Education examination intelligent arrangement and grouping method and system
Through intelligent orchestration and grouping methods, the problem of candidates taking exams at the same time in different subjects is solved, and fair and smooth examination arrangements are achieved, and are suitable for multiple examination types.
Patent Information
- Application Number
- CN202510296975.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2025-07-04
AI Technical Summary
The existing technology cannot intelligently set the separation sessions when organizing education exams, resulting in different subjects being arranged at the same time, affecting the fairness and smooth progress of the exam.
Provide an intelligent grouping method for educational examinations. By grouping candidates according to specific rules, obtaining relevant data of candidate groups, computing relevant data of subject examinations, and arranging examinations for different subjects at different time periods on the same day.
It realizes reasonable grouping of candidates, ensures fairness and smooth progress of the examination, provides flexibility and wide applicability of the examination schedule, and is suitable for a variety of examination types.
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Figure CN120258380A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of educational evaluation, and particularly relates to an intelligent scheduling and grouping method and system for educational examinations. Background Art
[0002] When organizing large-scale examinations, in order to ensure fairness and the smooth progress of the examinations, it is necessary to reasonably group the examinees and arrange cross-examinations for two or more subjects. After an examinee finishes one subject examination, they need to wait for several examination sessions before taking another subject examination. When arranging educational examinations in the prior art, in the face of examinees starting the examinations simultaneously, the prior art has the following disadvantages:
[0003] The examination scheduling can only separately arrange the examination time and sessions for one subject alone, and the examination scheduling cannot intelligently set the separation sessions, resulting in different subjects of examinees being scheduled at the same time. The present invention aims to solve the problem of how to efficiently arrange the examination schedule for multiple groups of examinees. Summary of the Invention
[0004] To solve the above problems, the present invention provides an intelligent scheduling and grouping method for educational examinations, aiming to reasonably group the examinees and arrange cross-examinations for two or more subjects to ensure fairness and the smooth progress of the examinations, and different subjects can be intelligently scheduled at different time periods on the same day.
[0005] To achieve the above object, the present invention provides the following technical solutions:
[0006] On the one hand, the present invention provides an intelligent scheduling and grouping method for educational examinations, including the following steps:
[0007] Group the examinees according to specific rules to obtain at least one set of data related to the grouping of examinee groups;
[0008] According to the at least one set of data related to the grouping of examinee groups, obtain the examination room-related data of the at least one examinee group;
[0009] According to the examination room-related data of the at least one examinee group, calculate the examination-related data of at least one subject of the at least one examinee group.
[0010] The step of grouping the examinees according to specific rules to obtain at least one set of data related to the grouping of examinee groups includes: grouping the examinees according to a preset interval; at least one set of data related to the grouping of examinee groups includes: the number of examinee groups, the serial number of the grouping, the number of batches, and the batch serial number.
[0011] Preferably, according to the at least one set of data related to the grouping of examinee groups, obtaining the examination room-related data of the at least one examinee group includes:
[0012] Calculate the examination room number according to the sequence number of the grouping of the at least one candidate group.
[0013] Preferably, calculating the examination-related data of at least one subject of the at least one candidate group according to the examination room-related data of the at least one candidate group includes: calculating the examination time of at least one subject according to the sequence number of the grouping of the at least one candidate group; or,
[0014] Preferably, calculate the examination time of at least one subject according to the batch number of the grouping of the at least one candidate group.
[0015] Preferably, according to the sequence number of the grouping of the at least one candidate group, provide the examination end time of at least one subject, and provide a warning at a preset time to remind the invigilator and candidates to pay key attention.
[0016] Before grouping the candidates according to specific rules and obtaining the grouping-related data of at least one candidate group, it also includes: obtaining the student status information of the candidate group, and the student status information of the candidate group includes basic identity information, registration point information, and application information.
[0017] Preferably, after calculating the examination-related data of at least one subject of the at least one candidate group according to the examination room-related data of the at least one candidate group, it also includes: formulating admission tickets, arranging examination rooms, determining the number of people in each examination room, invigilating teachers, and statistically analyzing the candidates' scores, and publishing the candidates' scores on the official website.
[0018] On the other hand, the present invention also provides an intelligent arrangement and grouping system for educational examinations, including:
[0019] A grouping module for grouping candidates according to specific rules to obtain grouping-related data of at least one candidate group;
[0020] An obtaining module for obtaining the examination room-related data of the at least one candidate group according to the grouping-related data of the at least one candidate group;
[0021] A calculation module for calculating the examination-related data of at least one subject of the at least one candidate group according to the examination room-related data of the at least one candidate group.
[0022] Preferably, the grouping module is also used to group candidates according to a preset interval; the grouping-related data of at least one candidate group includes: the number of candidate groups, the sequence number of the grouping, the number of batches, and the batch sequence number.
[0023] Preferably, the obtaining module is also used to calculate the examination room number according to the sequence number of the grouping of the at least one candidate group.
[0024] Preferably, the calculation module is further configured to calculate the examination time of at least one subject according to the serial number of the grouping of the at least one candidate group; or calculate the examination time of at least one subject according to the batch number of the grouping of the at least one candidate group.
[0025] Preferably, the calculation module is further configured to provide the end time of the examination of at least one subject according to the serial number of the grouping of the at least one candidate group, and provide a warning at a preset time to remind the invigilator and the candidates to pay key attention.
[0026] Preferably, the calculation module is further configured to obtain the student status information of the candidate group, and the student status information of the candidate group includes basic identity information, registration point information, and application information.
[0027] Preferably, the calculation module is further configured to draw up admission tickets, determine the number of people in each examination room, invigilators, and count the candidates' scores, and announce the candidates' scores on the official website.
[0028] Compared with the prior art, the beneficial effects of the present invention are:
[0029] The present invention provides an intelligent arrangement and grouping method for educational examinations, which ensures fairness and the smooth progress of examinations, reasonably groups candidates, and arranges cross-examinations for two or more subjects. Different subjects can be intelligently arranged in different time periods on the same day. At the same time, the flexibility and wide applicability of the intelligent examination arrangement method: it can be applied to various examination types such as junior high school academic proficiency physical, chemical and biological operation examinations, physical education examinations, etc. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Figure 1 It is a schematic diagram of the overall structure of an intelligent arrangement and grouping method for educational examinations in an embodiment of the present invention;
[0031] Figure 2 It is a schematic diagram of candidate grouping in Embodiment 1;
[0032] Figure 3 It is a schematic diagram of candidate group batches in Embodiment 1;
[0033] Figure 4 It is a schematic diagram of obtaining the examination room number in Embodiment 1;
[0034] Figure 5 It is a schematic diagram of calculating the physical examination time in Embodiment 1;
[0035] Figure 6 It is a schematic diagram of calculating the chemistry examination time in Embodiment 1;
[0036] Figure 7 It is a schematic diagram of an intelligent arrangement and grouping system for educational examinations in an embodiment of the present invention;
[0037] Figure 8 Schematic diagram of dividing examinee groups in the second embodiment;
[0038] Figure 9 Schematic diagram of obtaining examination room numbers in the second embodiment;
[0039] Figure 10 Schematic diagram of calculating the physical examination time in the second embodiment;
[0040] Figure 11 Schematic diagram of calculating the chemistry examination time in the second embodiment. Specific implementation manners
[0041] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0042] Combined with the attached Figures 1 - 6 , in this embodiment, the present invention provides an intelligent arrangement and grouping method for educational examinations, which groups examinees according to specific rules and obtains at least one piece of data related to the grouping of examinee groups; the grouping of examinees according to specific rules and obtaining at least one piece of data related to the grouping of examinee groups includes: grouping examinees according to a preset interval of examination rooms; at least one piece of data related to the grouping of examinee groups includes: the number of examinee groups, the serial number of the grouping, the number of batches, and the batch serial number. The examinees on the same day are divided into N groups, and the group number NNO is 1, 2, 3...; every T groups of examinee groups are further divided into 1 batch, and the batch number TNO is 1, 2, 3...
[0043] The following relational expression is used to calculate the number of examinee groups in a batch:
[0044] T = M * P, where: T represents the number of examinee groups in a batch, M represents the number of examination rooms, and P represents the number of intervals of examination rooms. Explanation: Assume that there are 2 examination rooms for physics and chemistry respectively, and the interval between the physics and chemistry examinations for examinees in the same group is 4 examination rooms. Then, every 2 * 4 = 8 groups of examinees are 1 batch.
[0045] According to the at least one piece of data related to the grouping of examinee groups, the examination room-related data of the at least one examinee group is obtained; according to the at least one piece of data related to the grouping of examinee groups, obtaining the examination room-related data of the at least one examinee group includes: there are M examination rooms for each subject, and the examination room number MNO is 1, 2, 3…
[0046] The examination interval between two subjects of examinees is P examination rooms.
[0047] Calculate the examination room number according to the serial number of the grouping of the at least one candidate group. Calculate the examination room number where the candidate group is located using the following relational expression:
[0048] MNO = NNO % M + 1, where: MNO represents the examination room number where the candidate group is located, and NNO represents the candidate group number. Explanation: Assume as above, there are 2 examination rooms for physics and chemistry respectively. Then the examination room number corresponding to the first group of candidates is 2, and the examination room number corresponding to the second group of candidates is 1. Similarly, the examination room number corresponding to the third group of candidates is 2, and the examination room number corresponding to the fourth group of candidates is 1.
[0049] Calculate the examination-related data of at least one subject of the at least one candidate group according to the examination room-related data of the at least one candidate group. Calculating the examination-related data of at least one subject of the at least one candidate group according to the examination room-related data of the at least one candidate group includes: calculating the examination time of at least one subject according to the serial number of the grouping of the at least one candidate group; or calculating the examination time of at least one subject according to the batch number of the grouping of the at least one candidate group. The time for each examination is A minutes, and the interval rest time is B minutes.
[0050] Arrange the start examination time as start_time, the start physics examination time as p_start_time, and the start chemistry examination time as c_start_time. Calculate the start physics examination time using the following relational expression:
[0051] p_start_time = start_time + int((NNO - 1) / M) * (A + B), where p_start_time represents the physics examination time, start_time represents the start examination time, int represents taking the integer, A represents the time for each examination, and B represents the interval rest time.
[0052] Calculate the start chemistry examination time using the following relational expression:
[0053] c_start_time = TNO % 2 == 0? p_start_time - P * (A + B);
[0054] p_start_time + P * (A + B)
[0055] c_start_time (chemistry examination time) = batch TNO number % 2 == 0?
[0056] Among them, p_start_time represents the physical exam time, P represents the number of intervals between sessions, A represents the time for each exam session, and B represents the break time between intervals; p_start represents the physical exam time, P represents the number of intervals between sessions, A represents the time for each exam session, and B represents the break time between intervals.
[0057] According to the sequence numbers of the groupings of the at least one candidate group, provide the end times of the exams for at least one subject, and provide a warning at a preset time to remind the invigilators and candidates to pay key attention.
[0058] Before grouping the candidates according to specific rules and obtaining relevant data on the grouping of at least one candidate group, it further includes: obtaining the school roll information of the candidate group, and the school roll information of the candidate group includes basic identity information, registration point information, and application information.
[0059] After calculating the exam-related data of at least one subject of the at least one candidate group based on the examination room-related data of the at least one candidate group, it further includes: drawing up admission tickets, arranging examination rooms, determining the number of candidates in each examination room, invigilating teachers, and statistically analyzing the candidates' scores and publishing the candidates' scores on the official website.
[0060] The present invention provides an intelligent scheduling and grouping method for educational examinations, which ensures fairness and the smooth progress of examinations, reasonably groups candidates, and arranges cross-examinations for two or more subjects. Different subjects can be intelligently scheduled to be examined simultaneously at different time periods on the same day. The flexibility and wide applicability of the intelligent scheduling method: it can be applied to various examination types such as the physical, chemical, and biological operation examinations and physical education examinations for junior high school academic proficiency.
[0061] Embodiment 1
[0062] The following steps take 14 groups of candidates, with an interval of 4 sessions, 1 physical and 1 chemical examination room, and 14 groups of candidates, with an interval of 4 sessions, 2 physical and 2 chemical examination rooms as examples respectively.
[0063] In the specific implementation process of this embodiment, on the basis of Embodiment 1,
[0064] 14 groups of candidates, with an interval of 4 sessions, 1 physical and 1 chemical examination room
[0065] 1. Group the candidates according to the mixed grouping rule.
[0066] 2. Calculate the number of batches and divide the candidate groups into batches
[0067] According to the relational formula T = M * P, each batch should contain 4 candidate groups, and there are only 2 groups in the 4th batch.
[0068] 3. Obtain the examination room numbers
[0069] Although there is only 1 physical examination room and 1 chemistry examination room, the relational formula can still be applied for calculation. MNO = NNO % M + 1. For the candidates in group 1, the corresponding examination room is 1 % 1 + 1 = 1, that is, examination room 1 (including both physical and chemistry being examination room 1). For the candidates in group 2, the corresponding examination room is 2 % 1 + 1 = 1, that is, examination room 1, and so on. The examination room information for all candidate groups can be obtained.
[0070] 4. Calculate the physical examination time
[0071] Assume the exam starts at 8:00 in the morning, each exam lasts for 10 minutes, and the break interval between exams is 5 minutes. Then according to the relational formula: p_start_time = start_time + int((NNO - 1) / M) * (A + B), it can be obtained that the start time of the physical exam for the candidates in group 1 is 8:00 + int((1 - 1) / 1) * (10 + 5) = 8:00, and the start time of the physical exam for the candidates in group 2 is 8:00 + int((2 - 1) / 1) * (10 + 5) = 8:15, and so on. The start time information of the physical exams for all candidate groups can be obtained.
[0072] 5. Calculate the chemistry examination time
[0073] The chemistry examination time is calculated by reverse deduction based on the physical examination time according to the relational formula: c_start_time = TNO % 2 == 0? p_start_time - P * (A + B) : p_start_time + P * (A + B).
[0074] Group 1: Group 1 is batch 1. Since 1 % 2!= 0, the relational formula for calculating the chemistry examination time of group 1 is p_start_time + P * (A + B), that is: 8:00 + 4 * (10 + 5) = 9:00
[0075] Group 2: Group 2 is batch 1. Since 1 % 2!= 0, the relational formula for calculating the chemistry examination time of group 2 is p_start_time + P * (A + B), that is: 8:15 + 4 * (10 + 5) = 9:15
[0076] Group 5: Group 5 is batch 2. Since 2 % 2 == 0, the relational formula for calculating the chemistry examination time of group 5 is p_start_time - P * (A + B), that is: 9:00 - 4 * (10 + 5) = 8:00
[0077] Group 6: Group 6 is batch 2. Since 2 % 2 == 0, the relational formula for calculating the chemistry examination time of group 6 is p_start_time - P * (A + B), that is: 9:15 - 4 * (10 + 5) = 8:15
[0078] By analogy, the start time information of the chemistry exams for all candidate groups can be obtained.
[0079] 14 candidate groups, with a 4-exam interval, 2 physics and 2 chemistry exam rooms
[0080] 1. Group the candidates according to the mixed grouping rule.
[0081] 2. Calculate the number of batches and divide the candidate groups into batches.
[0082] According to the relationship T = M * P, each batch should contain 8 candidate groups, and there are only 6 groups in the second batch.
[0083] 3. Obtain the exam room numbers
[0084] Apply the relationship formula to calculate and obtain: MNO = NNO % M + 1. For the candidates in group 1, the corresponding exam room is 1 % 2 + 1 = 2, that is, exam room 2 (both physics and chemistry are in exam room 1). For the candidates in group 2, the corresponding exam room is 2 % 2 + 1 = 1, that is, exam room 1. By analogy, the exam room information for all candidate groups can be obtained.
[0085] Next, a specific example of the intelligent arrangement and grouping method for educational exams described in the present invention will be elaborated.
[0086] 4. Calculate the physics exam time
[0087] Assume the exam starts at 8:00 in the morning, each exam lasts 10 minutes, and the exam break interval is 5 minutes. Then according to the relationship formula: p_start_time = start_time + int((NNO - 1) / M) * (A + B), the start time of the candidates in group 1 is 8:00 + int((1 - 1) / 2) * (10 + 5) = 8:00, and the start time of the candidates in group 2 is 8:00 + int((2 - 1) / 2) * (10 + 5) = 8:00. By analogy, the start time information of the physics exams for all candidate groups can be obtained.
[0088] 5. Calculate the chemistry exam time
[0089] The chemistry exam time is deduced based on the physics exam time according to the relationship formula: c_start_time = TNO % 2 == 0? p_start_time - P * (A + B) : p_start_time + P * (A + B).
[0090] Group 1: Group 1 is in batch 1. Since 1 % 2!= 0, the calculation relationship formula for the chemistry exam time of group 1 is p_start_time + P * (A + B), that is: 8:00 + 4 * (10 + 5) = 9:00
[0091] Group 2: Group 2 is batch 1. Since 1 % 2 != 0, the calculation formula for the chemistry exam time of Group 2 is p_start_time + P * (A + B), that is: 8:00 + 4 * (10 + 5) = 9:00
[0092] Group 9: Group 9 is batch 2. Since 2 % 2 == 0, the calculation formula for the chemistry exam time of Group 5 is p_start_time - P * (A + B), that is: 9:00 - 4 * (10 + 5) = 8:00
[0093] Group 10: Group 10 is batch 2. Since 2 % 2 == 0, the calculation formula for the chemistry exam time of Group 6 is p_start_time - P * (A + B), that is: 9:00 - 4 * (10 + 5) = 8:00.
[0094] And so on, the chemistry exam start time information for all candidate groups can be obtained. It can be seen from the embodiments of the present invention that the present invention provides an intelligent scheduling and grouping method for educational examinations. The present invention arranges cross-examinations for two or more subjects, and different subjects can be intelligently scheduled in different time periods on the same day.
[0095] Combined with the attached Figure 7 , in this embodiment, the present invention provides an intelligent scheduling and grouping system for educational examinations, including: a grouping module, an acquisition module, and a calculation module.
[0096] Among them, the grouping module is used to group candidates according to specific rules and obtain at least one piece of data related to the grouping of candidate groups;
[0097] The acquisition module is used to obtain the examination room-related data of the at least one candidate group according to the at least one piece of data related to the grouping of candidate groups;
[0098] The calculation module is used to calculate the examination-related data of at least one subject of the at least one candidate group according to the examination room-related data of the at least one candidate group.
[0099] The grouping module is also used to group candidates according to a preset interval; at least one piece of data related to the grouping of candidate groups includes: the number of candidate groups, the serial number of the grouping, the number of batches, and the batch serial number.
[0100] The acquisition module is also used to calculate the serial number of the examination room according to the serial number of the grouping of the at least one candidate group.
[0101] The calculation module is also used to calculate the examination time of at least one subject according to the serial number of the grouping of the at least one candidate group; or, calculate the examination time of at least one subject according to the batch of the grouping of the at least one candidate group.
[0102] The calculation module is also used to provide the end time of the exam for at least one subject according to the sequence number of the grouping of the at least one candidate group, and provide a warning at a preset time to remind the invigilator and candidates to pay key attention.
[0103] The calculation module is also used to obtain the school roll information of the candidate group, and the school roll information of the candidate group includes basic identity information, registration point information, and application information.
[0104] The calculation module is also used to draw up admission tickets, determine the number of people in each examination room, invigilators, and to statistically calculate the candidates' scores and publish the candidates' scores on the official website.
[0105] Specifically, the present invention provides an intelligent arrangement and grouping system for educational examinations, including a student-side mobile phone, a teacher-side mobile phone, and a cloud service platform.
[0106] The student-side mobile phone is built-in with a positioning device and a third-party software APP that has been set up; the student-side mobile phone is used to obtain application information, verify identity, sign in for the exam, etc. through the third-party software APP, and display school roll information, exam information, and current location information, etc. The school roll information includes basic identity information, registration point information, and application information.
[0107] The teacher-side mobile phone is built-in with a third-party software APP that has been set up; the teacher-side mobile phone is used to send sign-in operations, statistically query the results of class attendance information, and manage students, etc. through the third-party software APP.
[0108] The intelligent arrangement and grouping system for educational examinations provided by the present invention further includes a cloud service platform, and both the student-side mobile phone and the teacher-side mobile phone are communicatively connected to the cloud service platform. The cloud service platform is used to receive the information sent by the third-party software APP of the student-side mobile phone and the teacher-side mobile phone and record and process it, so as to realize functions such as controlling sign-in operations, statistically querying sign-in results, and managing students.
[0109] In specific implementation, the cloud service platform adopts a hard disk server, and the positioning device adopts a GPS or Beidou positioning system.
[0110] The student-side mobile phone, the teacher-side mobile phone and the cloud service platform are communicatively connected through 4G or 5G. All communication data sent by the teacher-side mobile phone and the student-side mobile phone are stored in the cloud service platform and viewed in the form of reading the database.
[0111] The data storage of the database of the cloud server is mainly supported by the SQLite database. Multiple tables are maintained in the database, and data is stored with students, teachers, and course names as the core. For example, multiple tables in the database store fields corresponding to obtaining application information, verifying identity, and signing in for the exam, including school roll information, age, height, weight, registration point information, application subjects, and exam scores.
[0112] The cloud server will process the received student information, be able to record all the numbers, calculate the number of absent students and the information of each person, and transmit the results to the teacher side and establish a database.
[0113] Embodiment 2
[0114] Combined with the attached Figures 8 - 11 , in this embodiment, the present invention provides an intelligent arrangement and grouping method for educational examinations, including the following steps:
[0115] 1. Group the examinees according to the mixed grouping rule
[0116] 2. Calculate the number of batches and divide the examinee groups into batches
[0117] According to the relational formula T = M * P, where: T represents the number of examinee groups in a batch, M represents the number of examination rooms, and P represents the interval number of examination rooms. In this embodiment, the steps of grouping according to the mixed grouping rule in Embodiment 2 are the same as those in the previous embodiment and will not be elaborated here. In the first batch, there are only 8 groups including 8 examinee groups, and in the second batch, there are only 6 groups.
[0118] 3. Obtain the examination room number
[0119] MNO = NNO % M + 1, where: MNO represents the examination room number where the examinee group is located, NNO represents the examinee group number. For the examinees in group 1, the corresponding examination room is 1 % 2 + 1 = 2, that is, examination room 2 (including both physics and chemistry in examination room 1). For the examinees in group 2, the corresponding examination room is 2 % 2 + 1 = 1, that is, examination room 1. By analogy, the examination room information of all examinee groups can be obtained.
[0120] 4. Calculate the physics exam time
[0121] Assume that the exam starts at 8:00 in the morning, each exam lasts for 10 minutes, and the exam break interval is 5 minutes. Then according to the relational formula: p_start_time = start_time + int((NNO - 1) / M) * (A + B), where p_start_time represents the physics exam time, start_time represents the start exam time, int represents taking the integer, A represents the time of each exam, and B represents the interval rest time. The start exam time for the examinees in group 1 is 8:00 + int((1 - 1) / 2) * (10 + 5) = 8:00, and the start exam time for the examinees in group 2 is 8:00 + int((2 - 1) / 2) * (10 + 5) = 8:00. By analogy, the start physics exam time information of all examinee groups can be obtained.
[0122] 5. Calculate the chemistry exam time
[0123] The chemistry exam time is based on the physics exam time according to the following relationship:
[0124] c_start_time = TNO % 2 == 0? p_start_time - P * (A + B), p_start_time + P * (A + B) for reverse calculation.
[0125] Group 1: Group 1 is batch 1. Since 1 % 2!= 0, the calculation formula for the chemistry exam time of Group 1 is p_start_time + P * (A + B), that is: 8:00 + 4 * (10 + 5) = 9:00
[0126] Group 2: Group 2 is batch 1. Since 1 % 2!= 0, the calculation formula for the chemistry exam time of Group 2 is p_start_time + P * (A + B), that is: 8:00 + 4 * (10 + 5) = 9:00
[0127] Group 9: Group 9 is batch 2. Since 2 % 2 == 0, the calculation formula for the chemistry exam time of Group 5 is p_start_time - P * (A + B), that is: 9:00 - 4 * (10 + 5) = 8:00
[0128] Group 10: Group 10 is batch 2. Since 2 % 2 == 0, the calculation formula for the chemistry exam time of Group 6 is p_start_time - P * (A + B), that is: 9:00 - 4 * (10 + 5) = 8:00.
[0129] Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. An intelligent arrangement and grouping method for educational examinations, characterized in that, It includes the following steps: Group the examinees according to specific rules to obtain at least one set of data related to the grouping of examinee groups; Obtain the examination room-related data of the at least one examinee group according to the at least one set of data related to the grouping of examinee groups; Calculate the examination-related data of at least one subject of the at least one examinee group according to the examination room-related data of the at least one examinee group.
2. The intelligent arrangement and grouping method for educational examinations according to claim 1, characterized in that, Grouping the examinees according to specific rules to obtain at least one set of data related to the grouping of examinee groups includes: grouping the examinees according to a preset interval; at least one set of data related to the grouping of examinee groups includes: the number of examinee groups, the serial number of the grouping, the number of batches, and the batch serial number.
3. The intelligent arrangement and grouping method for educational examinations according to claim 1, wherein Obtaining the examination room-related data of the at least one examinee group according to the at least one set of data related to the grouping of examinee groups includes: Calculating the serial number of the examination room according to the serial number of the grouping of the at least one examinee group.
4. An intelligent arrangement and grouping method for educational examinations according to claim 1, characterized in that, Calculating the examination-related data of at least one subject of the at least one examinee group according to the examination room-related data of the at least one examinee group includes: calculating the start time of the examination of at least one subject according to the serial number of the grouping of the at least one examinee group; or, Calculating the examination time of at least one subject according to the batch of the grouping of the at least one examinee group.
5. An intelligent arrangement and grouping method for educational examinations according to claim 1, characterized in that, Calculating the examination-related data of at least one subject of the at least one examinee group according to the examination room-related data of the at least one examinee group includes: providing the end time of the examination of at least one subject according to the serial number of the grouping of the at least one examinee group, and providing a warning at a preset time to remind the invigilator and the examinees to pay key attention.
6. The intelligent arrangement and grouping method for educational examinations according to claim 1, wherein Before grouping the examinees according to specific rules to obtain at least one set of data related to the grouping of examinee groups, it also includes: obtaining the student status information of the examinee group, and the student status information of the examinee group includes basic identity information, registration point information, and application information.
7. An intelligent arrangement and grouping method for educational examinations according to claim 1, characterized in that After calculating the examination-related data of at least one subject of the at least one examinee group according to the examination room-related data of the at least one examinee group, it also includes: drawing up admission tickets, determining the number of people in each examination room, invigilators, and statistically analyzing the scores of the examinees, and publishing the scores of the examinees on the official website.
8. An intelligent arrangement and grouping system for educational examinations, characterized in that, It includes: A grouping module for grouping the examinees according to specific rules to obtain at least one set of data related to the grouping of examinee groups; An obtaining module for obtaining the examination room-related data of the at least one examinee group according to the at least one set of data related to the grouping of examinee groups; A calculating module for calculating the examination-related data of at least one subject of the at least one examinee group according to the examination room-related data of the at least one examinee group.
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