The geographical location is information that enables a unique determination of where the first terminal is located. Since the geographic location is specified by human beings whenever possible, the following:
in one embodiment, the geographic location is latitude and longitude information of the venue.
In one embodiment, the geographic location is a campus-based coordinate that is manually set for the venue.
In one embodiment, the geographic location of the terminal is determined based on the network location of the terminal.
In one embodiment, the physical location of the terminal is obtained from GPS data calculated by a GPS (Global positioning system) module of the terminal.
In one embodiment, the current geographical location of the first terminal is obtained by: according to the request of the implementation terminal of the invention, the first terminal sends the current geographic position information carrying the terminal as a response aiming at the request to the implementation terminal of the invention, thereby realizing the purpose of obtaining the geographic position of the first terminal.
In one embodiment, the current geographic location of the first terminal is actively uploaded to the implementing terminal of the present invention by the user through the first terminal. For example, a control or a button is distributed on an interface of an electronic curriculum schedule or other interfaces of the user terminal, and when the trigger of the control or the button is monitored, the user terminal acquires the current geographic position of the terminal according to the trigger of the control or the button and transmits the current geographic position to the implementation terminal of the invention.
In one embodiment, the first terminal automatically obtains the geographical location of the terminal every predetermined period of time.
The current time is a real-time when the first terminal determines the current geographic location.
In one embodiment, after the first terminal determines the current geographic location, the local time of the device of the first terminal is obtained as the current time while the current geographic location is determined; the current geographical position and the current time of the first terminal are sent to the implementing terminal of the invention.
In one embodiment, after the first terminal determines the current geographic location, the first terminal acquires the current network time as the current time while determining the current geographic location; the current geographical position and the current time of the first terminal are sent to the implementing terminal of the invention.
The method and the device have the advantages that by acquiring the network time, the condition that the discipline constraint capacity of the user is reduced due to the fact that the user tampers the local time and the acquired time is not accurate is avoided.
In one embodiment, after the first terminal determines the current geographic location and sends the current geographic location to the implementing terminal of the present invention, when the implementing terminal of the present invention receives the current geographic location information, local data of the implementing terminal of the present invention is obtained as the current time.
It should be noted that, as those skilled in the art will appreciate, the terms data, information, geographic location, etc. are only different names given to people from different perspectives when looking at the same entity, and the usage of the expressions of the respective terms in the present invention should not be construed as limiting the scope of the present invention in any way.
And step 220, acquiring the geographic position of the target classroom based on the current time and the electronic curriculum schedule.
It should be understood that the layout manner of the electronic curriculum schedule and the recorded contents of the electronic curriculum schedule are not limited to those shown in fig. 1, and the recorded contents of the electronic curriculum schedule should not constitute any limitation to the present invention.
The geographic location of the target classroom is the geographic location of the place of class, the place of class is the classroom number or floor number, etc., the geographic location is the longitude and latitude of the classroom, for example, the place of class is floor 401 No. 3, and the geographic location corresponding to the place of class is 116.341603 degrees of east longitude and 39.947689 degrees of north latitude.
In one embodiment, the electronic curriculum schedule records names, times and places of lessons, the implementation terminal of the invention further stores a corresponding relation table of places of lessons and geographic positions, and when the distance between the current time and the time of a lesson in the curriculum schedule is less than a preset time difference threshold, the geographic position of a target class corresponding to the place of lesson is obtained from the corresponding relation table of places of lessons and geographic positions stored in the implementation terminal of the invention according to the place of lesson corresponding to the curriculum in the electronic curriculum schedule.
In one embodiment, the electronic schedule records the name, time, location of lesson, the name of the teacher giving lessons, and the names of the students taking part in the lessons.
In one embodiment, the electronic curriculum schedule records the name, time, and geographic location of each curriculum.
In one embodiment, the electronic schedule records the name, time, and place of attendance of each course, as well as the corresponding geographic location. And when the difference between the current time and the distance between the teaching time of a certain course in the course schedule is smaller than a preset time difference threshold value, determining the geographic position corresponding to the course from the electronic course schedule according to the electronic course schedule.
In one embodiment, the electronic schedule also records the number of weeks required for each course.
Step 230, when the current geographic position is within a predetermined geographic position range determined according to the target classroom geographic position, generating the card punching information of the first user and sending the card punching information to a second terminal.
In one embodiment, the predetermined geographic location range is a circular area centered at the target classroom geographic location and having a predetermined distance as a radius.
In one embodiment, the predetermined geographical location range is determined for the lecture location of each class based on the height and density of buildings around the target class. For example, if the height of the buildings around a target class is greater than the height threshold and the density is greater than the density threshold, the predetermined geographic location range is selected as 100 meters within the geographic location of the target class; when the height of buildings around a target classroom is greater than the height threshold or the density is greater than the density threshold, selecting the preset geographic position range as 50 meters in the geographic position of the target classroom; when the height of buildings around a target classroom is less than the height threshold and the density is less than the density threshold, the predetermined geographic location range is selected to be 30 meters within the target classroom geographic location.
Because the positioning performance of each mobile terminal is different, the positioning accuracy of each mobile terminal is different, and if the density of buildings around the target classroom is high and the buildings are high and the positioning performance of the mobile terminal of the user is poor, the user may not be able to punch a card even in the target classroom. Therefore, the method and the device have the advantages that the threshold for punching the card in the target classroom with higher punching difficulty is reduced, and the use experience of the user is improved.
The card punching information is information representing whether the user has punched a card.
In one embodiment, the card punching information records the time of the card punching by the user who punches the card.
In another embodiment, the card punching information only records whether the card punching of the user meets the requirement, namely, whether the card punching time of the user is within a preset range determined according to the course starting time of the target classroom is judged. For example, if the preset range is set to be within fifteen minutes before and after the start of the class in the target class, and the start of the class in the target class is 10:00, the determined time range for punching the card is 9: 45-10: 15.
It should be noted that, after the user prints a card, the icons, the controls, the notifications and the display forms of the icons, the controls and the notifications displayed on the first terminal and the second terminal are not limited in any way by the embodiments of the present invention, and therefore, the various actions of the first terminal and the second terminal triggered by the card printing should not limit the scope of the present invention in any way.
FIG. 3 is a flow diagram illustrating a manner in which an electronic curriculum schedule is established, according to an example embodiment. As shown in fig. 3, the method comprises the following steps:
and step 310, receiving course information input by a third user and storing the course information in a database, wherein the course information comprises an identification of the user corresponding to the course recorded by the course information.
The course information is information related to the course, such as the name of the course, the time of the course, the class room of the course, the geographical location of the class room, the name of the teacher giving the course, the name of the student who is to participate in the course, and the like.
The user identification is an identification capable of uniquely representing the user identity, such as a mobile phone number, an identity card, a school number, a school address number and the like of the user.
Step 320, obtaining registration information of a first user, wherein the registration information includes an identifier of the first user.
In one embodiment, the registration information of the user includes the user's name, nickname, gender, age, class, school number, and the like.
Step 330, when receiving the electronic curriculum schedule import request from the first user, injecting the curriculum information corresponding to the identifier of the first user in the database into the curriculum information form to generate the electronic curriculum schedule for the user.
In one embodiment, only the identification of the user is extracted from the registration information of the first user and is matched with the identification stored in advance in the database, and since the course information in the database is stored in correspondence with the user identification, the course information corresponding to the identification is obtained by matching the user identification with the identification in the database.
Step 340, sending the electronic curriculum schedule to the first terminal.
In one embodiment, the electronic curriculum schedule is only the curriculum information recorded by the electronic curriculum schedule, the interface of the electronic curriculum schedule and the display format of the electronic curriculum schedule are stored in the first terminal, and after the data is sent to the first terminal, the first terminal establishes the entity of the electronic curriculum schedule based on the data and the interface and the form format stored in the first terminal.
In one embodiment, the electronic curriculum schedule is a complete electronic curriculum schedule entity comprising the information of the recorded curriculum, the interface of the electronic curriculum schedule and the display format
Fig. 4 is a flowchart illustrating details of step 220 according to one embodiment illustrated in a corresponding embodiment of fig. 2. As shown in fig. 4, the method comprises the following steps:
step 221, obtaining a time difference between the current time and the target time.
The target time is the starting time of the target course, and the teaching of the target course is started in the target classroom at the target time and the target place.
In one embodiment, the start time of each lesson is recorded in an electronic lesson schedule, and the start time is read by the electronic lesson schedule.
Step 222, when the absolute value of the time difference is smaller than a preset time difference threshold, acquiring a target classroom geographical position corresponding to the target time based on the electronic curriculum schedule.
In one embodiment, the target time and the corresponding target classroom geographic location are both recorded in an electronic curriculum schedule, and the target classroom geographic location corresponding to the target time can be obtained by reading the electronic curriculum schedule. This has the advantage of making the recorded content of the electronic curriculum schedule more comprehensive.
In one embodiment, the target time and the name of the course are recorded in an electronic course table, the target classroom geographic position is stored in a corresponding relation table of the course name and the target classroom geographic position, the name of the corresponding course is determined from the electronic course table by judging the target time, and then the target classroom geographic position corresponding to the target time is obtained from the corresponding relation table of the course name and the target classroom geographic position. This has the advantage of making the contents displayed on the electronic schedule more compact.
Fig. 5 is a flowchart illustrating steps subsequent to step 230 according to one embodiment illustrated in a corresponding embodiment of fig. 4. As shown in fig. 5, the method comprises the following steps:
and 240, responding to the situation that the current time is larger than the target time, and monitoring the screen lightening condition of the first terminal.
And monitoring the screen-up condition of the first terminal is realized by monitoring the screen-up event of the first terminal.
In one embodiment, the current time is obtained every second to determine whether to monitor the bright screen condition of the first terminal. This has the advantage that the accuracy of the listening of the first terminal is improved.
In one embodiment, the current time is acquired every predetermined time period to determine whether to monitor the bright screen condition of the first terminal. This has the advantage of reducing the load on the first terminal or the implementation terminal of the invention and improving the operating efficiency of the terminal.
And 250, when the screen-lighting condition meets a preset condition, sending a reminding message to the second terminal.
The reminding information is used for reminding a user of the second terminal that the screen-up condition of the first terminal is abnormal, and may include screen-up time, the user of the first terminal with the abnormal screen-up condition, and the like.
In one embodiment, the first terminal is a student terminal, the second terminal is a teacher terminal, and when the student terminal is in a bright screen condition during the class period, the reminding information is timely sent to the teacher terminal so as to inform the teacher whether the student uses the mobile phone in the class or not.
In one embodiment, the screen-up condition includes a screen-up time, and when the screen-up time is greater than a predetermined threshold, a reminder message is sent to the second terminal.
In one embodiment, the screen-up condition includes a screen-up number and a screen-up time, and before monitoring the screen-up condition of the first terminal in response to the current time being greater than the target time, the method further includes: acquiring the end time of the target course according to the electronic course schedule;
the predetermined conditions include: the screen-on times are greater than a preset screen-on time threshold value, and the screen-on time is greater than a preset screen-on time threshold value;
after sending a reminding message to the second terminal when the screen-up condition meets a predetermined condition, the method further comprises:
and when the current time is greater than the end time, ending monitoring the screen lightening condition of the terminal.
In summary, the embodiment shown in fig. 5 is advantageous in that it is determined whether the user uses the mobile phone in the classroom to violate the classroom discipline by taking the start time of the target lesson recorded on the electronic lesson schedule as a reference, thereby extending the breadth of the role of the electronic lesson schedule and improving the classroom discipline management efficiency.
Fig. 6 is a flow diagram illustrating predetermined conditions according to one embodiment illustrated in a corresponding embodiment of fig. 5. As shown in fig. 6, the predetermined condition includes the steps of:
and step 610, normalizing the screen lightening times and the screen lightening time to be between [0 and 1] respectively to obtain the normalized screen lightening times and screen lightening time.
In one embodiment, the bright screen time is normalized to between [0,1] as follows:
acquiring the difference between the ending time and a target time; determining the ratio of the screen-up time to the difference; and taking the ratio as a normalized value of the bright screen time.
In one embodiment, the number of bright screen times is normalized to between [0,1] by the following formula,
wherein,is a value normalized to the number of times of the bright screen, x is the number of times of the bright screen to be normalizedminMinimum value of preset number of bright screen times, xmaxIs the upper limit reference value of the bright screen times to be normalized.
And step 620, respectively obtaining the screen lightening times and the weight of the screen lightening time.
Step 630, determining a weighted sum of the normalized screen-up times and the screen-up time according to the weight.
And step 640, when the weighted sum is greater than a preset weighted sum threshold value, sending a reminding message to the second terminal.
In summary, the embodiment shown in fig. 6 has the advantage that different roles of the screen-on times and the screen-on time in determining whether the user violates discipline in the classroom are comprehensively considered, so that it is more accurate to determine whether the user violates discipline.
The present disclosure also provides a discipline constraint device based on data analysis, the following is an embodiment of the device of the present invention.
FIG. 7 is a block diagram illustrating a discipline constraint mechanism based on data analysis in accordance with an exemplary embodiment. As shown in fig. 7, the apparatus 700 includes:
a first obtaining module 710 configured to obtain a current geographic location and a current time of a first terminal, where the first terminal is a terminal of a first user, and the first terminal stores an electronic curriculum schedule;
a second obtaining module 720, configured to obtain a target classroom geographical location based on a current time and the electronic curriculum schedule;
and the card punching module 730 is configured to generate card punching information of the first user and send the card punching information to a second terminal when the current geographic position is within a predetermined geographic position range determined according to the target classroom geographic position.
According to a third aspect of the present disclosure, there is also provided an electronic device capable of implementing the above method.
As will be appreciated by one skilled in the art, aspects of the present invention may be embodied as a system, method or program product. Thus, various aspects of the invention may be embodied in the form of: an entirely hardware embodiment, an entirely software embodiment (including firmware, microcode, etc.) or an embodiment combining hardware and software aspects that may all generally be referred to herein as a "circuit," module "or" system.
An electronic device 800 according to this embodiment of the invention is described below with reference to fig. 8. The electronic device 800 shown in fig. 8 is only an example and should not bring any limitations to the function and scope of use of the embodiments of the present invention.
As shown in fig. 8, electronic device 800 is in the form of a general purpose computing device. The components of the electronic device 800 may include, but are not limited to: the at least one processing unit 810, the at least one memory unit 820, and a bus 830 that couples the various system components including the memory unit 820 and the processing unit 810.
Wherein the storage unit stores program code that can be executed by the processing unit 810, such that the processing unit 810 performs the steps according to various exemplary embodiments of the present invention described in the "example methods" section above in this specification.
The storage unit 820 may include readable media in the form of volatile storage units, such as a random access storage unit (RAM)821 and/or a cache storage unit 822, and may further include a read only storage unit (ROM) 823.
Storage unit 820 may also include a program/utility 824 having a set (at least one) of program modules 825, such program modules 825 including, but not limited to: an operating system, one or more application programs, other program modules, and program data, each of which, or some combination thereof, may comprise an implementation of a network environment.
Bus 830 may be any of several types of bus structures including a memory unit bus or memory unit controller, a peripheral bus, an accelerated graphics port, a processing unit, or a local bus using any of a variety of bus architectures.
The electronic device 800 may also communicate with one or more external devices 800 (e.g., keyboard, pointing device, bluetooth device, etc.), with one or more devices that enable a user to interact with the electronic device 800, and/or with any devices (e.g., router, modem, etc.) that enable the electronic device 800 to communicate with one or more other computing devices. Such communication may occur via input/output (I/O) interfaces 850. Also, the electronic device 800 may communicate with one or more networks (e.g., a Local Area Network (LAN), a Wide Area Network (WAN), and/or a public network, such as the internet) via the network adapter 860. As shown, the network adapter 860 communicates with the other modules of the electronic device 800 via the bus 830. It should be appreciated that although not shown, other hardware and/or software modules may be used in conjunction with the electronic device 800, including but not limited to: microcode, device drivers, redundant processing units, external disk drive arrays, RAID systems, tape drives, and data backup storage systems, among others.
Through the above description of the embodiments, those skilled in the art will readily understand that the exemplary embodiments described herein may be implemented by software, or by software in combination with necessary hardware. Therefore, the technical solution according to the embodiments of the present disclosure may be embodied in the form of a software product, which may be stored in a non-volatile storage medium (which may be a CD-ROM, a usb disk, a removable hard disk, etc.) or on a network, and includes several instructions to enable a computing device (which may be a personal computer, a server, a terminal device, or a network device, etc.) to execute the method according to the embodiments of the present disclosure.
According to a fourth aspect of the present disclosure, there is also provided a computer-readable storage medium having stored thereon a program product capable of implementing the above-mentioned method of the present specification. In some possible embodiments, aspects of the invention may also be implemented in the form of a program product comprising program code means for causing a terminal device to carry out the steps according to various exemplary embodiments of the invention described in the above section "exemplary methods" of the present description, when said program product is run on the terminal device.
Referring to fig. 9, a program product 900 for implementing the above method according to an embodiment of the present invention is described, which may employ a portable compact disc read only memory (CD-ROM) and include program code, and may be run on a terminal device, such as a personal computer. However, the program product of the present invention is not limited in this regard and, in the present document, a readable storage medium may be any tangible medium that can contain, or store a program for use by or in connection with an instruction execution system, apparatus, or device.
The program product may employ any combination of one or more readable media. The readable medium may be a readable signal medium or a readable storage medium. A readable storage medium may be, for example, but not limited to, an electronic, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any combination of the foregoing. More specific examples (a non-exhaustive list) of the readable storage medium include: an electrical connection having one or more wires, a portable disk, a hard disk, a Random Access Memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber, a portable compact disc read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the foregoing.
A computer readable signal medium may include a propagated data signal with readable program code embodied therein, for example, in baseband or as part of a carrier wave. Such a propagated data signal may take many forms, including, but not limited to, electro-magnetic, optical, or any suitable combination thereof. A readable signal medium may also be any readable medium that is not a readable storage medium and that can communicate, propagate, or transport a program for use by or in connection with an instruction execution system, apparatus, or device.
Program code embodied on a readable medium may be transmitted using any appropriate medium, including but not limited to wireless, wireline, optical fiber cable, RF, etc., or any suitable combination of the foregoing.
Program code for carrying out operations for aspects of the present invention may be written in any combination of one or more programming languages, including an object oriented programming language such as Java, C + + or the like and conventional procedural programming languages, such as the "C" programming language or similar programming languages. The program code may execute entirely on the user's computing device, partly on the user's device, as a stand-alone software package, partly on the user's computing device and partly on a remote computing device, or entirely on the remote computing device or server. In the case of a remote computing device, the remote computing device may be connected to the user computing device through any kind of network, including a Local Area Network (LAN) or a Wide Area Network (WAN), or may be connected to an external computing device (e.g., through the internet using an internet service provider).
Furthermore, the above-described figures are merely schematic illustrations of processes involved in methods according to exemplary embodiments of the invention, and are not intended to be limiting. It will be readily understood that the processes shown in the above figures are not intended to indicate or limit the chronological order of the processes. In addition, it is also readily understood that these processes may be performed synchronously or asynchronously, e.g., in multiple modules.
It will be understood that the invention is not limited to the precise arrangements described above and shown in the drawings and that various modifications and changes may be made without departing from the scope thereof. The scope of the invention is limited only by the appended claims.
Claims (10)
1. A discipline constraint method based on data analysis is characterized by comprising the following steps:
acquiring the current geographic position and the current time of a first terminal, wherein the first terminal is a terminal of a first user, and the first terminal stores an electronic curriculum schedule generated according to data of a local terminal;
acquiring a target classroom geographical position based on the current time and the electronic curriculum schedule;
and when the current geographic position is within a preset geographic position range determined according to the target classroom geographic position, generating the card punching information of the first user and sending the card punching information to a second terminal.
2. The method as recited in claim 1, wherein the electronic curriculum schedule is created by:
receiving course information input by a third user and storing the course information in a database, wherein the course information comprises an identification of the user corresponding to the course recorded by the course information;
acquiring registration information of a first user, wherein the registration information comprises an identifier of the first user;
when an electronic curriculum schedule import request from the first user is received, injecting curriculum information corresponding to the identification of the first user in a database into a curriculum information form to generate an electronic curriculum schedule for the user; and
and sending the electronic curriculum schedule to the first terminal.
3. The method as recited in claim 1, wherein said obtaining a geographic location of a target class based on a current time and said electronic curriculum schedule comprises:
acquiring the time difference between the current time and a target time, wherein the target time is the starting time of a target course, and the teaching of the target course is started when the target time and the target place are target classes;
and when the absolute value of the time difference is smaller than a preset time difference threshold value, acquiring a target classroom geographical position corresponding to the target time based on the electronic curriculum schedule.
4. The method of claim 3, wherein after generating and sending the punch-card information of the first user to the second terminal when the current geographic location is within a predetermined geographic location range determined from the target classroom geographic location, the method further comprises:
responding to the situation that the current time is larger than the target time, and monitoring the screen lightening condition of the first terminal;
and when the screen lightening condition meets a preset condition, sending reminding information to the second terminal.
5. The method of claim 4, wherein the screen-up condition comprises a screen-up number and a screen-up time, and wherein before monitoring the screen-up condition of the first terminal in response to the current time being greater than the target time, the method further comprises: acquiring the end time of the target course according to the electronic course schedule;
the predetermined conditions include: the screen-on times are greater than a preset screen-on time threshold value, and the screen-on time is greater than a preset screen-on time threshold value;
after sending a reminding message to the second terminal when the screen-up condition meets a predetermined condition, the method further comprises:
and when the current time is greater than the end time, ending monitoring the screen lightening condition of the terminal.
6. The method according to claim 4, wherein the screen-up condition comprises a screen-up number and a screen-up time, and the predetermined condition comprises:
normalizing the screen lightening times and the screen lightening time to be between [0,1] respectively to obtain the normalized screen lightening times and screen lightening time;
respectively acquiring the screen lightening times and the weight of the screen lightening time;
determining the weighted sum of the normalized screen-lighting times and screen-lighting time according to the weight;
and when the weighted sum is greater than a preset weighted sum threshold value, sending reminding information to the second terminal.
7. The method of claim 6, wherein the number of bright screen times is normalized to between [0,1] by the following formula,
wherein,is a value normalized to the number of times of the bright screen, x is the number of times of the bright screen to be normalizedminMinimum value of preset number of bright screen times, xmaxIs the upper limit reference value of the bright screen times to be normalized.
8. A discipline constraint device based on data analysis, characterized in that it comprises:
the system comprises a first acquisition module, a second acquisition module and a third acquisition module, wherein the first acquisition module is configured to acquire the current geographic position and the current time of a first terminal, the first terminal is a terminal of a first user, and an electronic curriculum schedule is stored in the first terminal;
a second obtaining module configured to obtain a target classroom geographic location based on a current time and the electronic curriculum schedule;
and the card punching module is configured to generate card punching information of the first user and send the card punching information to a second terminal when the current geographic position is within a preset geographic position range determined according to the target classroom geographic position.
9. A computer-readable program medium, characterized in that it stores computer program instructions which, when executed by a computer, cause the computer to perform the method according to any one of claims 1 to 7.
10. An electronic device, characterized in that the electronic device comprises:
a processor;
a memory having stored thereon computer readable instructions which, when executed by the processor, implement the method of any of claims 1 to 7.
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