Detection method, detection system and detection device for communication performance of intelligent tablet computer

Through the cooperation of the control terminal and mechanical devices, the intelligent tablets are blocked one by one to simulate the teaching environment and collect communication performance data, solving the problem of low detection efficiency in the existing technology, and achieving efficient and accurate communication performance detection.

CN120389968APending Publication Date: 2025-07-29GUANGZHOU SHIRUI ELECTRONICS +1
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Patent Information

Application Number
CN202410112100.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-01-26
Publication Date
2025-07-29

AI Technical Summary

Technical Problem

The existing WIFI communication performance detection method of intelligent interactive tablets under the condition of push-pull blackboard obscuring cannot simulate the real teaching environment and has low detection efficiency.

Method used

Through the control terminal, multiple push and pull blackboards with different materials are controlled to block the smart tablets during the test period. The router collects communication performance data, and combines the cooperation of electronic devices and mechanical devices to simulate the occlusion scenario in the real teaching environment.

Benefits of technology

The communication performance detection efficiency and accuracy of smart tablets under different materials' push-pull blackboard occlusion is improved, and the detection process is closer to actual application scenarios, reducing labor and time costs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention relates to a detection method, a detection system and a detection device for communication performance of an intelligent tablet, and the detection method applied to a control terminal comprises the steps: controlling each push-pull blackboard to move in a corresponding test time period one by one, so as to shield the intelligent tablet in the light emitting direction of the intelligent tablet; acquiring test communication performance data of the intelligent tablet in the current test time period based on the router under the condition that the intelligent tablet is completely shielded by the current push-and-pull blackboard in each test time period to obtain test communication performance data of the intelligent tablet under the condition that the intelligent tablet is completely shielded by the push-and-pull blackboards made of different materials; the communication performance of the intelligent tablet shielded by the push-and-pull blackboards made of different materials can be automatically detected, and the acquisition efficiency of the test communication performance data under the condition that the intelligent tablet is completely shielded by the push-and-pull blackboards made of different materials can be improved; and the detection is completed in the same shielding space, so that the accuracy of the detection is improved.
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Description

Technical Field

[0001] The present application relates to the technical field of display devices, and in particular, to a method for detecting the communication performance of an intelligent tablet, a detection system, a detection device, a computer device, a storage medium, and a computer program product. Background Art

[0002] With the development of society, more and more schools are using intelligent interactive tablets as one of the teaching devices. However, ordinary blackboards are still indispensable teaching devices in the teaching environment. Since intelligent interactive tablets and ordinary blackboards are often installed on one side of the podium in the teaching environment, in the actual application process of intelligent interactive tablets in schools, they are often placed inside the sliding blackboard. Based on this, in product R & D testing and factory production testing, it is necessary to verify the wireless network (WIFI) communication performance and stability between the intelligent interactive tablet and the router under sliding blackboards of different materials. The existing testing method is to test the WIFI communication performance between the intelligent interactive tablet and the router by blocking the router or using an attenuator, but it cannot simulate the usage scenario where the sliding blackboard blocks the intelligent interactive tablet in reality. Summary of the Invention

[0003] Based on this, in view of the above technical problems, it is necessary to provide a detection method, a detection system, a detection device, a computer device, a storage medium, and a computer program product for the communication performance of an intelligent tablet, which can simulate the usage scenario where the sliding blackboard blocks the intelligent interactive tablet in reality and improve the detection efficiency of the influence of sliding blackboards of different materials on the WIFI communication performance between the blocked intelligent interactive tablet and the router.

[0004] In a first aspect, the present application provides a method for detecting the communication performance of an intelligent tablet, which is applied to a control terminal, and the method includes:

[0005] Controlling each sliding blackboard in the blackboard module to move in its corresponding test time period one by one to block the intelligent tablet in the light-emitting direction of the intelligent tablet; wherein, the blackboard module and the intelligent tablet are arranged in the same shielding space, the blackboard module includes a plurality of the sliding blackboards, the plurality of the sliding blackboards are stacked along the light-emitting direction of the intelligent tablet, and at least two of the sliding blackboards are made of different materials; the shielding space is used to shield wireless communication signals;

[0006] During each of the test time periods, when the smart tablet is completely blocked by the current push-pull blackboard, based on the router, collect the test communication performance data of the smart tablet during the current test time period to obtain the test communication performance data when the smart tablet is completely blocked by push-pull blackboards of different materials; wherein, the router and the smart tablet are located in the same shielding space, the router is communicatively connected to the smart tablet and the control terminal respectively, the router communicates with the smart tablet wirelessly, and the control terminal is electrically connected to the blackboard module;

[0007] Wherein, during the same test time period, one of the push-pull blackboards in the blackboard module blocks the smart tablet, and the remaining push-pull blackboards do not overlap with the smart tablet in the light-emitting direction of the smart tablet.

[0008] In one embodiment, before controlling each push-pull blackboard in the blackboard module to move during its corresponding test time period one by one, it further includes:

[0009] When the smart tablet is not blocked by the push-pull blackboard along its light-emitting direction, based on the router, collect the reference communication performance data of the smart tablet.

[0010] In one embodiment, after obtaining the test communication performance data when the smart tablet is completely blocked by push-pull blackboards of different materials, it further includes:

[0011] Based on the collected multiple test communication performance data and the reference communication performance data, determine the wireless communication performance detection results when the smart tablet is completely blocked by push-pull blackboards of different materials.

[0012] In one embodiment, after collecting the reference communication performance data of the smart tablet based on the router, it further includes:

[0013] Based on the collected multiple test communication performance data and the reference communication performance data, calculate the proportion of each sub-test performance data in each test communication performance data to the corresponding sub-reference data in the reference communication performance data.

[0014] In one embodiment, after obtaining the test communication performance data when the smart tablet is completely blocked by push-pull blackboards of different materials, it further includes:

[0015] Based on a preset score table, determine the sub-scores corresponding to the proportion of each sub-test performance data to the corresponding sub-reference data.

[0016] Accumulate each of the sub - scores to obtain the total score of the test communication performance data; and based on a preset rating table, determine the rating level of the push - pull blackboard corresponding to the total score.

[0017] In one embodiment, calculating the proportion of each sub - test performance data in each of the test communication performance data to the corresponding sub - reference data in the reference communication performance data includes at least one of the following:

[0018] Calculate the proportion of the signal throughput in each sub - test performance data in each of the test communication performance data to the signal throughput in the corresponding sub - reference data in the reference communication performance data;

[0019] Calculate the proportion of the signal strength in each sub - test performance data in each of the test communication performance data to the signal strength in the corresponding sub - reference data in the reference communication performance data;

[0020] Calculate the proportion of the number of packet losses in each sub - test performance data in each of the test communication performance data to the number of packet losses in the corresponding sub - reference data in the reference communication performance data;

[0021] Calculate the proportion of the delay time in each sub - test performance data in each of the test communication performance data to the delay time in the corresponding sub - reference data in the reference communication performance data.

[0022] In one embodiment, after determining the rating level of the push - pull blackboard corresponding to the total score, it further includes:

[0023] Output a detection report; wherein the detection report includes the signal throughput, signal strength, number of packet losses, delay time, and total score corresponding to the smart tablet when it is completely blocked by push - pull blackboards of different materials, as well as the numbers and rating levels of each push - pull blackboard.

[0024] In one embodiment, controlling each push - pull blackboard in the blackboard module to move within its corresponding test time period one by one includes:

[0025] Control each push - pull blackboard in the blackboard module to move within its corresponding test time period one by one via a switch and a motor module; wherein the switch and the motor module are located in the same shielding space as the smart tablet.

[0026] In one embodiment, the controlling each push - pull blackboard in the blackboard module to move within its corresponding test time period one by one via a switch and a motor module includes:

[0027] Transmit control instructions to the track holding the push-pull blackboard via a switch and a motor module, and control the movement of the track one by one to drive each push-pull blackboard in the blackboard module to move within its corresponding test time period.

[0028] In a second aspect, the present application further provides a detection system for the communication performance of an intelligent tablet, including an intelligent tablet, a blackboard module, and a router arranged in the same shielding space, and further including a control terminal; the shielding space is used to shield wireless communication signals; wherein:

[0029] The blackboard module includes a plurality of push-pull blackboards, and the plurality of push-pull blackboards are stacked along the light-emitting direction of the intelligent tablet, and at least two of the push-pull blackboards are made of different materials;

[0030] The router is respectively communicatively connected to the intelligent tablet and the control terminal, and the router is wirelessly communicatively connected to the intelligent tablet;

[0031] The control terminal is also electrically connected to the blackboard module;

[0032] The control terminal is used to control the movement of each push-pull blackboard within its corresponding test time period one by one to block the intelligent tablet in the light-emitting direction of the intelligent tablet;

[0033] The control terminal is further used to, within each test time period and when the intelligent tablet is completely blocked by the current push-pull blackboard, collect the test communication performance data of the intelligent tablet within the current test time period based on the router, and obtain the test communication performance data of the intelligent tablet when it is completely blocked by the push-pull blackboards made of different materials;

[0034] Wherein, within the same test time period, one of the push-pull blackboards in the blackboard module blocks the intelligent tablet, and the remaining push-pull blackboards do not overlap with the intelligent tablet along the light-emitting direction of the intelligent tablet.

[0035] In one embodiment, the system further includes a switch and a motor module, and the switch and the motor module are located in the same shielding space as the intelligent tablet;

[0036] The switch is respectively electrically connected to the control terminal and the motor module, and is electrically connected to the router; the other end of the motor module is electrically connected to the blackboard module;

[0037] Wherein, the switch is used to receive the control instructions sent by the control terminal and transmit the control instructions to the motor module, and the motor module drives the movement of the push-pull blackboard based on the received control instructions; and, the switch is further used to implement network communication between the router and the control terminal.

[0038] In one embodiment, the blackboard module further includes a track;

[0039] The track clamps the push-pull blackboard and is electrically connected to the motor module. The track is used to receive a control instruction transmitted by the motor module and move, so as to drive the movement of the push-pull blackboard.

[0040] In one embodiment, the router and the control terminal are connected by wired communication.

[0041] In a third aspect, the present application further provides a detection device for the communication performance of an intelligent tablet, including:

[0042] A driving module, configured to control each push-pull blackboard in the blackboard module to move within its corresponding test time period one by one, so as to block the intelligent tablet in the light-emitting direction of the intelligent tablet; wherein, the blackboard module and the intelligent tablet are arranged in the same shielding space, the blackboard module includes a plurality of the push-pull blackboards, the plurality of push-pull blackboards are stacked along the light-emitting direction of the intelligent tablet, and at least two of the push-pull blackboards are made of different materials; the shielding space is used to shield wireless communication signals;

[0043] A data acquisition and processing module, configured to, within each test time period and when the intelligent tablet is completely blocked by the current push-pull blackboard, collect the test communication performance data of the intelligent tablet within the current test time period based on the router, so as to obtain the test communication performance data of the intelligent tablet when it is completely blocked by the push-pull blackboards made of different materials; wherein, the router and the intelligent tablet are located in the same shielding space, the router is respectively communicatively connected to the intelligent tablet and the control terminal, and the router communicates with the intelligent tablet by wireless communication, and the control terminal is electrically connected to the blackboard module;

[0044] Wherein, within the same test time period, one of the push-pull blackboards in the blackboard module blocks the intelligent tablet, and the remaining push-pull blackboards do not overlap with the intelligent tablet in the light-emitting direction of the intelligent tablet.

[0045] In a fourth aspect, the present application further provides a computer device, including a memory and a processor, the memory stores a computer program, and when the processor executes the computer program, the following steps are implemented:

[0046] Control each push-pull blackboard in the blackboard module to move within its corresponding test time period to block the intelligent tablet in the light-emitting direction of the intelligent tablet; wherein, the blackboard module and the intelligent tablet are arranged in the same shielding space, the blackboard module includes a plurality of the push-pull blackboards, the plurality of push-pull blackboards are stacked along the light-emitting direction of the intelligent tablet, and at least two of the push-pull blackboards are made of different materials; the shielding space is used to shield wireless communication signals;

[0047] In each of the test time periods, and when the intelligent tablet is completely blocked by the current push-pull blackboard, collect the test communication performance data of the intelligent tablet in the current test time period based on the router, so as to obtain the test communication performance data of the intelligent tablet when it is completely blocked by the push-pull blackboards made of different materials; wherein, the router and the intelligent tablet are located in the same shielding space, the router is respectively communicatively connected to the intelligent tablet and the control terminal, and the router communicates with the intelligent tablet wirelessly, and the control terminal is electrically connected to the blackboard module;

[0048] Wherein, within the same test time period, one of the push-pull blackboards in the blackboard module blocks the intelligent tablet, and the remaining push-pull blackboards do not overlap with the intelligent tablet in the light-emitting direction of the intelligent tablet.

[0049] In a fifth aspect, the present application further provides a computer-readable storage medium, on which a computer program is stored, and when the computer program is executed by a processor, the following steps are implemented:

[0050] Control each push-pull blackboard in the blackboard module to move within its corresponding test time period to block the intelligent tablet in the light-emitting direction of the intelligent tablet; wherein, the blackboard module and the intelligent tablet are arranged in the same shielding space, the blackboard module includes a plurality of the push-pull blackboards, the plurality of push-pull blackboards are stacked along the light-emitting direction of the intelligent tablet, and at least two of the push-pull blackboards are made of different materials; the shielding space is used to shield wireless communication signals;

[0051] In each of the test time periods, and when the intelligent tablet is completely blocked by the current push-pull blackboard, collect the test communication performance data of the intelligent tablet in the current test time period based on the router, so as to obtain the test communication performance data of the intelligent tablet when it is completely blocked by the push-pull blackboards made of different materials; wherein, the router and the intelligent tablet are located in the same shielding space, the router is respectively communicatively connected to the intelligent tablet and the control terminal, and the router communicates with the intelligent tablet wirelessly, and the control terminal is electrically connected to the blackboard module;

[0052] Among them, within the same test time period, one of the push-pull blackboards in the blackboard module blocks the intelligent tablet, and the remaining push-pull blackboards are arranged in the light-emitting direction of the intelligent tablet without overlapping with the intelligent tablet.

[0053] In a sixth aspect, the present application also provides a computer program product, including a computer program, which when executed by a processor implements the following steps:

[0054] Controlling each push-pull blackboard in the blackboard module to move within its corresponding test time period one by one to block the intelligent tablet in the light-emitting direction of the intelligent tablet; wherein, the blackboard module and the intelligent tablet are arranged in the same shielding space, the blackboard module includes a plurality of the push-pull blackboards, the plurality of push-pull blackboards are stacked along the light-emitting direction of the intelligent tablet, and at least two of the push-pull blackboards are made of different materials; the shielding space is used to shield wireless communication signals;

[0055] Within each test time period, and when the intelligent tablet is completely blocked by the current push-pull blackboard, collecting the test communication performance data of the intelligent tablet within the current test time period based on the router to obtain the test communication performance data of the intelligent tablet when it is completely blocked by the push-pull blackboards made of different materials; wherein, the router and the intelligent tablet are located in the same shielding space, the router is respectively communicatively connected with the intelligent tablet and the control terminal, and the router communicates with the intelligent tablet wirelessly, and the control terminal is electrically connected to the blackboard module;

[0056] Among them, within the same test time period, one of the push-pull blackboards in the blackboard module blocks the intelligent tablet, and the remaining push-pull blackboards are arranged in the light-emitting direction of the intelligent tablet without overlapping with the intelligent tablet.

[0057] The above-mentioned detection method, detection system, detection device, computer device, storage medium, and computer program product for the communication performance of an intelligent tablet control each push-pull blackboard through a control terminal to completely block the intelligent tablet during its corresponding test time period, so as to simulate the usage scenario where an ordinary blackboard blocks the intelligent tablet in a real teaching environment by driving a mechanical device through an electronic device. Based on the cooperation between the electronic device and the mechanical device, during each test time period and when the intelligent tablet is completely blocked by the current push-pull blackboard, the test communication performance data of the intelligent tablet during the current test time period is collected based on a router, and the test communication performance data of the intelligent tablet when it is completely blocked by push-pull blackboards of different materials is obtained, which is beneficial to improving the accuracy of the detection results of this detection. At the same time, based on the cooperation between the electronic device and the mechanical device, the acquisition efficiency of the test communication performance data of the intelligent tablet when it is completely blocked by push-pull blackboards of different materials is improved, which is beneficial to improving the detection efficiency of the communication performance of the intelligent tablet blocked by push-pull blackboards of different materials. In addition, the detection of the communication performance of the intelligent tablet blocked by push-pull blackboards of different materials is completed in a shielding space. The detection process is closer to the actual application scenarios of the two teaching devices, the intelligent tablet and the push-pull blackboard, and the influence of external signals on the communication performance of the intelligent tablet is avoided, which is beneficial to improving the accuracy of this detection. BRIEF DESCRIPTION OF THE DRAWINGS

[0058] In order to more clearly illustrate the technical solutions in the embodiments of the present application or in the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present application. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0059] Figure 1 Schematic diagram of a detection system for the communication performance of an intelligent tablet in an embodiment of the present application;

[0060] Figure 2 Schematic diagram of a detection system for the communication performance of an intelligent tablet in another embodiment of the present application;

[0061] Figure 3 Flowchart of a detection method for the communication performance of an intelligent tablet in an embodiment of the present application;

[0062] Figure 4 Flowchart of a detection method for the communication performance of an intelligent tablet in another embodiment of the present application;

[0063] Figure 5 Schematic diagram of a detection device for the communication performance of an intelligent tablet in an embodiment of the present application;

[0064] Figure 6Internal structure diagram of a computer device in an embodiment. Detailed implementation manners

[0065] To facilitate the understanding of the present invention, the present invention will be described more comprehensively below with reference to the relevant drawings. Preferred embodiments of the present invention are shown in the drawings. However, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, these embodiments are provided so that the understanding of the disclosure of the present invention is more thorough and comprehensive.

[0066] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which the present invention belongs. The terms used in the specification of this application are only for the purpose of describing specific embodiments and are not intended to limit this application.

[0067] It should also be understood that terms such as "include / comprise" or "have" etc. specify the presence of the stated features, wholes, steps, operations, components, parts or combinations thereof, but do not exclude the possibility of the presence or addition of one or more other features, wholes, steps, operations, components, parts or combinations thereof.

[0068] As in the background art, in the existing methods, the method of detecting the communication performance when the smart tablet is blocked by blocking the router or using an attenuator belongs to the method of controlling the signal source and cannot simulate the scenario of the smart tablet being used as a teaching device in an actual school; when detecting the influence of different materials of the push-pull blackboard on the WIFI performance of the blocked smart tablet, manually replacing the push-pull blackboard with different materials has a relatively low test efficiency.

[0069] Therefore, there is an urgent need to provide a method that can improve the detection efficiency of the influence of the push-pull blackboard with different materials on the WIFI performance of the smart interactive tablet when blocking the smart interactive tablet, and simulate the use scenario of the push-pull blackboard blocking the smart interactive tablet in reality during relevant detections.

[0070] Figure 1 For a schematic diagram of a detection system for the communication performance of a smart tablet in an embodiment of this application, please refer to Figure 1 , for the above reasons, the present invention first provides a detection system 100 for the communication performance of a smart tablet, including a smart tablet 11, a blackboard module 12 and a router 13 disposed in the same shielding space 10, and further including a control terminal 14; the shielding space 10 is used to shield wireless communication signals; wherein:

[0071] The blackboard module 12 includes a plurality of push-pull blackboards, the plurality of push-pull blackboards are stacked along the light-emitting direction of the smart tablet 11, and at least two of the push-pull blackboards have different materials;

[0072] The router 13 is communicatively connected to the smart tablet 11 and the control terminal 14 respectively, and the router 13 is wirelessly communicatively connected to the smart tablet 11;

[0073] The control terminal 14 is also electrically connected to the blackboard module 12;

[0074] The control terminal 14 is used to control each push-pull blackboard to move within its corresponding test time period one by one, so as to block the smart tablet 11 in the light-emitting direction of the smart tablet 11;

[0075] The control terminal 14 is further used to, within each test time period and when the smart tablet 11 is completely blocked by the current push-pull blackboard, collect the test communication performance data of the smart tablet 11 within the current test time period based on the router 13, so as to obtain the test communication performance data of the smart tablet 11 when it is completely blocked by push-pull blackboards of different materials;

[0076] Wherein, within the same test time period, one push-pull blackboard in the blackboard module 12 blocks the smart tablet 11, and the remaining push-pull blackboards are arranged along the light-emitting direction of the smart tablet 11 and do not overlap with the smart tablet 11.

[0077] Specifically, the present application provides a detection system 100 for the communication performance of a smart tablet. The system 100 includes a shielding space 10, which is used to shield wireless communication signals, that is, to avoid interference of external (wireless) communication signals with the (wireless) communication signals inside the shielding space 10, and can also prevent the communication signals inside the shielding space 10 from being used by communication devices outside the shielding space 10, so as to ensure the stability of the communication signals inside the shielding space 10 and provide a stable test environment for the detection of the communication performance when the smart tablet 11 is blocked.

[0078] The detection system 100 provided by the present application further includes a smart tablet 11, a blackboard module 12 and a router 13 arranged inside the same shielding space 10. Among them, the smart tablet 11 is the smart display device used in the current teaching environment and can be installed on the side of a common blackboard away from the writing surface of the blackboard; the blackboard module 12 includes several common blackboards (push-pull blackboards) of different materials used in the current teaching environment; the router 13 is used to provide network signals for the smart tablet 11 to realize the networking function of the smart tablet 11. The system 100 further includes a control terminal 14, which communicates with the smart tablet 11 through the network. The control terminal 14 can be but is not limited to various personal computers, laptop computers, smart phones, tablet computers, etc.

[0079] For the blackboard module 12 set in the system 100, it may include a plurality of push-pull blackboards. Along the light-emitting direction of the smart tablet 11, the plurality of push-pull blackboards may be arranged in a stacked manner. Each push-pull blackboard in the blackboard module 12 can be made of different materials. That is, the blackboard module 12 includes a plurality of push-pull blackboards made of different materials and arranged in a stacked manner.

[0080] In the shielding space 10, the router 13 is communicatively connected to the smart tablet 11 and simultaneously communicatively connected to the control terminal 14. That is, the router 13 is not only used to implement the networking function of the smart tablet 11, but also can implement the networking communication function of the control terminal 14. Among them, the communication connection between the router 13 and the smart tablet 11 can specifically be selected to be a wireless communication connection. Such a setting is more in line with the specific networking method of the smart tablet 11 in the teaching environment, which is beneficial to improving the accuracy of the test communication performance data when the smart tablet 11 obtained later is completely blocked by push-pull blackboards of different materials. The control terminal 14 is also electrically connected to the blackboard module 12 and can be used to control the movement of the push-pull blackboards included in the blackboard module 12, so as to control a specific push-pull blackboard to move to a specific position when needed, so as to achieve the shielding of the smart tablet 11 by the specific push-pull blackboard in the light-emitting direction of the smart tablet 11.

[0081] It should be added that the present application does not specifically limit the number of push-pull blackboards included in the blackboard module 12. At the same time, the present application does not specifically limit the physical factors such as the size, shape, selection of production materials, and thickness of each push-pull blackboard included in the blackboard module 12. For example, according to the actual application environment and the market environment of ordinary blackboards, the size, shape, production materials, thickness, etc. of the ordinary blackboards included in the blackboard module 12 can be selected, aiming to simulate the actual application environment of the smart tablet 11 as much as possible. In addition, it can also be selected that each push-pull blackboard included in the blackboard module 12 has the same size, thickness, and shape, only the production materials are different. It should also be added that the present application does not specifically limit whether the push-pull blackboard includes a hollow portion penetrating it along the light-emitting direction of the smart tablet 11, nor does it limit the size, shape, and distribution of the hollow portion.

[0082] In the detection system 100 for the communication performance of the intelligent tablet provided in this application, based on the intelligent tablet 11, the blackboard module 12, the router 13, and the control terminal 14 arranged in the same shielding space 10, the connection of these components is achieved through the electrical connection and communication connection methods described above. Then, the control terminal 14 can be operated, and through the instructions issued by the control terminal 14, the push-pull blackboards in the blackboard module 12 can be moved one by one, so that each push-pull blackboard can move within its corresponding test time period, so that the push-pull blackboard can block the intelligent tablet 11 to be tested for communication performance during its corresponding test time period. Specifically, along the light-emitting direction of the intelligent tablet 11, the push-pull blackboard completely covers the intelligent tablet 11. At this time, the router 13 communicating with the intelligent tablet 11 is located on the side of the push-pull blackboard away from the intelligent tablet 11; furthermore, through the control terminal 14 within each test time period, and when the intelligent tablet 11 is completely blocked by the push-pull blackboard that moves correspondingly during the test time period, the test communication performance data of the intelligent tablet 11 communicating with the router 13 in the current test time period is collected based on the router 13; within different detection time periods, along the light-emitting direction of the intelligent tablet 11, the push-pull blackboards of different materials are moved to completely block the intelligent tablet 11 through the instructions issued by the control terminal 14, so as to obtain the test communication performance data when the intelligent tablet 11 is completely blocked by the push-pull blackboards of different materials. Among the test communication performance data when the intelligent tablet 11 is completely blocked by the push-pull blackboards of different materials, at least some of the test communication performance data of the intelligent tablet 11 blocked by the push-pull blackboards of different materials will be different, so that the influence of the push-pull blackboards of different materials on the communication performance of the intelligent tablet 11 blocked by them can be obtained. Based on this, among the multiple push-pull blackboards, it can be selected which one or which several materials of the push-pull blackboards have less influence on the communication performance of the intelligent tablet 11. The push-pull blackboards made of materials with less influence on the communication performance of the intelligent tablet 11 are more suitable for use in the actual teaching environment, which is beneficial to improving the loading speed of some teaching data of the intelligent tablet 11 when blocked by the push-pull blackboard, thereby avoiding the impact on classroom efficiency due to poor communication performance and improving the use experience and teaching efficiency of intelligent teaching equipment.

[0083] It should be noted that the test communication performance data obtained here in this application is the communication performance data of the communication module in the intelligent tablet 11 to be detected. The specific content included in the test communication performance data is not limited in this application, and the specific information in the obtained test communication performance data can be limited according to requirements.

[0084] It should be added that in the blackboard module 12 including multiple push-pull blackboards, only one push-pull blackboard will block the smart tablet 11 to be detected within the same test time period, and the other push-pull blackboards in the blackboard module 12 will not block the smart tablet 11 to be detected. That is, the remaining push-pull blackboards are along the light-emitting direction of the smart tablet 11 and do not overlap with the smart tablet 11.

[0085] Through the instructions issued by the control terminal 14, within different detection time periods, move the push-pull blackboards of different materials to completely block the smart tablet 11, so as to obtain the test communication performance data of the communication between the smart tablet 11 and the router 13 when the smart tablet 11 is completely blocked by the push-pull blackboards of different materials; it realizes the automatic detection of the communication performance of the smart tablet 11 blocked by the push-pull blackboards of different materials, which is beneficial to improving the efficiency of communication performance detection, without the need for manual movement of the push-pull blackboards of different materials one by one, reducing the labor cost and time cost; and this application completes the detection of the communication performance of the smart tablet 11 blocked by the push-pull blackboards of different materials within a shielding space 10. The detection process is closer to the actual application scenarios of the two teaching devices, the smart tablet 11 and the push-pull blackboard, and avoids the influence of external signals on the communication performance of the smart tablet 11, which is beneficial to improving the accuracy of the detection.

[0086] For the above-mentioned detection system 100 of the smart tablet communication performance, within the same shielding space 10, the control terminal 14 controls each push-pull blackboard to completely block the smart tablet 11 within its corresponding test time period, so as to simulate the usage scenario of the ordinary blackboard blocking the smart tablet 11 in the real teaching environment through the drive of the electronic device for the mechanical device, and based on the cooperation of the electronic device and the mechanical device, collect the test communication performance data of the smart tablet 11 when it is completely blocked by the current push-pull blackboard within each test time period, and obtain the test communication performance data of the smart tablet 11 when it is completely blocked by the push-pull blackboards of different materials, which is beneficial to improving the accuracy of the detection result of the detection; at the same time, based on the cooperation of the electronic device and the mechanical device, the acquisition efficiency of the test communication performance data of the smart tablet 11 when it is completely blocked by the push-pull blackboards of different materials is improved, which is beneficial to improving the detection efficiency of the communication performance of the smart tablet 11 blocked by the push-pull blackboards of different materials.

[0087] Figure 2 For the schematic diagram of the detection system of the smart tablet communication performance in another embodiment of this application, please refer to Figure 2 , in an exemplary embodiment, the system 100 further includes a switch 15 and a motor module 16. The switch 15 and the motor module 16 are located in the same shielding space 10 as the smart tablet 11;

[0088] The switch 15 is electrically connected to the control terminal 14 and the motor module 16 respectively, and is also electrically connected to the router 13; the other end of the motor module 16 is electrically connected to the blackboard module 12;

[0089] Among them, the switch 15 is used to receive the control instructions sent by the control terminal 14 and transmit the control instructions to the motor module 16. The motor module 16 drives the movement of the push-pull blackboard based on the received control instructions; moreover, the switch 15 is also used to realize the network communication between the router 13 and the control terminal 14.

[0090] Specifically, the present application also provides an alternative implementation mode. In the detection system 100 for the communication performance of the intelligent tablet, in addition to the above-mentioned blackboard module 12, intelligent tablet 11, router 13, and control terminal 14, a switch 15 and a motor module 16 can be further provided. The switch 15 and the motor module 16 and the intelligent tablet 11 to be detected are located in the same shielding space 10. Among them, the switch 15 can be electrically connected to the control terminal 14 and the motor module 16 respectively, and the switch 15 can be further electrically connected to the router 13, and the other end of the motor module 16 is electrically connected to the blackboard module 12.

[0091] The switch 15 can be used to receive the control instructions sent by the control terminal 14 and further transmit the received control instructions to the motor module 16. The motor module 16 can drive the movement of the corresponding push-pull blackboard based on the received control instructions; for example, if the control instruction issued by the control terminal 14 is to drive the push-pull blackboard numbered 1 and made of material category 1 to move, then after the control instruction passes through the switch 15 to the motor module 16, the motor module 16 can control the push-pull blackboard numbered 1 and made of material category 1 in the blackboard module 12 to move.

[0092] Through the system 100 provided by the present application, in the detection of the influence of push-pull blackboards of different materials on the communication performance of the intelligent tablet 11, there is no need to manually move the push-pull blackboards of different materials one by one, which reduces the labor cost and time cost, and is beneficial to improving the detection efficiency of the influence of push-pull blackboards of different materials on the communication performance of the intelligent tablet 11.

[0093] Since the switch 15 is electrically connected to both the router 13 and the control terminal 14, the switch 15 can exist as an intermediate component for the communication connection between the router 13 and the control terminal 14. The setting of the switch 15 facilitates further electrical connection to other devices when necessary, and is convenient for the maintenance and update of the detection system 100 for the communication performance of the intelligent tablet.

[0094] It should also be added that when the switch 15 is provided in the system 100, the control terminal 14 and the router 13 are respectively electrically connected to the switch 15. If the switch 15 is not provided in the system 100, the control terminal 14 and the router 13 can also be directly electrically connected. The present application does not make specific limitations on this.

[0095] In addition, when the switch 15 is provided in the shielding space 10 of the smart tablet 11 in the system 100, the present application does not make specific limitations on whether the control terminal 14 is provided inside the same shielding space 10. For example, the control terminal 14 can be selected to be located inside the shielding space 10, which is convenient for the integrated construction of the smart tablet communication performance detection system 100 provided by the present application, and can also reduce the setting length of the wiring required in the system 100 and reduce the construction cost of the system 100. In addition, the control terminal 14 can also be selected to be provided outside the shielding space 10 where the smart tablet 11 to be tested is placed, which is convenient for the staff to perform real-time operations on the control terminal 14, and can reduce the required size of the shielding space 10 to a certain extent. In this way, the manufacturing cost of the system 100 can also be reduced to a certain extent, and the operability of the system 100 can be improved.

[0096] Please continue to refer to Figure 2 , in an exemplary embodiment, the blackboard module 12 further includes a track 17;

[0097] The track 17 clamps the push-pull blackboard and is electrically connected to the motor module 16. The track 17 is used to receive the control instruction transmitted by the motor module 16 and move, so as to drive the movement of the push-pull blackboard.

[0098] Specifically, the present application also provides an alternative implementation manner. In addition to the multiple push-pull blackboards stacked in the blackboard module 12, the blackboard module 12 may further include a track 17 that clamps the push-pull blackboard. The track 17 can be electrically connected to the motor module 16 and is used to receive the control instruction transmitted by the motor module 16, so as to drive the movement of the push-pull blackboard clamped by the track 17 through the movement of the track 17.

[0099] Through the system 100 provided by the present application, in the detection of the influence of push-pull blackboards of different materials on the communication performance of the smart tablet 11, the instruction issued by the control terminal 14 is transmitted to the track 17, and the track 17 drives the movement of the push-pull blackboard, eliminating the need for manual movement of the push-pull blackboards of different materials one by one, reducing the labor cost and time cost, and being beneficial to improving the detection efficiency of the influence of push-pull blackboards of different materials on the communication performance of the smart tablet 11.

[0100] It should be added that for the track 17 for clamping and pushing the blackboard in the blackboard module 12, the present application provides two alternative implementation manners. One is that the instruction issued by the control terminal 14 is used to drive the movement of the track 17, thereby driving the movement of the push-pull blackboard clamped by it; the other is that the instruction issued by the control terminal 14 is used to drive the push-pull blackboard to move in the track 17 that clamps it; that is, it can be selectively set that the track 17 in the system 100 is electrically connected to the motor module 16, or it can be selectively set that the push-pull blackboard in the system 100 is electrically connected to the motor module 16; the present application does not make specific limitations on this, and the setting in the system 100 can be selected according to requirements, as long as the instruction issued by the control terminal 14 can be realized to drive the push-pull blackboard, and then the movement of the position of the push-pull blackboard can be realized.

[0101] It should also be added that in the motor module 16 provided by the present application, it may specifically include a host computer and a motor.

[0102] Please refer to Figure 1 or Figure 2 , in an exemplary embodiment, the router 13 and the control terminal 14 are connected by a wired communication connection.

[0103] Specifically, another alternative implementation manner provided by the present application is that the router 13 in the system 100 and the smart tablet 11 are wirelessly connected to achieve wireless communication connection therebetween, and the router 13 and the control terminal 14 in the system 100 are connected by a wired connection to achieve wired communication connection therebetween. Since the smart tablet communication performance detection system 100 provided by the present application is used to detect the communication performance of the wireless communication between the smart tablet 11 blocked by the push-pull blackboard and the router 13, setting the router 13 and the control terminal 14 to be connected by a wired communication connection instead of a wireless connection can avoid the existence of wireless communication signals between the router 13 and the control terminal 14 from interfering with the communication signals between the smart tablet 11 and the router 13 detected by the present application; therefore, such a setting is beneficial to improving the detection result of the communication performance of the wireless communication between the smart tablet 11 blocked by the push-pull blackboard and the router 13 detected by the present application.

[0104] Figure 3 For a flowchart of the method for detecting the communication performance of the smart tablet in an embodiment of the present application, please combine Figure 1 、 Figure 2 Refer to Figure 3 , in the present application, as provided Figure 1 、 Figure 2Based on the detection system of the communication performance of the intelligent tablet shown, based on the same inventive concept, the present application also provides a method for detecting the communication performance of the intelligent tablet. In this embodiment, taking the method applied to the control terminal 14 in the detection system 100 of the communication performance of the intelligent tablet as an example, in this embodiment, the method may include the following steps 101 and 102, where:

[0105] Step 101, control each push-pull blackboard in the blackboard module 12 to move one by one within its corresponding test time period to block the intelligent tablet 11 in the light-emitting direction of the intelligent tablet 11; wherein, the blackboard module 12 and the intelligent tablet 11 are arranged in the same shielding space 10, and the blackboard module 12 includes a plurality of push-pull blackboards; the plurality of push-pull blackboards are stacked along the light-emitting direction of the intelligent tablet 11, and at least two push-pull blackboards are made of different materials; the shielding space 10 is used to shield wireless communication signals;

[0106] Step 102, within each test time period, and when the intelligent tablet 11 is completely blocked by the current push-pull blackboard, collect the test communication performance data of the intelligent tablet 11 within the current test time period based on the router 13 to obtain the test communication performance data when the intelligent tablet 11 is completely blocked by push-pull blackboards made of different materials; wherein, the router 13 and the intelligent tablet 11 are located in the same shielding space 10, the router 13 is respectively communicatively connected to the intelligent tablet 11 and the control terminal 14, and the router 13 communicates with the intelligent tablet 11 wirelessly, and the control terminal 14 is electrically connected to the blackboard module 12;

[0107] Wherein, within the same test time period, one push-pull blackboard in the blackboard module 12 blocks the intelligent tablet 11, and the remaining push-pull blackboards do not overlap with the intelligent tablet 11 in the light-emitting direction of the intelligent tablet.

[0108] Specifically, by executing step 101, the individual movement of each push-pull blackboard in the blackboard module 12 is realized, so that each push-pull blackboard can move within its own corresponding test time period, so that the push-pull blackboard can block the intelligent tablet 11 to be tested for communication performance within its corresponding test time period. Specifically, along the light-emitting direction of the intelligent tablet 11, a push-pull blackboard of a certain material is controlled to completely cover the intelligent tablet 11. At this time, the router 13 communicating with the intelligent tablet 11 is located on the side of the push-pull blackboard away from the intelligent tablet 11; then step 102 is executed. Within each test time period, and when the intelligent tablet 11 is completely blocked by the push-pull blackboard within the current test time period, the test communication performance data of the intelligent tablet 11 communicating with the router 13 within the current test time period is collected based on the router 13; that is, within different detection time periods, the push-pull blackboards of different materials are moved by the instruction issued by the control terminal 14 to completely block the intelligent tablet 11, so as to obtain the test communication performance data when the intelligent tablet 11 is completely blocked by the push-pull blackboards of different materials. Among the test communication performance data when the intelligent tablet 11 is completely blocked by the push-pull blackboards of different materials, at least some of the test communication performance data of the intelligent tablet 11 blocked by the push-pull blackboards of different materials will be different, so that the influence of the push-pull blackboards of different materials on the communication performance of the intelligent tablet 11 blocked by them can be obtained. Based on this, among the various push-pull blackboards, it can be selected which one or which several materials of the push-pull blackboards have less influence on the communication performance of the intelligent tablet 11. The push-pull blackboard made of the material with less influence on the communication performance of the intelligent tablet 11 is more suitable for use in the actual teaching environment, which is beneficial to improving the loading speed of some teaching data of the intelligent tablet 11 when it is blocked by the push-pull blackboard, thereby avoiding the impact on the classroom efficiency due to poor communication performance and improving the use experience and teaching efficiency of intelligent teaching equipment.

[0109] It should be noted that the test communication performance data obtained here in this application is the communication performance data of the communication module in the intelligent tablet 11 to be detected. Regarding the specific content included in the test communication performance data, this application does not make any limitations, and the information in the obtained test communication performance data can be limited according to requirements.

[0110] Execute steps 101 and 102 according to the instructions sent by the control terminal 14. During different detection time periods, move the push-pull blackboards of different materials to completely block the smart tablet 11, so as to obtain the test communication performance data of the communication between the smart tablet 11 and the router 13 when the smart tablet 11 is completely blocked by the push-pull blackboards of different materials. It realizes the automatic detection of the communication performance of the smart tablet 11 blocked by the push-pull blackboards of different materials, which is beneficial to improving the efficiency of communication performance detection. There is no need to manually move the push-pull blackboards of different materials again and again, reducing the labor cost and time cost. Moreover, this application completes the detection of the communication performance of the smart tablet 11 blocked by the push-pull blackboards of different materials in a shielding space 10. The detection process is closer to the actual application scenarios of the two teaching devices, namely the smart tablet 11 and the push-pull blackboard, and avoids the influence of external signals on the communication performance of the smart tablet 11, which is beneficial to improving the accuracy of this detection.

[0111] It should be emphasized that the blackboard module 12 includes multiple push-pull blackboards. Along the light-emitting direction of the smart tablet 11, the multiple push-pull blackboards can be arranged in a stacked manner. Each push-pull blackboard in the blackboard module 12 can be made of different materials. That is to say, the blackboard module 12 includes multiple push-pull blackboards of different materials arranged in a stacked manner. The communication connection between the router 13 and the smart tablet 11 can specifically be selected to adopt a wireless communication connection. Such a setting is more in line with the specific networking method of the smart tablet 11 in the teaching environment, which is beneficial to improving the accuracy of the subsequent test communication performance data when the smart tablet 11 is completely blocked by the push-pull blackboards of different materials.

[0112] In addition, it should be supplemented that regarding the specific setting details of the blackboard module 12 and the electrical connection relationship among the smart tablet 11, the router 13, the blackboard module 12, and the control terminal 14, reference can be made to Figure 1 、 Figure 2 and the above description regarding Figure 1 、 Figure 2 . This application will not elaborate here.

[0113] Furthermore, in the subsequent description of the method for detecting the communication performance of the smart tablet, regarding the specific structure included in the detection system 100 of the communication performance of the smart tablet, reference can also be made to the above description regarding Figure 1 、 Figure 2 . This application will not elaborate.

[0114] Figure 4 The following is a flowchart of the method for detecting the communication performance of the smart tablet in another embodiment of this application. Please refer to it in combination with Figure 1 、 Figure 2 and refer to Figure 4In an exemplary embodiment, before executing the above step 101 to control each push-pull blackboard in the blackboard module 12 to move within its corresponding test time period, the method further includes step 103:

[0115] Step 103 , when the smart tablet 11 is pushed or pulled along the light emitting direction without any obstruction by the blackboard, the router 13 collects the benchmark communication performance data of the smart tablet 11 .

[0116] Specifically, step 103 is executed to collect performance data of the smart tablet 11 when it is not blocked by the sliding blackboard, such as collecting baseline communication performance data of the smart tablet 11 when it is not blocked by the sliding blackboard. The baseline communication performance data is a better communication effect between the smart tablet 11 and the corresponding router 13. Since the smart tablet 11 and the router 13 are both located in the same shielded space 10, it can also be said that the communication effect between the smart tablet 11 and the corresponding router 13 is collected without any external interference. The baseline communication performance data can be used as a reference value, as a reference group data of the test communication performance data of the smart tablet 11 when it is blocked by the sliding blackboard of various materials along its light-emitting direction, to confirm the influence of the sliding blackboard of various materials on the communication performance of the smart tablet 11 under its blocking.

[0117] Please continue to refer to Figure 1 、 Figure 2 and Figure 4 In an exemplary embodiment, after executing step 102 to obtain the test communication performance data when the smart tablet 11 is completely blocked by a sliding blackboard of different materials, step 104 (not shown) is further included:

[0118] Step 104 : Based on the collected multiple test communication performance data and benchmark communication performance data, determine the wireless communication performance test result when the smart tablet 11 is completely blocked by the sliding blackboard of different materials.

[0119] Specifically, step 104 is executed after steps 103, 101, and 102. By executing step 104, based on the measured communication performance data of the smart tablet 11 blocked by each push-pull blackboard and the reference communication performance data, the wireless communication performance detection results when the smart tablet 11 is completely blocked by push-pull blackboards of different materials are determined, so as to realize the influence of push-pull blackboards of various materials on the communication performance of the smart tablet 11 blocked by them. This enables the user to figure out which one or which several materials of push-pull blackboards have less impact on the communication performance of the smart tablet 11, so that the user can know the manufacturing materials of the push-pull blackboards that are more suitable for being used in combination with the smart tablet 11 in the teaching environment, avoiding the situation where the communication performance of the smart tablet 11 is poor due to the presence of the push-pull blackboard, and improving the teaching efficiency and user experience of intelligent teaching equipment.

[0120] Please continue to refer to Figure 1 、 Figure 2 and Figure 4 , in an exemplary embodiment, after performing the above step 103 to collect the reference communication performance data of the smart tablet 11 based on the router 13, step 105 is further included. This step 105 can be specifically executed after steps 103, 101, and 102 are completed, where:

[0121] Step 105: Based on the collected multiple test communication performance data and reference communication performance data, calculate the proportion of each sub-test performance data in each test communication performance data in the corresponding sub-reference data in the reference communication performance data.

[0122] Specifically, the present application also provides an alternative implementation. Since the communication performance data will not only include one type of communication performance-related data information, therefore, based on the reference communication performance data of the smart tablet 11 when it is not blocked by the push-pull blackboard collected by the router 13, and the test communication performance data when the smart tablet 11 is completely blocked by push-pull blackboards of different materials, step 105 is executed. Based on the obtained data, calculate the proportion of the multiple sub-test performance data included in each test communication performance data in the corresponding sub-reference data in the corresponding reference communication performance data, so as to obtain the influence of push-pull blackboards of various materials on each sub-performance data included in the communication performance of the smart tablet 11. This is beneficial for the user to weigh the advantages and disadvantages of the influence of push-pull blackboards of various materials on each sub-performance data of the communication performance of the smart tablet 11, realize a more detailed consideration of the influence of push-pull blackboards of various materials on the communication performance of the smart tablet 11, and is beneficial for selecting a push-pull blackboard that is more suitable for being used in combination with the smart tablet 11, thereby ensuring that the smart tablet 11 has a better communication effect when used in the teaching environment and improving the teaching efficiency and user experience of intelligent teaching equipment.

[0123] Please continue to refer to Figure 1 、 Figure 2 and Figure 4 In an exemplary embodiment, after executing step 102 to obtain the test communication performance data when the smart tablet 11 is completely blocked by a sliding blackboard of different materials, steps 106 and 107 are further included. Steps 106 and 107 can be specifically performed after step 105, wherein:

[0124] Step 106 , determining a sub-score corresponding to the proportion of each sub-test performance data to the corresponding sub-benchmark data based on a preset score table;

[0125] Step 107 , accumulating each sub-score to obtain a total score of the test communication performance data; and determining the rating level of the push-pull blackboard corresponding to the total score based on a preset rating table.

[0126] Specifically, since the types of information included in the communication performance data are diverse, if the user manually analyzes multiple pieces of information separately, the efficiency is relatively low, and it is easy to overlook certain information data, making it difficult to ensure the accuracy of the analysis of the impact of various materials of the sliding blackboard on the communication performance of the smart tablet 11. Therefore, the present application also provides an optional implementation method of providing a preset score table, which includes the proportion of each sub-test performance data in the corresponding sub-benchmark data and the sub-score corresponding to each proportion; executing step 106, based on the preset score table, the proportion of each sub-test performance data in the corresponding sub-benchmark data calculated in step 105 is used to determine the sub-score corresponding to the proportion of a sub-test performance data in the corresponding sub-benchmark data.

[0127] It should be added that the higher the sub-score in the preset score table, the better the communication performance of the smart tablet 11. For example, a sub-score of 10 points means that the smart tablet 11 can meet the smooth playback of 4K videos, a sub-score of 9 points means that the smart tablet 11 can meet the smooth playback of 2K videos, a sub-score of 8 points means that the smart tablet 11 can meet the smooth playback of 720P videos, a sub-score of 7 points means that the smart tablet 11 can meet the smooth playback of 540P videos, and a sub-score of less than 7 points means that the smart tablet 11 will have a lag problem during video playback.

[0128] Then, after step 106 is completed, step 107 is executed to accumulate the sub-scores in the detection results corresponding to the push-pull blackboards of each material to obtain the total score of the test communication performance data of the smart tablet 11 blocked by the push-pull blackboards of each material; in this way, the push-pull blackboards of each material corresponding to the smart tablet 11 blocked by it have only one total score corresponding to the test communication performance data. Compared with multiple sub-scores, the data is more intuitive, and the rating level of the push-pull blackboards corresponding to each total score can be determined based on a preset rating table. Each rating level is used to reflect the impact of the push-pull blackboards of each material on the communication performance of the smart tablet 11. For example, the higher the rating level of the push-pull blackboard, the smaller the impact of the push-pull blackboard on the communication performance of the smart tablet 11 blocked by it.

[0129] By obtaining the rating levels of sliding blackboards made of various materials, users can easily select a sliding blackboard that is more suitable for pairing with the smart tablet 11, thereby improving the efficiency of selecting sliding blackboards; in a teaching environment that includes a smart tablet 11, using a sliding blackboard that has less impact on the communication performance of the smart tablet 11 is beneficial to avoiding the impact of poor communication performance of the smart tablet 11 on classroom efficiency, and thus is beneficial to improving the user experience and teaching efficiency of smart teaching equipment.

[0130] Please continue to refer to Figure 1 、 Figure 2 and Figure 4 In an exemplary embodiment, the step 105 of calculating the proportion of each sub-test performance data in each test communication performance data to the corresponding sub-benchmark data in the benchmark communication performance data specifically includes at least one of the following:

[0131] Step 1051, calculating the ratio of the signal throughput in each sub-test performance data in each test communication performance data to the signal throughput in the corresponding sub-benchmark data in the benchmark communication performance data;

[0132] Step 1052, calculating the ratio of the signal strength of each sub-test performance data in each test communication performance data to the signal strength of the corresponding sub-benchmark data in the benchmark communication performance data;

[0133] Step 1053, calculating the ratio of the number of packet losses in each sub-test performance data in each test communication performance data to the number of packet losses in the corresponding sub-benchmark data in the benchmark communication performance data;

[0134] Step 1054 , calculating the ratio of the delay time in each sub-test performance data in each test communication performance data to the delay time in the corresponding sub-benchmark data in the benchmark communication performance data.

[0135] Specifically, the communication performance data may include, for example, signal throughput, signal strength, packet loss number, and delay time. Based on this, an alternative implementation provided by this application is that, among the test communication performance data obtained by the control terminal 14 when the smart tablet 11 is completely blocked by push-pull blackboards of different materials, it includes sub-test performance data regarding signal throughput, signal strength, packet loss number, and delay time. Among the reference communication performance data obtained by the control terminal 14 when the smart tablet 11 is not blocked by the push-pull blackboard at all, it includes sub-reference performance data regarding signal throughput, signal strength, packet loss number, and delay time. After the control terminal 14 obtains the test communication performance data when the smart tablet 11 is completely blocked by push-pull blackboards of different materials and the reference communication performance data when the smart tablet 11 is not blocked by the push-pull blackboard at all by executing step 103 to step 102, it further executes step 1051 to step 1054 to calculate the ratio of the signal throughput in each sub-test performance data in each test communication performance data to the signal throughput in the corresponding sub-reference data in the reference communication performance data, and calculate the ratio of the signal strength in each sub-test performance data in each test communication performance data to the signal strength in the corresponding sub-reference data in the reference communication performance data, and calculate the ratio of the packet loss number in each sub-test performance data in each test communication performance data to the packet loss number in the corresponding sub-reference data in the reference communication performance data, and calculate the ratio of the delay time in each sub-test performance data in each test communication performance data to the delay time in the corresponding sub-reference data in the reference communication performance data. Based on the calculation of these four data, namely signal throughput, signal strength, packet loss number, and delay time, and the ratios of the corresponding sub-reference data of the smart tablet 11 under the occlusion of push-pull blackboards of each material to the sub-reference performance data of the smart tablet 11 when the push-pull blackboard is not blocked at all, it is possible to obtain the influence of push-pull blackboards of each material on the signal throughput in the communication performance of the smart tablet 11, obtain the influence of push-pull blackboards of each material on the signal strength in the communication performance of the smart tablet 11, obtain the packet loss number in the communication performance of the smart tablet 11 by push-pull blackboards of each material, and obtain the influence of push-pull blackboards of each material on the delay time in the communication performance of the smart tablet 11. This is beneficial for users to weigh the pros and cons of the influence of push-pull blackboards of each material on each sub-performance data of the communication performance of the smart tablet 11, realize a more detailed consideration of the influence of push-pull blackboards of each material on the communication performance of the smart tablet 11, is beneficial for selecting a push-pull blackboard that is more suitable for use in conjunction with the smart tablet 11, so as to ensure that the smart tablet 11 has a better communication effect when used in a teaching environment, and improve the teaching efficiency and usage experience of intelligent teaching equipment.

[0136] Please continue to refer to Figure 1 、 Figure 2 and Figure 4, in an exemplary embodiment, after determining the rating level of the push-pull blackboard corresponding to the total score in step 107 above, step 108 is further included, where:

[0137] Step 108, output a detection report; wherein, the detection report includes the signal throughput, signal strength, packet loss number, delay time, and total score corresponding to the intelligent tablet 11 when it is completely blocked by push-pull blackboards of different materials, as well as the numbers and rating levels of each push-pull blackboard.

[0138] Specifically, the present application also provides an alternative implementation manner. After performing steps 103 to 107, the following data is already stored in the control terminal 14, that is, the sub-reference data corresponding to the intelligent tablet 11 blocked by push-pull blackboards of each material, the sub-reference performance data corresponding to the intelligent tablet 11 with zero blockage by the push-pull blackboard, as well as the sub-test performance data in each test communication performance data calculated based on these data, the proportion of the corresponding sub-reference data in the reference communication performance data, the sub-score corresponding to the proportion of each sub-test performance data in the corresponding sub-reference data, the total score of the communication performance of the intelligent tablet 11 obtained by accumulating the calculated sub-scores when the intelligent tablet 11 is blocked by push-pull blackboards of each material, and the rating levels of push-pull blackboards of each material; then, step 108 can be executed to output a detection report based on these data. Some required data can be displayed in the detection report according to requirements. For example, it can be selected that the detection report includes the signal throughput, signal strength, packet loss number, and delay time corresponding to the intelligent tablet 11 when it is completely blocked by push-pull blackboards of different materials, as well as the total score of the communication performance of the intelligent tablet 11 obtained by accumulating the calculated sub-scores when the intelligent tablet 11 is blocked by push-pull blackboards of each material, and the numbers of push-pull blackboards of each material and their corresponding rating levels.

[0139] Furthermore, the detection report may further include suggestions obtained based on the analysis of the obtained data. For example, in combination with the total score and rating level in the above data, it is recommended that the user use a certain corresponding material to make the push-pull blackboard, or, in the case that the user selects a push-pull blackboard made of a material with a lower rating level, it is recommended to rectify the intelligent tablet 11, and it is recommended to optimize one or more of the signal throughput, signal strength, packet loss number, and delay time for the communication module of the intelligent tablet 11.

[0140] It should be added that the present application does not limit the specific content displayed in the detection report. The data content displayed in the detection report can be selected according to requirements, and whether to display some suggestion content based on data analysis in the detection report can also be displayed according to requirements, etc.

[0141] Please continue to refer to Figure 1 、Figure 2 and Figure 4 In an exemplary embodiment, for step 101 executed above, each push-pull blackboard in the blackboard module 12 is controlled to move during its corresponding test time period, and specifically, it can be executed as step 1011, where:

[0142] Step 1011: Control each push-pull blackboard in the blackboard module 12 to move during its corresponding test time period via the switch 15 and the motor module 16; wherein, the switch and the motor module are located in the same shielding space as the intelligent tablet.

[0143] Specifically, the present application also provides an alternative implementation manner. In the detection system 100 for the communication performance of the intelligent tablet, in addition to the blackboard module 12, the intelligent tablet 11, the router 13, and the control terminal 14, a switch 15 and a motor module 16 may further be provided. The switch 15, the motor module 16, and the intelligent tablet 11 to be detected are located in the same shielding space 10. Among them, the switch 15 can be electrically connected to the control terminal 14 and the motor module 16 respectively, the switch 15 can further be electrically connected to the router 13, and the other end of the motor module 16 is electrically connected to the blackboard module 12.

[0144] Based on this, the electrical signal for controlling each push-pull blackboard in the blackboard module 12 to move in step 101 can be transmitted to the blackboard module 12 after passing through the switch 15 and the motor module 16 in sequence to drive the push-pull blackboard; specifically, the switch 15 further transmits the control instruction sent by the control terminal 14 to the motor module 16, and the motor module 16 can drive the corresponding push-pull blackboard to move based on the received control instruction.

[0145] In the detection of the influence of push-pull blackboards of different materials on the communication performance of the intelligent tablet 11, there is no need for manual movement of push-pull blackboards of different materials one by one, which reduces the labor cost and time cost, and is beneficial to improving the detection efficiency of the influence of push-pull blackboards of different materials on the communication performance of the intelligent tablet 11.

[0146] Please continue to refer to Figure 1 、 Figure 2 and Figure 4 In an exemplary embodiment, step 1011 executed above controls each push-pull blackboard in the blackboard module 12 to move during its corresponding test time period via the switch 15 and the motor module 16, and can be implemented by executing step 111, where:

[0147] Step 111: Transmit control instructions to the track 17 that holds the push-pull blackboard via the switch 15 and the motor module 16, and control the movement of the track 17 one by one to drive each push-pull blackboard in the blackboard module 12 to move during its corresponding test time period.

[0148] Specifically, an alternative embodiment provided by the present application is that, in addition to multiple push-pull blackboards arranged in a stacked manner in the blackboard module 12, the blackboard module 12 may further include a track 17 for clamping the push-pull blackboard. The track 17 can be electrically connected to the motor module 16 and is used to receive the control instructions transmitted by the motor module 16, so as to drive the movement of the push-pull blackboard clamped by it through the movement of the track 17.

[0149] Based on this, step 1011 can be specifically executed as step 111. The electrical signals for controlling the movement of each push-pull blackboard in the blackboard module 12 can be sequentially transmitted to the track 17 for clamping the push-pull blackboard via the switch 15 and the motor module 16, so as to achieve the sequential driving of the track 17. Specifically, the movement of the push-pull blackboard is driven by the track 17, eliminating the need for manual movement of push-pull blackboards of different materials one by one, reducing the labor cost and time cost, and being beneficial to improving the detection efficiency of the influence of push-pull blackboards of different materials on the communication performance of the intelligent tablet 11.

[0150] It should be added that for the track 17 for clamping the push-pull blackboard in the blackboard module 12, the present application provides two alternative embodiments. One is that the instruction issued by the control terminal 14 is used to drive the movement of the track 17, thereby driving the movement of the push-pull blackboard clamped by it. The other is that the instruction issued by the control terminal 14 is used to drive the push-pull blackboard to move in the track 17 that clamps it. That is, it can be selectively set that the track 17 in the system 100 is electrically connected to the motor module 16, or it can be selectively set that the push-pull blackboard in the system 100 is electrically connected to the motor module 16. The present application does not make specific limitations on this, and the setting in the system 100 can be selected according to needs, as long as the instruction issued by the control terminal 14 can be implemented to drive the push-pull blackboard, and then the movement of the position of the push-pull blackboard can be achieved.

[0151] It should be understood that although the steps in the flowcharts involved in the above embodiments are sequentially shown according to the arrows, these steps are not necessarily executed in the order indicated by the arrows. Unless there is a clear description in this article, the execution of these steps has no strict order limit, and these steps can be executed in other orders. Moreover, at least a part of the steps in the flowcharts involved in the above embodiments may include multiple steps or multiple stages. These steps or stages are not necessarily executed at the same time, but can be executed at different times. The execution order of these steps or stages is not necessarily sequential, but can be executed alternately or alternately with at least a part of other steps or steps or stages in other steps.

[0152] Regarding the detection system and method for the communication performance of the intelligent tablet provided in this application, this application provides an alternative implementation. Specifically, this solution provides a system and method for automatically evaluating the impact of different materials on the WIFI performance of an intelligent interactive tablet (intelligent tablet). This system can automatically test the WIFI signal strength, (signal) throughput, packet loss (number), and delay (time) of different materials of push-pull blackboards, and at the same time automatically output the material selection of the blackboard baffle (push-pull blackboard) and other scheme suggestions. It improves the test efficiency and product quality, reduces WIFI performance problems in school use, provides a basis for material selection for schools to select the materials of push-pull blackboards, and can also provide a suggested solution for improving the quality of intelligent tablets.

[0153] The detection system provided in this application consists of 7 parts: shielded room (shielded space), intelligent tablet, push-pull blackboard (different materials) tooling, upper computer + drive blackboard baffle motor (motor module), switch, router, various wires and cables, control measurement & data acquisition computer (control terminal). Among them: Shielded room: mainly provides a stable test environment for testing; Intelligent tablet: the product to be evaluated; Multiple blackboard baffles of different materials: the blackboard baffles to be evaluated; Push-pull blackboard (different materials) tooling: simulates the real environment in schools; Upper computer + drive blackboard baffle motor: drives and controls the guide rail (track) to switch different baffles; Switch, router: connects the entire test and evaluation system; Various wires and cables: connects different devices; Control measurement & data acquisition computer: collects and controls, processes and organizes data.

[0154] The detection process includes: Environment construction: According to the environmental schematic diagram of the evaluation system, carry out environmental construction. Note that the intelligent tablet needs to be completely blocked by the blackboard, and the upper computer and the motor need to be able to run, and the motor can drive the conveyor belt to move the blackboard baffle (baffles numbered 1, 2, 3...). Environmental base record: After the environment is constructed, test and collect the throughput T0, signal strength R0, packet loss U0, and delay L0 data when the blackboard baffle does not block the intelligent tablet. Evaluation formula MOS = T* + R* + U* + L*; where, T* = X%T0, R* = X%R0, U* = X%U0, L* = X%L0; X ≥ 60.

[0155] Based on the detection results, a preset score table as shown in Table 1 is provided.

[0156] Table 1

[0157]

[0158] Furthermore, set the relationship between the blackboard baffle rating and the total score MOS as follows: Grade A material: MOS = 40; Grade B material: MOS = 36; Grade C material: MOS = 32; Grade D material: MOS = 28.

[0159] The steps of automatic data collection include:

[0160] Step 1: Base data collection: throughput T0, signal strength R0, packet loss U0, latency L0;

[0161] Step 2: The control computer automatically sends a command to the host computer to control the motor to drive the blackboard baffle 1. When the blackboard baffle completes the occlusion, it returns a command to the control computer to collect throughput T1, signal strength R1, packet loss U1, and latency L1 data, and at the same time calculates the evaluation parameter MOS1;

[0162] Step 3: The control computer automatically sends a command to the host computer to control the motor to drive the blackboard baffle 2. When the blackboard baffle completes the occlusion, it returns a command to the control computer to perform throughput T2, signal strength R2, packet loss U2, and latency L2; and so on to collect the evaluation MOS data of the prepared blackboard baffles;

[0163] Step 4: The control computer automatically outputs a test report.

[0164] The detection provided includes the styles as shown in Table 2 below.

[0165] Table 2

[0166]

[0167] The detection system and method for the communication performance of the intelligent tablet provided by this application can automatically run to collect data, intelligently give test reports and solutions, improve test efficiency and evaluation efficiency; use the scoring MOS to evaluate the network quality of the product; use the rating method to evaluate the grade of the material, which is convenient for procurement; if used for factory sampling or production testing, it can improve the quality of the product.

[0168] Based on the same inventive concept, the embodiment of this application also provides a detection device 200 for the communication performance of the intelligent tablet for implementing the detection method for the communication performance of the intelligent tablet involved above. The implementation solution provided by this device 200 for solving the detection of the communication performance when the intelligent tablet 11 is occluded is similar to the implementation solution described in the above method. Therefore, the specific limitations in one or more embodiments of the detection device 200 for the communication performance of the intelligent tablet provided below can refer to the limitations for the detection method for the communication performance of the intelligent tablet in the above text, and will not be repeated here.

[0169] Figure 5 For the schematic diagram of the detection device for the communication performance of the intelligent tablet in an embodiment of this application, please combine Figures 1 - 4 Refer to Figure 5 , in an exemplary embodiment, such as Figure 5As shown, a detection device 200 for the communication performance of an intelligent tablet is provided. The device 200 includes: a driving module 81 and a data acquisition and processing module 82, where:

[0170] The driving module 81 is used to control each push-pull blackboard in the blackboard module 12 to move within its corresponding test time period one by one, so as to block the intelligent tablet 11 in the light-emitting direction of the intelligent tablet 11; wherein, the blackboard module 12 and the intelligent tablet 11 are arranged in the same shielding space 10, and the blackboard module 12 includes a plurality of push-pull blackboards; the plurality of push-pull blackboards are stacked along the light-emitting direction of the intelligent tablet 11, and at least two push-pull blackboards are made of different materials; the shielding space 10 is used to shield wireless communication signals;

[0171] The data acquisition and processing module 82 is used to collect the test communication performance data of the intelligent tablet 11 in the current test time period based on the router 13 when the intelligent tablet 11 is completely blocked by the current push-pull blackboard in each test time period, so as to obtain the test communication performance data of the intelligent tablet 11 when it is completely blocked by push-pull blackboards made of different materials; wherein, the router 13 and the intelligent tablet 11 are located in the same shielding space 10, the router 13 is respectively communicatively connected to the intelligent tablet 11 and the control terminal 14, and the router 13 communicates with the intelligent tablet 11 wirelessly, and the control terminal 14 is electrically connected to the blackboard module 12;

[0172] Wherein, within the same test time period, one push-pull blackboard in the blackboard module 12 blocks the intelligent tablet 11, and the remaining push-pull blackboards do not overlap with the intelligent tablet 11 in the light-emitting direction of the intelligent tablet.

[0173] Specifically, the detection device 200 for the communication performance of the intelligent tablet provided in this application may at least include a driving module 81 and a data acquisition and processing module 82, but this application is not limited thereto. The detection device 200 may further include other modules. Among them, the driving module 81 is used to realize the sequential movement of each push-pull blackboard in the blackboard module 12, so that each push-pull blackboard can move within its own corresponding test time period, so that the push-pull blackboard can block the intelligent tablet 11 to be tested for communication performance within its corresponding test time period. Specifically, along the light-emitting direction of the intelligent tablet 11, control a push-pull blackboard of a certain material to completely cover the intelligent tablet 11. At this time, the router 13 communicating with the intelligent tablet 11 is located on the side of the push-pull blackboard away from the intelligent tablet 11.

[0174] The data acquisition and processing module 82 is used to collect the test communication performance data of the smart tablet 11 communicating with it during each test time period when the smart tablet 11 is completely blocked by the push-pull blackboard during the current test time period; that is, during different detection time periods, the push-pull blackboards of different materials are moved to completely block the smart tablet 11 through the instructions issued by the control terminal 14 to obtain the test communication performance data of the smart tablet 11 when it is completely blocked by the push-pull blackboards of different materials. Among the test communication performance data of the smart tablet 11 when it is completely blocked by the push-pull blackboards of different materials, at least part of the test communication performance data of the smart tablet 11 blocked by the push-pull blackboards of different materials will be different, so that the influence of the push-pull blackboards of different materials on the communication performance of the blocked smart tablet 11 can be obtained. Based on this, it is possible to select which one or which several materials of the push-pull blackboards have less influence on the communication performance of the smart tablet 11. The push-pull blackboard made of the material with less influence on the communication performance of the smart tablet 11 is more suitable for use in the actual teaching environment, which is beneficial to improving the loading speed of some teaching data of the smart tablet 11 when it is blocked by the push-pull blackboard, thereby avoiding the impact on classroom efficiency due to poor communication performance and improving the use experience and teaching efficiency of intelligent teaching equipment.

[0175] Each module in the above intelligent tablet communication performance detection device 200 can be implemented in whole or in part by software, hardware, and their combination. The above modules can be embedded in the processor of the computer device in hardware form or independent of it, or stored in the memory of the computer device in software form, so that the processor can call and execute the operations corresponding to the above modules.

[0176] Figure 6 It is the internal structure diagram of a computer device in an embodiment. In an exemplary embodiment, a computer device is provided. The computer device can be a terminal, and its internal structure diagram can be as Figure 6As shown in the figure. The computer device includes a processor, a memory, an input / output interface, a communication interface, a display unit, and an input device. Among them, the processor, the memory, and the input / output interface are connected through a system bus, and the communication interface, the display unit, and the input device are connected to the system bus through the input / output interface. Among them, the processor of the computer device is used to provide computing and control capabilities. The memory of the computer device includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system and a computer program. The internal memory provides an environment for the operation of the operating system and the computer program in the non-volatile storage medium. The input / output interface of the computer device is used to exchange information between the processor and external devices. The communication interface of the computer device is used to communicate with external terminals in a wired or wireless manner, and the wireless manner can be implemented through WIFI, a mobile cellular network, NFC (Near Field Communication), or other technologies. When the computer program is executed by the processor, it implements a method for detecting the communication performance of a smart tablet. The display unit of the computer device is used to form a visually visible picture, which can be a display screen, a projection device, or a virtual reality imaging device. The display screen can be a liquid crystal display screen or an electronic ink display screen. The input device of the computer device can be a touch layer covering the display screen, or a button, a trackball, or a touchpad provided on the housing of the computer device, or an external keyboard, touchpad, or mouse, etc.

[0177] Those skilled in the art can understand that Figure 6 the structure shown in the figure is only a block diagram of some structures related to the solution of the present application, and does not constitute a limitation on the computer device to which the solution of the present application is applied. The specific computer device may include more or fewer components than those shown in the figure, or combine some components, or have different component arrangements.

[0178] Based on the same inventive concept, the present application also provides a computer-readable storage medium, on which a computer program is stored. When the computer program is executed by a processor, it implements the aforementioned method for detecting the communication performance of a smart tablet. The method for detecting the communication performance of a smart tablet is any one of the methods for detecting the communication performance of a smart tablet mentioned in the embodiments of the present application. For related embodiments, refer to the above.

[0179] Based on the same inventive concept, the present application also provides a computer program product, including a computer program. When the computer program is executed by a processor, it implements the aforementioned method for detecting the communication performance of a smart tablet. The method for detecting the communication performance of a smart tablet is any one of the methods for detecting the communication performance of a smart tablet mentioned in the embodiments of the present application. For related embodiments, refer to the above.

[0180] It should be noted that the user information (including but not limited to user device information, user personal information, etc.) and data (including but not limited to data for analysis, stored data, displayed data, etc.) involved in this application are all information and data that have been authorized by the user or fully authorized by all parties, and the collection, use, and processing of relevant data need to comply with relevant regulations.

[0181] Those of ordinary skill in the art can understand that all or part of the processes in the methods of the above embodiments can be completed by instructing relevant hardware through a computer program. The computer program can be stored in a non-volatile computer-readable storage medium. When the computer program is executed, it can include the processes of the embodiments of the above methods. Among them, any reference to a memory, database, or other medium used in the embodiments provided in this application can include at least one of non-volatile and volatile memories. Non-volatile memories can include read-only memory (ROM), magnetic tapes, floppy disks, flash memories, optical memories, high-density embedded non-volatile memories, resistive random access memories (ReRAM), magnetoresistive random access memories (MRAM), ferroelectric random access memories (FRAM), phase change memories (PCM), graphene memories, etc. Volatile memories can include random access memory (RAM) or external cache memories, etc. By way of illustration and not limitation, RAM can be in various forms, such as static random access memory (SRAM) or dynamic random access memory (DRAM), etc. The databases involved in the embodiments provided in this application can include at least one of relational databases and non-relational databases. Non-relational databases can include distributed databases based on blockchain, etc., without limitation. The processors involved in the embodiments provided in this application can be general-purpose processors, central processors, graphics processors, digital signal processors, programmable logic devices, data processing logics based on quantum computing, etc., without limitation.

[0182] The technical features of the above embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered to be within the scope described in this specification.

[0183] The above-described embodiments merely represent several implementation manners of the present application. The description thereof is relatively specific and detailed, but it should not be construed as a limitation on the patent scope of the present application. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present application, several modifications and improvements can still be made, and these all fall within the protection scope of the present application. Therefore, the protection scope of the present application shall be subject to the appended claims.

Claims

1. A detection method for the communication performance of an intelligent tablet, characterized in that Applied to a control terminal, the method includes: Controlling each push-pull blackboard in the blackboard module to move within its corresponding test time period one by one, so as to block the intelligent tablet in the light-emitting direction of the intelligent tablet; wherein, the blackboard module and the intelligent tablet are arranged in the same shielding space, the blackboard module includes a plurality of the push-pull blackboards, the plurality of push-pull blackboards are stacked along the light-emitting direction of the intelligent tablet, and at least two of the push-pull blackboards are made of different materials; the shielding space is used to shield wireless communication signals; Within each test time period, and when the intelligent tablet is completely blocked by the current push-pull blackboard, based on the router, collect the test communication performance data of the intelligent tablet within the current test time period, so as to obtain the test communication performance data when the intelligent tablet is completely blocked by the push-pull blackboards of different materials; wherein, the router and the intelligent tablet are located in the same shielding space, the router is respectively communicatively connected with the intelligent tablet and the control terminal, and the router communicates with the intelligent tablet wirelessly, and the control terminal is electrically connected to the blackboard module; Wherein, within the same test time period, one of the push-pull blackboards in the blackboard module blocks the intelligent tablet, and the remaining push-pull blackboards do not overlap with the intelligent tablet in the light-emitting direction of the intelligent tablet.

2. The method for detecting the communication performance of an intelligent tablet according to claim 1, wherein: Before controlling each push-pull blackboard in the blackboard module to move within its corresponding test time period one by one, it further includes: When the intelligent tablet is not blocked by the push-pull blackboard along its light-emitting direction, collect the reference communication performance data of the intelligent tablet based on the router.

3. The method for detecting the communication performance of an intelligent tablet according to claim 2, wherein: After obtaining the test communication performance data when the intelligent tablet is completely blocked by the push-pull blackboards of different materials, it further includes: Based on the collected multiple test communication performance data and the reference communication performance data, determine the wireless communication performance detection result when the intelligent tablet is completely blocked by the push-pull blackboards of different materials.

4. The method for detecting the communication performance of an intelligent tablet according to claim 2, wherein: After collecting the reference communication performance data of the intelligent tablet based on the router, it further includes: Based on the collected multiple test communication performance data and the reference communication performance data, calculate the proportion of each sub-test performance data in each test communication performance data to the corresponding sub-reference data in the reference communication performance data.

5. The method for detecting the communication performance of an intelligent tablet according to claim 4, wherein: After obtaining the test communication performance data when the intelligent tablet is completely blocked by the push-pull blackboards of different materials, it further includes: Based on a preset score table, determine the sub-score corresponding to the proportion of each sub-test performance data to the corresponding sub-reference data. Accumulate each of the sub - scores to obtain the total score of the test communication performance data; and based on a preset rating table, determine the rating level of the push - pull blackboard corresponding to the total score.

6. The method for detecting the communication performance of an intelligent tablet according to claim 5, wherein calculating the proportion of each sub - test performance data in each of the test communication performance data in the corresponding sub - reference data in the reference communication performance data includes at least one of the following: calculating the proportion of the signal throughput in each sub - test performance data in each of the test communication performance data in the signal throughput in the corresponding sub - reference data in the reference communication performance data; calculating the proportion of the signal strength in each sub - test performance data in each of the test communication performance data in the signal strength in the corresponding sub - reference data in the reference communication performance data; calculating the proportion of the number of packet losses in each sub - test performance data in each of the test communication performance data in the number of packet losses in the corresponding sub - reference data in the reference communication performance data; calculating the proportion of the delay time in each sub - test performance data in each of the test communication performance data in the delay time in the corresponding sub - reference data in the reference communication performance data.

7. The method for detecting the communication performance of an intelligent tablet according to claim 6, wherein after determining the rating level of the push - pull blackboard corresponding to the total score, it further includes: outputting a detection report; wherein the detection report includes the signal throughput, signal strength, number of packet losses, delay time, and total score corresponding to the intelligent tablet when it is completely blocked by push - pull blackboards of different materials, as well as the numbers and rating levels of each push - pull blackboard.

8. The method for detecting the communication performance of an intelligent tablet according to claim 1, wherein controlling each push - pull blackboard in the blackboard module to move within its corresponding test time period one by one includes: controlling each push - pull blackboard in the blackboard module to move within its corresponding test time period one by one via a switch and a motor module; wherein the switch and the motor module are located in the same shielding space as the intelligent tablet.

9. The method for detecting the communication performance of an intelligent tablet according to claim 8, wherein controlling each push - pull blackboard in the blackboard module to move within its corresponding test time period one by one via a switch and a motor module includes: sending a control instruction to the track holding the push - pull blackboard via a switch and a motor module, and controlling the movement of the track one by one to drive each push - pull blackboard in the blackboard module to move within its corresponding test time period.

10. A detection system for the communication performance of an intelligent tablet, characterized in that, It includes an intelligent tablet, a blackboard module, and a router disposed in the same shielding space, and also includes a control terminal; the shielding space is used to shield wireless communication signals; wherein: the blackboard module includes a plurality of push - pull blackboards, the plurality of push - pull blackboards are stacked along the light - emitting direction of the intelligent tablet, and at least two of the push - pull blackboards are made of different materials; the router is respectively communicatively connected to the intelligent tablet and the control terminal, and the router is wirelessly communicatively connected to the intelligent tablet; The control terminal is also electrically connected to the blackboard module; The control terminal is configured to control each of the push-pull blackboards to move within its corresponding test time period, so as to block the intelligent tablet in the light-emitting direction of the intelligent tablet; The control terminal is further configured to, within each test time period and when the intelligent tablet is completely blocked by the current push-pull blackboard, collect the test communication performance data of the intelligent tablet within the current test time period based on the router, so as to obtain the test communication performance data of the intelligent tablet when it is completely blocked by the push-pull blackboards of different materials; Wherein, within the same test time period, one of the push-pull blackboards in the blackboard module blocks the intelligent tablet, and the remaining push-pull blackboards are arranged along the light-emitting direction of the intelligent tablet and do not overlap with the intelligent tablet.

11. The detection system for the communication performance of the intelligent tablet according to claim 10, wherein The system further includes a switch and a motor module, and the switch and the motor module are located in the same shielding space as the intelligent tablet; The switch is electrically connected to the control terminal and the motor module respectively, and is electrically connected to the router; the other end of the motor module is electrically connected to the blackboard module; Wherein, the switch is configured to receive the control instruction sent by the control terminal and transmit the control instruction to the motor module, and the motor module drives the movement of the push-pull blackboard based on the received control instruction; and, the switch is further configured to implement network communication between the router and the control terminal.

12. The detection system for the communication performance of the intelligent tablet according to claim 11, characterized in that, The blackboard module further includes a track; The track clamps the push-pull blackboard and is electrically connected to the motor module, and the track is configured to receive the control instruction transmitted by the motor module and move, so as to drive the movement of the push-pull blackboard.

13. The detection system for the communication performance of an intelligent tablet according to claim 10, wherein The router and the control terminal are connected by wired communication.

14. A detection device for the communication performance of an intelligent tablet, characterized in that, It includes: A driving module, configured to control each push-pull blackboard in the blackboard module to move within its corresponding test time period, so as to block the intelligent tablet in the light-emitting direction of the intelligent tablet; wherein, the blackboard module and the intelligent tablet are arranged in the same shielding space, the blackboard module includes a plurality of push-pull blackboards, the plurality of push-pull blackboards are stacked along the light-emitting direction of the intelligent tablet, and at least two of the push-pull blackboards are made of different materials; the shielding space is used to shield wireless communication signals; A data collection and processing module, configured to, within each test time period and when the intelligent tablet is completely blocked by the current push-pull blackboard, collect the test communication performance data of the intelligent tablet within the current test time period based on the router, so as to obtain the test communication performance data of the intelligent tablet when it is completely blocked by the push-pull blackboards of different materials; wherein, the router and the intelligent tablet are located in the same shielding space, the router is respectively communicatively connected to the intelligent tablet and the control terminal, and the router communicates with the intelligent tablet by wireless communication, and the control terminal is electrically connected to the blackboard module; Among them, within the same said test time period, one of the push-pull blackboards in the blackboard module blocks the intelligent tablet, and the remaining push-pull blackboards are in the light-emitting direction of the intelligent tablet and do not overlap with the intelligent tablet.

15. A computer device, comprising a memory and a processor, the memory storing a computer program, characterized in that, When the processor executes the computer program, it implements the steps of the method according to any one of claims 1 to 9.

16. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by the processor, it implements the steps of the method according to any one of claims 1 to 9.

17. A computer program product comprising a computer program, characterized in that, When this computer program is executed by the processor, it implements the steps of the method according to any one of claims 1 to 9.