CN110826996A - Method and system for generating class schedule in intelligent class board - Google Patents

Method and system for generating class schedule in intelligent class board Download PDF

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CN110826996A
CN110826996A CN201911061024.7A CN201911061024A CN110826996A CN 110826996 A CN110826996 A CN 110826996A CN 201911061024 A CN201911061024 A CN 201911061024A CN 110826996 A CN110826996 A CN 110826996A
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class
leave
asking
teacher
teaching
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陈天
田雪松
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Guangzhou Yundi Technology Co Ltd
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Guangzhou Yundi Technology Co Ltd
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    • G06Q10/00Administration; Management
    • G06Q10/10Office automation; Time management
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    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q50/00Information and communication technology [ICT] specially adapted for implementation of business processes of specific business sectors, e.g. utilities or tourism
    • G06Q50/10Services
    • G06Q50/20Education
    • G06Q50/205Education administration or guidance

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Abstract

The invention provides a method and a system for generating a class schedule in an intelligent class card, wherein the method comprises the following steps: receiving teaching information sent by a plurality of terminals; each piece of teaching information comprises a teaching subject, a site ID and a student ID; assigning teacher ID according to teaching subjects; generating a first class schedule corresponding to the site ID according to the teacher ID and the teaching subjects; the first class schedule comprises class time information; according to the site ID, searching a preset site ID and class card ID comparison table, and determining a class card ID corresponding to the site ID; sending the first class schedule to the class card according to the class card ID; acquiring leave asking information in real time; the leave asking information comprises leave asking time information, leave asking person ID and leave asking teaching subjects; and generating a second class table according to the leave asking time information, the leave asking person ID, the leave asking teaching subject, the student ID and the first class table. Therefore, the maximum class arrival rate is ensured, and the maximization of high-quality resources is ensured.

Description

Method and system for generating class schedule in intelligent class board
Technical Field
The invention relates to the field of data processing, in particular to a method and a system for generating a class schedule in an intelligent class card.
Background
The traditional class card is a paper or wooden class card, wherein class names, class badges and the like are adhered to the doorway of a classroom and used for displaying class information, and simultaneously, blackboard newspaper or wall propaganda and other modes are arranged behind each class classroom to display class culture. The electronic class board is a liquid crystal display class board which is installed at the doorway of a classroom and is used for displaying school notices and class notices in real time and displaying comprehensive basic information of the classes, including teaching information such as weather, class names, class schedules, duty schedules and the like.
In the prior art, activities of each day are not fixed in fixed places such as basketball halls, badminton halls and meeting rooms, and how to arrange a plurality of activities of each day is a problem which needs to be solved urgently so as to maximize the arrival rate of people.
Disclosure of Invention
The embodiment of the invention aims to provide a method and a system for generating a class schedule in an intelligent class card, so as to solve the problem that the maximization of the class arrival rate of people cannot be guaranteed in the prior art.
In order to solve the above problem, in a first aspect, the present invention provides a method for generating a class schedule in an intelligent class board, where the method includes:
receiving teaching information sent by a plurality of terminals; each piece of teaching information comprises a teaching subject, a site ID and a student ID;
assigning a teacher ID according to the teaching subjects;
generating a first class schedule corresponding to the site ID according to the teacher ID and the teaching subjects; the first class schedule comprises class time information;
according to the site ID, searching a preset site ID and class card ID comparison table, and determining a class card ID corresponding to the site ID;
sending the first class schedule to the class card according to the class card ID;
acquiring leave asking information in real time; the leave asking information comprises leave asking time information, leave asking person ID and leave asking teaching subjects;
and generating a second class table according to the leave asking time information, the ID of the leave asking person, the teaching subject of the leave asking person, the ID of the student and the first class table.
In a possible implementation manner, the assigning, according to the teaching subject, a teacher ID specifically includes:
determining the number of students according to the ID of the students;
and determining the teacher ID according to the number of students and the preset priority of the teacher.
In a possible implementation manner, the assigning, according to the teaching subject, a teacher ID specifically includes:
acquiring travel information and special length information of a teacher;
matching the specialty information of the teacher with the teaching subjects to generate a matching result;
determining the number of teachers corresponding to the teaching subjects according to the matching result;
and allocating teacher ID according to the travel information of the teacher corresponding to the teaching subject.
In a possible implementation manner, the generating a second class table according to the leave asking time information, the leave asking person ID, the teaching subject of the leave asking, the student ID, and the first class table specifically includes:
determining a site ID corresponding to the ID of the leave-asking person according to the ID of the leave-asking person, the ID of the student and the first class schedule;
comparing the leave asking time information corresponding to each leave asking person ID with the class time information according to the site ID;
when the number of leave-asking persons in one subject exceeds a preset threshold value, determining the subject as a subject to be adjusted;
adjusting the class time information of the subject to be adjusted according to the leave asking time information of the leave asking personnel;
and generating a second class schedule according to the adjustment result.
In one possible implementation, the instructional information further includes a teacher ID, and the method further includes:
when the ID of the leave-asking person is overlapped with the ID of a teacher, judging whether the leave-asking time information conflicts with the lesson time information corresponding to the ID of the teacher;
and when the leave-asking time information conflicts with the lesson taking time information corresponding to the teacher ID, updating the first lesson schedule to obtain a second lesson schedule.
In a second aspect, the present invention provides a system for generating a class schedule in an intelligent class card, the system comprising:
the receiving unit is used for receiving teaching information sent by a plurality of terminals; each piece of teaching information comprises a teaching subject, a site ID and a student ID;
the distribution unit is used for distributing teacher IDs according to the teaching subjects;
the generating unit is used for generating a first class schedule corresponding to the site ID according to the teacher ID and the teaching subjects; the first class schedule comprises class time information;
the determining unit is used for searching a preset site ID and class card ID comparison table according to the site ID and determining the class card ID corresponding to the site ID;
the sending unit is used for sending the first class schedule to the class cards according to the class card ID;
the acquiring unit is used for acquiring the leave asking information in real time; the leave asking information comprises leave asking time information, leave asking person ID and leave asking teaching subjects;
the generating unit is further used for generating a second class table according to the leave-asking time information, the ID of the leave-asking person, the teaching subject of the leave-asking, the ID of the student and the first class table.
In a possible implementation manner, the allocation unit is specifically configured to:
determining the number of students according to the ID of the students;
and determining the teacher ID according to the number of students and the preset priority of the teacher.
In a possible implementation manner, the allocation unit is specifically configured to:
acquiring travel information and special length information of a teacher;
matching the specialty information of the teacher with the teaching subjects to generate a matching result;
determining the number of teachers corresponding to the teaching subjects according to the matching result;
and allocating teacher ID according to the travel information of the teacher corresponding to the teaching subject.
In a possible implementation manner, the generating unit is specifically configured to:
determining a site ID corresponding to the ID of the leave-asking person according to the ID of the leave-asking person, the ID of the student and the first class schedule;
comparing the leave asking time information corresponding to each leave asking person ID with the class time information according to the site ID;
when the number of leave-asking persons in one subject exceeds a preset threshold value, determining the subject as a subject to be adjusted;
adjusting the class time information of the subject to be adjusted according to the leave asking time information of the leave asking personnel;
and generating a second class schedule according to the adjustment result.
In a possible implementation manner, the system further includes a judging unit and an updating unit;
the judging unit is used for judging whether the leave asking time information conflicts with the lesson time information corresponding to the teacher ID when the leave asking person ID is superposed with the teacher ID;
and the updating unit is used for updating the first class schedule to obtain a second class schedule when the leave-asking time information conflicts with the class time information corresponding to the teacher ID.
In a third aspect, the invention provides an apparatus comprising a memory for storing a program and a processor for performing the method of any of the first aspects.
In a fourth aspect, the present invention provides a computer program product comprising instructions which, when run on a computer, cause the computer to perform the method according to any one of the first aspect.
In a fifth aspect, the invention provides a computer readable storage medium having stored thereon a computer program which, when executed by a processor, performs the method of any of the first aspects.
By applying the method and the system for generating the class schedule in the intelligent class board, provided by the embodiment of the invention, intelligent class arrangement can be performed by combining leave-asking information of teachers and leave-asking information of students, so that the maximum class reaching rate is ensured, and the maximization of high-quality resources is ensured.
Drawings
Fig. 1 is a schematic flow chart of a method for generating a class schedule in an intelligent class card according to an embodiment of the present invention;
fig. 2 is a schematic structural diagram of a system for generating a class schedule in an intelligent class card according to a second embodiment of the present invention.
Detailed Description
The present application will be described in further detail with reference to the following drawings and examples. It is to be understood that the specific embodiments described herein are merely illustrative of the relevant invention and not restrictive of the invention. It should be further noted that, for the convenience of description, only the portions related to the related invention are shown in the drawings.
It should be noted that the embodiments and features of the embodiments in the present application may be combined with each other without conflict. The present application will be described in detail below with reference to the embodiments with reference to the attached drawings.
The first, second, third and fourth, etc. reference numerals are used only for distinguishing them and have no other meaning.
Fig. 1 is a schematic flow chart of a method for generating a class schedule in an intelligent class card according to an embodiment of the present invention. The method is applied to a teaching scene, and the execution main body of the method is equipment with processing functions, such as a server, a processor, a terminal and the like. The method is applied to a fixed place, such as a fixed classroom of a training institution, or a public teaching place, such as an external classroom of a library, which can receive external teaching or lecture units, such as a fixed outdoor place and the like. As shown in fig. 1, the method comprises the steps of:
step 101, receiving teaching information sent by a plurality of terminals; each teaching information includes a teaching subject, a field ID, and a student ID.
Specifically, the server may be a cloud server of the fixed classrooms, and may use an area in a city as a unit to record similar fixed sites under the area, and the plurality of terminals may be event organizers who log in the server through their respective terminals and fill in related teaching information, such as the number of students, student Identification (ID), teaching subjects to be performed, site ID, estimated time, and the like.
In one example, when an organization needs to organize a campaign, the names of participants, the names of places where the campaign needs to be held, the keywords of teaching subjects, the expected holding time of the campaign, and the like are obtained and registered on a terminal, the terminal sends the information to a server, and the server receives the information and then performs subsequent processing.
And 102, allocating teacher IDs according to the teaching subjects.
Specifically, the server may assign teachers based on teaching subjects. For example, the teaching subjects are basketball training, the three terminals A, B and C send teaching information, the basketball training in the teaching information all requires to be held in the M field, different teachers can be assigned according to the number of the participators, for example, the number of the participators a is 20, the number of the participators B is 15, the number of the participators C is 5, teachers with different qualifications can be assigned for training according to the number of the students, a certain rule can be preset, for example, the more the number of the participators, the higher the qualification grade of the teachers, the more abundant the experience, and the like, so that the teachers are assigned for teaching activities performed in the M field by the same terminal A, B and the three terminals C.
103, generating a first class schedule corresponding to the site ID according to the teacher ID and the teaching subjects; the first class schedule includes class time information.
Specifically, in an example, continuing to the previous example, the teacher in A, B and C has already been assigned, there may also be a preset priority between time slots, for example, the larger the number of students, the higher the priority of the teacher, a better time slot may be preferentially assigned, the priority between time slots and the priority of the teacher are both set, the priority of the time slot may be that the priority in the morning is higher than the priority in the afternoon, the priority in the morning is higher than the priority in the morning in the afternoon, the priority in the afternoon is higher than the priority in the afternoon, the priority in the evening is lowest, for example, the number of people a is the largest, the number of assigned teacher 1 is the highest, the number of people B is the middle, the number of assigned teacher 2 is the middle, the number of people C is the smallest, and the number of assigned teacher 3 is the lowest. 1 may be assigned a time period of the morning, B a time period of the afternoon, C a time period of the evening. Thus, the class time information, the number of students, etc. of the first place are all considered into the first class schedule.
In another example, step 103 further comprises:
firstly, acquiring travel information and special information of a teacher; then, matching the characteristic information of the teacher with the teaching subjects to generate a matching result; then, according to the matching result, determining the number of teachers corresponding to the teaching subjects; and finally, according to the travel information of the teacher corresponding to the teaching subject, assigning the teacher ID.
Specifically, in the teaching information, the teaching information can further include keywords of teaching subjects, for example, a painting is wanted to be learned, the keywords are traditional paintings, the specialty information of a painting teacher can be acquired, the travel information of the teacher, the specialty information of the teacher and the travel information can be uploaded to the server in real time, and therefore the teacher can be distributed according to the specialty and the travel of the teacher. The travel information here may be information of some class schedule of the teacher, for example, the teacher is on one place on monday, on another place on tuesday, and the like. Therefore, the teachers can be intelligently arranged according to the specialties and the courses of the teachers.
And step 104, searching a preset site ID and class card ID comparison table according to the site ID, and determining the class card ID corresponding to the site ID.
Specifically, each field is provided with a class card, the field ID and the class card ID are bound in advance, the class card corresponding to the field is determined by searching a comparison table of the field ID and the class card ID, and subsequently, the class table is conveniently displayed on the class card.
And 105, sending the first class schedule to the class cards according to the class card ID.
Specifically, the class board can display the first class schedule according to the class time information in the first class schedule.
Step 106, acquiring leave asking information in real time; the leave information includes leave time information, leave person ID and leave teaching subjects.
Specifically, students and teachers can ask for leave due to various personal factors, environmental information and the like, leave-asking information can be uploaded to the server in real time, and the server intelligently updates the first class schedule according to the leave-asking information so as to guarantee the maximum class arrival rate.
Continuing to the above example, if there are 4 people asking for leave in a, the subject asking for leave is basketball training, the time asking for leave may be 3 people asking for leave in monday am, and 1 person asking for leave in afternoon, and the server receives the leave asking information and then calculates the leave asking rate of a, for example, 20%. Alternatively, the first and second electrodes may be,
teacher 1 monday and morning leave, etc.
And step 107, generating a second class table according to the leave asking time information, the leave asking person ID, the leave asking teaching subjects, the student ID and the first class table.
Specifically, step 107 includes:
firstly, determining a site ID corresponding to an ID of a leave-asking person according to the ID of the leave-asking person, the ID of a student and a first class schedule; then, comparing the leave asking time information corresponding to each leave asking person ID with the class time information according to the site ID; secondly, when the number of the leave-asking persons in one subject exceeds a preset threshold value, determining the subject as a subject to be adjusted; then, according to the leave asking time information of the leave asking personnel, the class time information of the subject to be adjusted is adjusted; and finally, generating a second class schedule according to the adjustment result.
Specifically, continuing to take the previous example, determining the subject and the place corresponding to the leave asking person according to the leave asking person ID, the leave asking time information and the student ID, wherein the number of people asking for the basketball training on Monday morning is 3, the preset leave asking number threshold is 5, and if the number of people does not exceed the preset leave asking number threshold, the first class schedule is not updated.
If the number of leave-asking people is 6, the preset leave-asking threshold is 5 people, and the number of leave-asking people exceeds the leave-asking threshold, the first class schedule needs to be adjusted, for example, the number of people in class A is 13 people, the number of people in class B is 15 people, teachers can be replaced according to the number of people in class, and the class time can be replaced, for example, the class time of A and B and the ID of the teachers in class are exchanged, and therefore the maximum utilization of high-quality resources is guaranteed.
In another example, step 107 further comprises:
when the ID of the leave-asking person is overlapped with the ID of the teacher, whether the leave-asking time information conflicts with the lesson time information corresponding to the ID of the teacher is judged;
and when the leave-asking time information conflicts with the lesson taking time information corresponding to the teacher ID, updating the first lesson schedule to obtain a second lesson schedule.
Specifically, continuing to take the previous example, if the teacher 1 asks for a false, the teachers with the same priority can be found according to the priority of the teacher 1, for example, the priority of the teacher 4 is the same as that of the teacher 1, and if the teacher 4 does not have a lecture arrangement, the teacher giving lessons in the M field a can be changed to the teacher 4.
Therefore, the leave asking information of teachers and the leave asking information of students can be combined to carry out intelligent course arrangement, so that the maximum class reaching rate is ensured, and the maximization of high-quality resources is ensured.
Furthermore, leave information can be displayed, so that attendance conditions can be visually obtained.
Fig. 2 is a schematic structural diagram of a system for generating a class schedule in an intelligent class card according to a second embodiment of the present invention. As shown in fig. 2, the system for generating a class schedule in the intelligent class card comprises: a receiving unit 201, an assigning unit 202, a generating unit 203, a determining unit 204, a transmitting unit 205 and an acquiring unit 206.
The receiving unit 201 is configured to receive teaching information sent by a plurality of terminals; each piece of teaching information comprises a teaching subject, a site ID and a student ID;
the assigning unit 202 is configured to assign a teacher ID according to the teaching subject;
the generating unit 203 is used for generating a first class schedule corresponding to the site ID according to the teacher ID and the teaching subjects; the first class schedule comprises class time information;
the determining unit 204 is configured to search a preset site ID and class card ID comparison table according to the site ID, and determine a class card ID corresponding to the site ID;
the sending unit 205 is configured to send the first class schedule to the class card according to the class card ID;
the acquisition unit is used for acquiring the leave request information in real time; the leave asking information comprises leave asking time information, leave asking person ID and leave asking teaching subjects;
the generating unit 206 is further configured to generate a second class table according to the leave request time information, the leave request person ID, the leave request teaching subject, the student ID, and the first class table.
Further, the allocating unit 202 is specifically configured to:
determining the number of students according to the ID of the students;
and determining the teacher ID according to the number of students and the preset priority of the teacher.
Further, the allocating unit 202 is specifically configured to:
acquiring travel information and special length information of a teacher;
matching the specialty information of the teacher with the teaching subjects to generate a matching result;
determining the number of teachers corresponding to the teaching subjects according to the matching result;
and allocating teacher ID according to the travel information of the teacher corresponding to the teaching subject.
Further, the generating unit 206 is specifically configured to:
determining a site ID corresponding to the ID of the leave-asking person according to the ID of the leave-asking person, the ID of the student and the first class schedule;
comparing the leave asking time information corresponding to each leave asking person ID with the class time information according to the site ID;
when the number of the leave-asking persons in one subject exceeds a preset threshold value, determining the subject as a subject to be adjusted;
according to the leave asking time information of the leave asking personnel, the class time information of the subject to be adjusted is adjusted;
and generating a second class schedule according to the adjustment result.
Further, the system further includes a determining unit 207 and an updating unit 208.
The judging unit 207 is configured to judge whether the leave asking time information conflicts with the lesson time information corresponding to the teacher ID when the leave asking person ID coincides with the teacher ID;
the updating unit 208 is configured to update the first schedule to obtain a second schedule when the leave-asking time information conflicts with the lesson-taking time information corresponding to the teacher ID.
By applying the system for generating the class schedule in the intelligent class board provided by the embodiment of the invention, intelligent class arrangement can be carried out by combining leave-asking information of teachers and leave-asking information of students, so that the maximum class reaching rate is ensured, and the maximization of high-quality resources is ensured.
The third embodiment of the invention provides equipment, which comprises a memory and a processor, wherein the memory is used for storing programs, and the memory can be connected with the processor through a bus. The memory may be a non-volatile memory such as a hard disk drive and a flash memory, in which a software program and a device driver are stored. The software program is capable of performing various functions of the above-described methods provided by embodiments of the present invention; the device drivers may be network and interface drivers. The processor is used for executing a software program, and the software program can realize the method provided by the first embodiment of the invention when being executed.
A fourth embodiment of the present invention provides a computer program product including instructions, which, when the computer program product runs on a computer, causes the computer to execute the method provided in the first embodiment of the present invention.
The fifth embodiment of the present invention provides a computer-readable storage medium, where a computer program is stored on the computer-readable storage medium, and when the computer program is executed by a processor, the method provided in the first embodiment of the present invention is implemented.
Those of skill would further appreciate that the various illustrative components and algorithm steps described in connection with the embodiments disclosed herein may be implemented as electronic hardware, computer software, or combinations of both, and that the various illustrative components and steps have been described above generally in terms of their functionality in order to clearly illustrate this interchangeability of hardware and software. Whether such functionality is implemented as hardware or software depends upon the particular application and design constraints imposed on the implementation. Skilled artisans may implement the described functionality in varying ways for each particular application, but such implementation decisions should not be interpreted as causing a departure from the scope of the present invention.
The steps of a method or algorithm described in connection with the embodiments disclosed herein may be embodied in hardware, a software module executed by a processor, or a combination of the two. A software module may reside in Random Access Memory (RAM), memory, Read Only Memory (ROM), electrically programmable ROM, electrically erasable programmable ROM, registers, hard disk, a removable disk, a CD-ROM, or any other form of storage medium known in the art.
The above embodiments are provided to further explain the objects, technical solutions and advantages of the present invention in detail, it should be understood that the above embodiments are merely exemplary embodiments of the present invention and are not intended to limit the scope of the present invention, and any modifications, equivalents, improvements and the like made within the spirit and principle of the present invention should be included in the scope of the present invention.

Claims (10)

1. A method for generating a class schedule in an intelligent class card is characterized by comprising the following steps:
receiving teaching information sent by a plurality of terminals; each piece of teaching information comprises a teaching subject, a site ID and a student ID;
assigning a teacher ID according to the teaching subjects;
generating a first class schedule corresponding to the site ID according to the teacher ID and the teaching subjects; the first class schedule comprises class time information;
according to the site ID, searching a preset site ID and class card ID comparison table, and determining a class card ID corresponding to the site ID;
sending the first class schedule to the class card according to the class card ID;
acquiring leave asking information in real time; the leave asking information comprises leave asking time information, leave asking person ID and leave asking teaching subjects;
and generating a second class table according to the leave asking time information, the ID of the leave asking person, the teaching subject of the leave asking person, the ID of the student and the first class table.
2. The method of claim 1, wherein assigning a teacher ID according to the instructional subject specifically comprises:
determining the number of students according to the ID of the students;
and determining the teacher ID according to the number of students and the preset priority of the teacher.
3. The method of claim 1, wherein assigning a teacher ID according to the instructional subject specifically comprises:
acquiring travel information and special length information of a teacher;
matching the specialty information of the teacher with the teaching subjects to generate a matching result;
determining the number of teachers corresponding to the teaching subjects according to the matching result;
and allocating teacher ID according to the travel information of the teacher corresponding to the teaching subject.
4. The method of claim 1, wherein the generating a second course table according to the leave request time information, the leave request person ID, the leave request teaching subject, the student ID, and the first course table specifically comprises:
determining a site ID corresponding to the ID of the leave-asking person according to the ID of the leave-asking person, the ID of the student and the first class schedule;
comparing the leave asking time information corresponding to each leave asking person ID with the class time information according to the site ID;
when the number of leave-asking persons in one subject exceeds a preset threshold value, determining the subject as a subject to be adjusted;
adjusting the class time information of the subject to be adjusted according to the leave asking time information of the leave asking personnel;
and generating a second class schedule according to the adjustment result.
5. The method of claim 1, wherein the instructional information further comprises a teacher ID, the method further comprising:
when the ID of the leave-asking person is overlapped with the ID of a teacher, judging whether the leave-asking time information conflicts with the lesson time information corresponding to the ID of the teacher;
and when the leave-asking time information conflicts with the lesson taking time information corresponding to the teacher ID, updating the first lesson schedule to obtain a second lesson schedule.
6. A system for generating a class schedule in a smart class card, the system comprising:
the receiving unit is used for receiving teaching information sent by a plurality of terminals; each piece of teaching information comprises a teaching subject, a site ID and a student ID;
the distribution unit is used for distributing teacher IDs according to the teaching subjects;
the generating unit is used for generating a first class schedule corresponding to the site ID according to the teacher ID and the teaching subjects; the first class schedule comprises class time information;
the determining unit is used for searching a preset site ID and class card ID comparison table according to the site ID and determining the class card ID corresponding to the site ID;
the sending unit is used for sending the first class schedule to the class cards according to the class card ID;
the acquiring unit is used for acquiring the leave asking information in real time; the leave asking information comprises leave asking time information, leave asking person ID and leave asking teaching subjects;
the generating unit is further used for generating a second class table according to the leave-asking time information, the ID of the leave-asking person, the teaching subject of the leave-asking, the ID of the student and the first class table.
7. The system according to claim 6, wherein the allocation unit is specifically configured to:
determining the number of students according to the ID of the students;
and determining the teacher ID according to the number of students and the preset priority of the teacher.
8. The system according to claim 6, wherein the allocation unit is specifically configured to:
acquiring travel information and special length information of a teacher;
matching the specialty information of the teacher with the teaching subjects to generate a matching result;
determining the number of teachers corresponding to the teaching subjects according to the matching result;
and allocating teacher ID according to the travel information of the teacher corresponding to the teaching subject.
9. The system according to claim 6, wherein the generating unit is specifically configured to:
determining a site ID corresponding to the ID of the leave-asking person according to the ID of the leave-asking person, the ID of the student and the first class schedule;
comparing the leave asking time information corresponding to each leave asking person ID with the class time information according to the site ID;
when the number of leave-asking persons in one subject exceeds a preset threshold value, determining the subject as a subject to be adjusted;
adjusting the class time information of the subject to be adjusted according to the leave asking time information of the leave asking personnel;
and generating a second class schedule according to the adjustment result.
10. The system according to claim 6, wherein the system further comprises a judging unit and an updating unit;
the judging unit is used for judging whether the leave asking time information conflicts with the lesson time information corresponding to the teacher ID when the leave asking person ID is superposed with the teacher ID;
and the updating unit is used for updating the first class schedule to obtain a second class schedule when the leave-asking time information conflicts with the class time information corresponding to the teacher ID.
CN201911061024.7A 2019-11-01 2019-11-01 Method and system for generating class schedule in intelligent class board Pending CN110826996A (en)

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